戻る
「早戻しボタン」を押すと検索画面に戻ります。 [閉じる]

コーパス検索結果 (1語後でソート)

通し番号をクリックするとPubMedの該当ページを表示します
1 As are entrapped, and thereby held together (sister chromatid cohesion).
2 unction of cohesin distinct from its role in sister chromatid cohesion.
3 t of the cohesin ring, which ensures correct sister chromatid cohesion.
4 pl partakes in a cohesin function outside of sister chromatid cohesion.
5 ion precedes the S-K entrapment required for sister chromatid cohesion.
6  direct role for H2A.Z in the maintenance of sister chromatid cohesion.
7 d despite a drop of tension after removal of sister chromatid cohesion.
8 s on the timely establishment and removal of sister chromatid cohesion.
9 sociation with the replication fork promotes sister chromatid cohesion.
10 cial for DNA replication but dispensable for sister chromatid cohesion.
11 ntally by separase-independent resolution of sister chromatid cohesion.
12  interactions can, with time, rupture normal sister chromatid cohesion.
13 and stalling, while simultaneously promoting sister chromatid cohesion.
14  cohesin at DNA breaks and thereby promoting sister chromatid cohesion.
15 ich is crucial for the timely dissolution of sister chromatid cohesion.
16 nnected by the combination of crossovers and sister chromatid cohesion.
17 omplex is critical to its ability to mediate sister chromatid cohesion.
18 oth DNA replication and the establishment of sister chromatid cohesion.
19 tionarily conserved cohesin complex mediates sister chromatid cohesion.
20 subunit Smc3 to promote the establishment of sister chromatid cohesion.
21 s known role in mediating DNA repair through sister chromatid cohesion.
22 n on chromosomes and cause lethal defects in sister chromatid cohesion.
23 nzymatic activity is regulated to facilitate sister chromatid cohesion.
24 cetylation contributes to the maintenance of sister chromatid cohesion.
25  yeast that is required for the formation of sister chromatid cohesion.
26 st acetylation of cohesin's SMC3 subunit and sister chromatid cohesion.
27 ransferase required for the establishment of sister chromatid cohesion.
28 nsferase normally essential for establishing sister chromatid cohesion.
29 e cohesin, the protein complex that mediates sister chromatid cohesion.
30 spatially or temporally for establishment of sister chromatid cohesion.
31 ion of replication fork and establishment of sister chromatid cohesion.
32 is an essential protein complex required for sister chromatid cohesion.
33 in the homologs of yeast genes that regulate sister chromatid cohesion.
34 ation is a conserved mechanism in regulating sister chromatid cohesion.
35 ent manner during DNA replication to promote sister chromatid cohesion.
36 omes (sister chromatids) together to mediate sister chromatid cohesion.
37 the presence of a sister chromatid and hence sister chromatid cohesion.
38 ts of the cohesin complex and play a role in sister chromatid cohesion.
39 ltransferases that is involved in regulating sister chromatid cohesion.
40 nd suggest an essential role for CTCF during sister chromatid cohesion.
41  III-associated proteins in establishment of sister chromatid cohesion.
42 ed for spindle pole body duplication and for sister chromatid cohesion.
43 onnection between replication initiation and sister chromatid cohesion.
44 e checkpoint activation and establishment of sister chromatid cohesion.
45 anochemistry may occur before dissolution of sister chromatid cohesion.
46  function as antagonists to regulate meiotic sister chromatid cohesion.
47 ith distinct sites on chromosomes to mediate sister chromatid cohesion.
48 ase activity, is required for Chl1's role in sister chromatid cohesion.
49 assembly, assembly, and the establishment of sister chromatid cohesion.
50 and helicase involved in DNA replication and sister chromatid cohesion.
51 ons in PDS5A or STAG2 resulted in inadequate sister chromatid cohesion.
52  acetylation of cohesin establishes enduring sister chromatid cohesion.
53  nucleosome positioning, gene expression and sister chromatid cohesion.
54 hought to form tripartite rings that mediate sister chromatid cohesion.
55 eiotic cohesin to the chromosome to generate sister-chromatid cohesion.
56 by allowing separase, a protease, to disrupt sister-chromatid cohesion.
57 al silencing, heterochromatin formation, and sister-chromatid cohesion.
58  favoring homologous recombination linked to sister-chromatid cohesion.
59 on, and a stable complex may be required for sister-chromatid cohesion.
60 mosomes to promote chromosome compaction and sister-chromatid cohesion.
61 cts lacking Tipin and And1 also show reduced sister chromatids cohesion.
62 3) heterodimeric ATPase, the kleisin subunit sister chromatid cohesion 1 (Scc1) that links the two AT
63                                          The sister chromatid cohesion 2 and 4 (Scc2-Scc4) complex lo
64    Failure to repair DNA damage or defective sister chromatid cohesion, a process essential for corre
65 oss of proper mRNA production and defects in sister chromatid cohesion, a process important for both
66                            It contributes to sister chromatid cohesion, a process mediated by the coh
67 e cohesin complex, named for its key role in sister chromatid cohesion, also plays critical roles in
68 , encoding a replisome component involved in sister chromatid cohesion, also suppresses hst3 hst4 phe
69 hromosomes, or the Pds5 protein required for sister chromatid cohesion, alters gene expression and or
70 sed to encircle sister chromatids to mediate sister chromatid cohesion and also has key roles in gene
71       Mitotic abnormalities included loss of sister chromatid cohesion and chromosomal disruption.
72 gulator of genome architecture with roles in sister chromatid cohesion and chromosome compaction.
73   DNA catenation has been implicated in both sister chromatid cohesion and chromosome condensation, b
74 thionine residue and is essential for proper sister chromatid cohesion and chromosome condensation.
75 gion of autosomes leads to premature loss of sister chromatid cohesion and chromosome missegregation,
76                         Despite key roles in sister chromatid cohesion and chromosome organization, t
77 nd development independently of its roles in sister chromatid cohesion and chromosome segregation?
78 es, cohesin and condensin, are important for sister chromatid cohesion and condensation, respectively
79  alleles are inviable and defective for both sister chromatid cohesion and condensation.
80 aturation, mitotic entry, spindle formation, sister chromatid cohesion and cytokinesis.
81                             Cohesins mediate sister chromatid cohesion and DNA repair and also functi
82  essential roles in chromosome condensation, sister chromatid cohesion and DNA repair.
83 ns to the axis, plays an independent role in sister chromatid cohesion and double-strand break format
84 ing with DNA-entrapping ability that ensures sister chromatid cohesion and enables correct synapsis a
85 n origins is important for establishing both sister chromatid cohesion and enhancer-promoter communic
86 or how SA and DNA replication help establish sister chromatid cohesion and facilitate enhancer-promot
87  topologically around chromosomes to mediate sister chromatid cohesion and facilitate long-range cont
88 n is a chromatin-bound complex that mediates sister chromatid cohesion and facilitates long-range int
89 t this modification is required for accurate sister chromatid cohesion and for chromosome recruitment
90 icates that inactive units are necessary for sister chromatid cohesion and genetic stability of rDNA.
91 acetylatable form leads to increased loss of sister chromatid cohesion and genome instability in both
92 hroughout the mitotic cell cycle, modulating sister chromatid cohesion and higher-order chromatin str
93 yndrome characterized by cellular defects in sister chromatid cohesion and hypersensitivity to agents
94 on requires the proper spatial regulation of sister chromatid cohesion and its dissolution along chro
95 chromatin is separable from both its role in sister chromatid cohesion and its interaction with the c
96 EJ, in addition to its canonical function in sister chromatid cohesion and its recently suggested fun
97 se that spliceosome components contribute to sister chromatid cohesion and mitotic chromosome segrega
98 nd cyclin, which promotes the dissolution of sister chromatid cohesion and mitotic progression.
99 in and cyclin, leading to the dissolution of sister chromatid cohesion and mitotic progression.
100 rates long-range DNA interactions to mediate sister chromatid cohesion and other aspects of chromosom
101 to the initial steps of the establishment of sister chromatid cohesion and other chromosomal processe
102 DNA replication, to promote establishment of sister chromatid cohesion and possibly other post-replic
103 topoisomerase and PARP inhibitors, defective sister chromatid cohesion and reduced DNA replication fo
104                 The cohesin complex mediates sister chromatid cohesion and regulates gene transcripti
105 NA helicase domain of DDX11 is essential for sister chromatid cohesion and resistance to G4 stabilize
106 tein complex was discovered for its roles in sister chromatid cohesion and segregation, and the Polyc
107 g the cohesin subunit STAG2, which regulates sister chromatid cohesion and segregation, in 36% of pap
108 xhibited defects in chromosomal congression, sister chromatid cohesion and spindle positioning, there
109 ith a role of hChlR1 in the establishment of sister chromatid cohesion and suggest that its action ma
110 rt of many chromosomal activities, including sister chromatid cohesion and transcriptional regulation
111                                 In contrast, sister-chromatid cohesion and chromosome segregation are
112 ires coordination between the dissolution of sister-chromatid cohesion and the establishment of prope
113 us work uncovered an unexpected link between sister-chromatid cohesion and the fidelity of achiasmate
114  mediates DNA-DNA interactions both between (sister chromatid cohesion) and within chromosomes (DNA l
115 ing XPD (nucleotide excision repair), DDX11 (sister chromatid cohesion), and RTEL (telomere metabolis
116             Mitotic chromosome condensation, sister chromatid cohesion, and higher order folding of i
117 some metabolism modules, DNA replication and sister chromatid cohesion, and inactivated a third, the
118 omosome segregation, chromosome maintenance, sister chromatid cohesion, and mitotic chromosome compac
119 ng at the nuclear membrane, establishment of sister chromatid cohesion, and repair of certain types o
120                         Pds5 is required for sister chromatid cohesion, and somewhat paradoxically, t
121 tein, a cohesin loading factor essential for sister chromatid cohesion, and with centromere-specific
122 ng Smc3, but their relative contributions to sister chromatid cohesion are unknown.
123         These results suggest that defective sister chromatid cohesion as a result of somatic mutatio
124 is flexible enough to establish and maintain sister chromatid cohesion as well as ensure the fidelity
125                           The abrupt loss of sister chromatid cohesion at anaphase creates a type of
126 vers and on selective release of a subset of sister chromatid cohesion at anaphase I.
127 dding yeast as a model, we show that loss of sister chromatid cohesion at anaphase onset would engage
128 ate early S phase DNA replication and robust sister chromatid cohesion at microtubule attachment site
129 ule attachment, but they also support robust sister chromatid cohesion at pericentromeres and facilit
130 ation and live-cell imaging, that persistent sister chromatid cohesion at telomeres triggers a prolon
131                              During mitosis, sister-chromatid cohesion at centromeres enables the bio
132 on at the centromere region until release of sister-chromatid cohesion at the metaphase II/anaphase I
133 s described here is incompatible with stable sister chromatid cohesion because it permits chromatin f
134  the loss of normal spindle architecture and sister chromatid cohesion before anaphase onset.
135 ions in the cohesin complex disrupt not only sister chromatid cohesion but also homologue pairing and
136 cancer-associated SA2 mutation that supports sister chromatid cohesion but is unable to repress trans
137 topology is used not only for the purpose of sister chromatid cohesion, but also to dynamically defin
138 nd to chromosomes with only minor defects in sister chromatid cohesion, but sister chromatids synapse
139                             Cohesin mediates sister chromatid cohesion, but this is not always pertur
140 opo II-driven decatenation, cohesin mediates sister chromatid cohesion by an indirect mechanism as we
141 t role for an lncRNA in the establishment of sister chromatid cohesion by modulating DDX11 enzymatic
142                      LAB-1 preserves meiotic sister chromatid cohesion by restricting the localizatio
143                     Since the dissolution of sister chromatid cohesion by separase and cyclin B destr
144 c genome by extruding DNA loops and mediates sister chromatid cohesion by topologically entrapping DN
145 P1) has been proposed to protect centromeric sister-chromatid cohesion by directly targeting Sgo1 to
146  along with positive regulators, establishes sister-chromatid cohesion by forming a ring to circle ch
147                Both kinetochore function and sister chromatid cohesion can depend upon pericentromere
148 rder chromosome structure, thereby promoting sister chromatid cohesion, chromosome condensation, DNA
149  is a conserved protein complex required for sister chromatid cohesion, chromosome condensation, DNA
150 n chromosome architecture, such as promoting sister chromatid cohesion, chromosome condensation, DNA
151                The cohesin complex regulates sister chromatid cohesion, chromosome organization, gene
152 component of the Smc5/6 complex, involved in sister chromatid cohesion, chromosome segregation, and D
153 mosome during the late G1 phase, establishes sister chromatid cohesion concomitant with DNA replicati
154                                              Sister chromatid cohesion conferred by entrapment of sis
155                                              Sister chromatid cohesion, conferred by the evolutionari
156            The cohesin complex that mediates sister chromatid cohesion contains three core subunits:
157       Here, we show that Ctf18-RFC's role in sister chromatid cohesion correlates with PCNA loading b
158 essential multiprotein complex that mediates sister chromatid cohesion critical for proper segregatio
159 ngly, deficiency of SFPQ alone also leads to sister chromatid cohesion defects and chromosome instabi
160 physically interacts with Naa50, rescues the sister-chromatid cohesion defects and the resulting mito
161                                Initiation of sister chromatid cohesion depends on a separate complex,
162                                              Sister chromatid cohesion depends on Sororin, a protein
163  chromatin organization that is critical for sister chromatid cohesion, DNA repair and transcriptiona
164  cohesin, a complex previously implicated in sister chromatid cohesion, DNA repair, and the formation
165 in genome organization includes functions in sister chromatid cohesion, DNA repair, and transcription
166             Cohesin plays a critical role in sister chromatid cohesion, double-stranded DNA break rep
167                  The establishment of stable sister chromatid cohesion during DNA replication require
168                 Our work identifies residual sister chromatid cohesion during early anaphase and reve
169 x on chromatin following DNA replication and sister chromatid cohesion during G(2).
170  associates with chromosomes and establishes sister chromatid cohesion during interphase.
171 protease that is required for the release of sister chromatid cohesion during meiosis and mitosis.
172 hat function to prevent premature release of sister chromatid cohesion during meiosis I in C. elegans
173 n during prophase I of meiosis and deficient sister chromatid cohesion during metaphase II predispose
174  nonsumoylatable Scc1 mutant (15KR) maintain sister chromatid cohesion during mitosis but are defecti
175          Sgo1 plays a key role in protecting sister chromatid cohesion during mitosis.
176                           Cohesins establish sister chromatid cohesion during S phase and are removed
177 h modify cohesin's Smc3 subunit to establish sister chromatid cohesion during S phase, but differ in
178                     In addition to mediating sister chromatid cohesion during the cell cycle, the coh
179 usly that HTP-1/2 prevents premature loss of sister chromatid cohesion during the meiotic divisions b
180 s suggest that Pds5's role in maintenance of sister chromatid cohesion during the mitotic prophase-an
181                The cohesin complex maintains sister-chromatid cohesion during cell division in eukary
182 t that in budding yeast Scc2 is required for sister-chromatid cohesion during meiosis for two reasons
183 lex plays a dual role in gene regulation and sister-chromatid cohesion during meiotic differentiation
184 ginally described for its role in regulating sister-chromatid cohesion during mitosis and meiosis.
185 uman Shugoshin 1 (Sgo1) protects centromeric sister-chromatid cohesion during prophase and prevents p
186 latory mechanism helps optimize the level of sister chromatid cohesion, ensuring a robust and efficie
187                                              Sister chromatid cohesion essential for mitotic chromoso
188 ally, meiotic crossovers in conjunction with sister-chromatid cohesion establish a physical connectio
189 coordinates replication fork progression and sister chromatid cohesion establishment.
190                             Mutations in the sister chromatid cohesion factor genes NIPBL, SMC1A and
191 e, a phenotype that is caused by the loss of sister chromatid cohesion following a prolonged metaphas
192 for proper cell division, because it secures sister-chromatid cohesion following DNA replication unti
193 ound that GA leads to a more general loss of sister chromatid cohesion for cellular chromosomes.
194                      In the absence of Wapl, sister chromatid cohesion functions well, suggesting tha
195  multi-subunit protein complex essential for sister chromatid cohesion, gene expression and DNA damag
196 mplex that regulates 3D genome organization, sister chromatid cohesion, gene expression, and DNA repa
197                   In addition to its role in sister chromatid cohesion, genome stability and integrit
198 n to centromeres, which disrupts centromeric sister chromatid cohesion, had no effect on this spindle
199 iotic prophase chromosome axis that mediates sister chromatid cohesion, homologous recombination and
200 cate that they function together to maintain sister chromatid cohesion in Drosophila meiosis.
201 tive acetyltransferase that is important for sister chromatid cohesion in Drosophila melanogaster, bu
202                         Timely resolution of sister chromatid cohesion in G2/M is essential for genom
203                    USP13 was dispensable for sister chromatid cohesion in HCT116 and HeLa cells, wher
204           We showed that San is critical for sister chromatid cohesion in HeLa cells, suggesting that
205  (MRE11A and CDC4) also resulted in abnormal sister chromatid cohesion in human cells.
206 -mRNA splicing factors that are required for sister chromatid cohesion in human cells.
207 cate that Eco1 modifies cohesin to stabilize sister chromatid cohesion in parallel with a cohesion es
208 C) subunit Mnd2 is necessary for maintaining sister chromatid cohesion in prophase I of meiosis by in
209  for LAB-1 in promoting the establishment of sister chromatid cohesion in prophase I.
210 epletion of lab-1 results in partial loss of sister chromatid cohesion in rec-8 and coh-4 coh-3 mutan
211  has been implicated in the establishment of sister chromatid cohesion in S phase, yet its function o
212        Mechanistically, STAG1 loss abrogates sister chromatid cohesion in STAG2 mutated but not in wi
213                     Unlike in budding yeast, sister chromatid cohesion in vertebrate cells is resolve
214 y in vitro, and its activity is required for sister chromatid cohesion in vivo.
215 depletion of H2A.Z causes precocious loss of sister chromatid cohesion in yeast without loss of Mcd1
216      Shugoshin 1 (Sgo1) protects centromeric sister-chromatid cohesion in early mitosis and, thus, pr
217  has previously been shown to play a role in sister-chromatid cohesion in metazoans.
218 they modify different effectors and regulate sister-chromatid cohesion in opposing ways.
219 ver, mtrm-null females are sterile [13], and sister chromatid cohesion is abolished on all chromosome
220                                       Proper sister chromatid cohesion is critical for maintaining ge
221                            Timely release of sister chromatid cohesion is essential for accurate chro
222                             Cohesin-mediated sister chromatid cohesion is essential for chromosome se
223                                              Sister chromatid cohesion is essential for tension-sensi
224                                              Sister chromatid cohesion is essential to maintain stabl
225             The mechanistic details by which sister chromatid cohesion is established and maintained
226                                              Sister chromatid cohesion is established during replicat
227 , and essentially nothing is known about how sister chromatid cohesion is established in plants.
228 cent studies have provided insights into how sister chromatid cohesion is established, less is known
229 moters and transcriptional enhancers, or how sister chromatid cohesion is established.
230                                              Sister chromatid cohesion is generated during DNA replic
231                                              Sister chromatid cohesion is intact in FACT-depleted cel
232                                              Sister chromatid cohesion is mediated by entrapment of s
233                                              Sister chromatid cohesion is normally established in S p
234 lents lack normal asymmetrical features, and sister chromatid cohesion is prematurely lost during the
235                                              Sister chromatid cohesion is thought to involve entrapme
236        The contribution of DNA catenation to sister chromatid cohesion is unclear partly because it h
237                    At the onset of anaphase, sister-chromatid cohesion is dissolved abruptly and irre
238                                              Sister-chromatid cohesion is established by Eco1-mediate
239     We provide genetic evidence to show that sister-chromatid cohesion is not necessary for activatio
240   Cohesin, the protein complex that mediates sister chromatid cohesion, is required for faithful chro
241 cohesin-associated protein known to regulate sister chromatid cohesion, is required for homologue pai
242             Apart from its role in mediating sister chromatid cohesion, it is also important for DNA
243 s several major mitotic processes, including sister chromatid cohesion, kinetochore-microtubule attac
244 ophase chromosome morphology and for meiotic sister-chromatid cohesion leading to a reductive chromos
245 proteins SOLO, SUNN, and ORD is required for sister-chromatid cohesion, localizes to the centromeres
246 vering an unexpected link between stress and sister chromatid cohesion loss.
247 a decrease in securin that ultimately causes sister chromatid cohesion loss.
248                                              Sister chromatid cohesion mediated by the cohesin comple
249                                              Sister chromatid cohesion mediated by the cohesin comple
250                                              Sister-chromatid cohesion mediated by cohesin ensures pr
251                                              Sister chromatid cohesion, mediated by cohesin complexes
252 ition to its canonical function of mediating sister chromatid cohesion, might also be involved in reg
253 CR) recruits protein complexes that regulate sister chromatid cohesion, monitor tension, and modulate
254  either sever a univalent along the plane of sister chromatid cohesion or knock out one of a univalen
255 in genes implicated in kinetochore function, sister chromatid cohesion, or relatively late steps of D
256 usly envisioned and suggest that CDK acts in sister chromatid cohesion parallel to Ctf7p reactions.
257  a cohesin-interacting protein essential for sister chromatid cohesion, plays a novel role in the res
258             The prevailing embrace model for sister chromatid cohesion posits that a single cohesin c
259 xibility, enhancing our understanding of the sister chromatid cohesion process.
260 pl-Pds5 binding to the cohesin subcomplex of sister chromatid cohesion protein 1 (Scc1) and stromal a
261                                   PDS5B is a sister chromatid cohesion protein that is crucial for fa
262                        Our data suggest that sister-chromatid cohesion proteins not only maintain the
263 ilitating the recruitment of kinetochore and sister-chromatid cohesion proteins, both required for co
264                                              Sister chromatid cohesion provides the mechanistic basis
265 r results indicate that Aust is required for sister chromatid cohesion, recruitment of the CPC to kin
266                                              Sister chromatid cohesion refers to the process by which
267          In MAD2/mad2Delta cells with normal sister chromatid cohesion, removing one copy of MAD1 res
268                              In vertebrates, sister chromatid cohesion requires the activity of the E
269                          The process, termed sister chromatid cohesion, requires the multisubunit coh
270                  During mitosis and meiosis, sister chromatid cohesion resists the pulling forces of
271 We suggest that, in the absence of SeqA, the sister-chromatid cohesion 'safety spacer' is destabilize
272 sure correct meiotic chromosome segregation, sister chromatid cohesion (SCC) needs to be maintained f
273                                              Sister chromatid cohesion (SCC), efficient DNA repair, a
274 meiosis begins, sisters are held together by sister chromatid cohesion (SCC), mediated by the cohesin
275 e cohesin, the protein complex that mediates sister chromatid cohesion (SCC).
276 o observe that loss of Hst3 function impairs sister chromatid cohesion (SCC).
277 chromatin requires the heterodimeric complex sister chromatid cohesion (Scc)2 and Scc4 (Scc2/4), whic
278                       Other conditions, like sister-chromatid cohesion (SCC), may span several chromo
279 lls depleted of CONCR show severe defects in sister chromatid cohesion, suggesting an essential role
280  without premeiotic chromosomal replication, sister chromatid cohesion, synapsis or recombination.
281 cellular functions including gene silencing, sister chromatid cohesion, telomere biology, heterochrom
282                       During the cell cycle, sister-chromatid cohesion tethers sister chromatids toge
283           Sororin is a positive regulator of sister chromatid cohesion that interacts with the cohesi
284 te the establishment and two-step release of sister chromatid cohesion that underlies the production
285 ability, including homologous recombination, sister chromatid cohesion, the spindle checkpoint, postr
286         The cohesin protein complex mediates sister chromatid cohesion to ensure accurate chromosome
287 g S phase is accompanied by establishment of sister chromatid cohesion to ensure faithful chromosome
288                Thus, STAG1 and STAG2 support sister chromatid cohesion to redundantly ensure cell sur
289 hanistic) importance in linking the sites of sister chromatid cohesion to the chromosomal regions tha
290 esins, which load during S phase and mediate sister-chromatid cohesion, usually occur as individual c
291                  A role of ChlR1 helicase in sister chromatid cohesion was first evidenced by studies
292                       In addition, defective sister chromatid cohesion was observed in five HNSCC cel
293 Kleisin-like protein and ORD is required for sister-chromatid cohesion, we tested the hypothesis that
294 ubunits of the cohesin complex that controls sister chromatid cohesion, whereas NIPBL facilitates coh
295 rotein complex is best known for its role in sister chromatid cohesion, which is crucial for accurate
296 n proliferating cells, cohesin also mediates sister chromatid cohesion, which is essential for chromo
297                             Cohesins mediate sister chromatid cohesion, which is essential for chromo
298                                              Sister chromatid cohesion, which is essential for mitosi
299                                              Sister chromatid cohesion, which is mediated by the cohe
300                 The ring model predicts that sister chromatid cohesion would be lost by transient hin

 
Page Top