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2 nally, Aurora-A(-/-) keratinocytes displayed centrosomal abnormalities that included centrosomes loca
3 cell mitotic protein TACC3 leads to enhanced centrosomal abnormalities, activation of death programs,
5 ated ciliogenesis defects correlate with the centrosomal accumulation of both phospho-RAB8 and phosph
9 ich we show here are required for GFP-Rabin8 centrosomal accumulation, supporting a role for the TRAP
11 ng both in vitro and in vivo assays to study centrosomal actin nucleation as cells pass through mitos
12 observe that Net1 expression is required for centrosomal activation of p21-activated kinase and its d
15 ry breaking early in the cell cycle, whereas centrosomal AIR-1 instructs polarity initiation thereaft
16 on by BMI1 exerts several effects, including centrosomal amplification and aneuploidy, antiapoptosis,
17 tumor growth in murine xenograft models, and centrosomal amplification induced by its overexpression.
19 istically significant increases (P < .05) in centrosomal amplification, micronuclei, and micronuclei
20 e, were examined for genotoxicity, including centrosomal amplification, micronuclei, and micronuclei
23 ex (gamma-TuRC) is an essential regulator of centrosomal and acentrosomal microtubule formation, yet
25 t the temporally orchestrated destruction of centrosomal and ciliary proteins is a necessary antecede
26 and mass spectrometry of interactors of the centrosomal and ciliopathy protein, CEP19, we identify C
27 suggest that Nin plays a supportive role in centrosomal and extracentrosomal microtubule organizatio
28 mediated depletion of Cyclin F in G2 induces centrosomal and mitotic abnormalities, such as multipola
29 ctedly, CN shows SLiM-dependent proximity to centrosomal and nuclear pore complex (NPC) proteins-stru
30 ;Nedd9(-/-) cells have increased cell cycle, centrosomal, and mitotic defects, phenotypes compatible
32 CA-1 acts with gamma-tubulin to assemble non-centrosomal arrays in multiple tissues and highlight fun
35 f-function mutations predominantly affecting centrosomal-associated proteins, but the multiple roles
36 ne width was broadened by attenuation of the centrosomal asters but was not affected by MP-GAP inhibi
37 the relative contributions of RhoA flux and centrosomal asters in controlling RhoA zone dimensions.
40 f motor proteins, plays an essential role in centrosomal bundling in cancer cells, but its function i
46 r, we uncover a critical requirement for the centrosomal casein kinase I delta (CKIdelta) in centroso
47 sion from the centrosome, thereby inhibiting centrosomal Cdc20-APC activity and triggering the transi
50 y of a prototype small molecule inhibitor of centrosomal clustering and strongly support the further
52 h associates with spindle poles and promotes centrosomal clustering, is essential for formation of a
54 These data suggest that the LRRK2-mediated centrosomal cohesion and ciliogenesis defects are distin
55 us and highlight the possibility that either centrosomal cohesion and/or ciliogenesis alterations may
56 ut also of phospho-RAB10, and the effects on centrosomal cohesion are dependent on RAB8, RAB10 and RI
57 accumulation of phosphorylated RAB8A causes centrosomal cohesion deficits in dividing cells, includi
60 mutated in 3M short stature syndrome, form a centrosomal complex that regulates CUL9 and its substrat
65 asma gondii, TgCep250, in connecting the two centrosomal cores and promoting their structural integri
66 This delay suppresses polarization by non-centrosomal cues, which can otherwise trigger premature
68 , in its turn, deregulates the activation of centrosomal cyclin B-Cdk1 and advances entry into mitosi
69 mogenesis by enabling CLL cells to cope with centrosomal defects acquired during malignant transforma
71 pic RGPs, as well as those in the VZ, with a centrosomal deficit exhibited prolonged mitosis, p53 upr
72 copy, and live-cell imaging we discover that centrosomal delivery of Polo-like kinase 1 (Plk1) and Au
73 ulates a variety of cell functions including centrosomal duplication, cell cycle control, and apoptos
77 n) expresses two major protein variants: the centrosomal form (CnnC) and a non-centrosomal form in te
79 is by multiple mechanisms, one involving its centrosomal function and another dependent on its intera
80 ex and that this localization regulates both centrosomal function and JAK2 kinase activity, thus cont
81 ions in CDK5RAP2 is associated with impaired centrosomal function and with changes in mitotic spindle
83 Our results suggest distinct apoptotic and centrosomal functions of BRCA1 in neural progenitors, wi
85 specifically regulate an ATG8 ortholog, the centrosomal GABARAP reservoir, and centrosome-autophagos
86 y reported, we show that loss of B1 enhanced centrosomal gamma-tubulin localization and microtubule n
87 ession results in mislocalized Plk1 and poor centrosomal gamma-tubulin recruitment, potentially contr
88 Removing sDAPs alter the distal border of centrosomal gamma-tubulins, illustrating a new role of s
89 e signature expression correlate with CA and centrosomal gene signature expression in breast tumors.
97 revents NEK2-controlled dissolution of loose centrosomal linker and subsequent centrosomal separation
99 la Asl and human CEP152 are required for the centrosomal loading of Plk4 in Drosophila and CPAP in hu
102 or human neurodevelopment that promotes CDK2 centrosomal localization and centriole duplication.
104 and C termini of BRCA1 are required for its centrosomal localization and that BRCA1 moves to the cen
105 Here, we show that specific DAs lose their centrosomal localization at the G2/M transition in a man
106 of mitotic lymphoblasts or PBMCs bearing p53 centrosomal localization clearly discriminated among hea
109 , and disruption of this motif prevents both centrosomal localization of Cdc13 and the onset of mitos
110 ese results provide strong evidence that the centrosomal localization of CK1delta is required for Wnt
114 pd2 mutants unable to bind Fzr, we show that centrosomal localization of Fzr is essential for optimal
116 sition requires a functional centrosome, and centrosomal localization of numerous proteins, including
117 artic acid phosphomimetic (S490D) results in centrosomal localization of occludin and increases cell
118 ow that phosphorylation is required only for centrosomal localization of p150(Glued) and does not aff
119 ediated by a 20 amino acid domain termed the centrosomal localization sequence (CLS), and expression
129 , we investigate the organization of the non-centrosomal microtubule arrays present in the epidermis
131 Our data indicate that, through increased centrosomal microtubule nucleation, centrosome amplifica
134 microtubule cytoskeleton that grows from non-centrosomal microtubule organising centres (ncMTOCs) alo
135 ular zone, which reveals the pivotal role of centrosomal microtubule organization in enabling cells t
136 th PAR-6, we propose that PAR-6 promotes non-centrosomal microtubule organization through localizatio
141 member of the XMAP215 family-to assemble non-centrosomal microtubules and does so independently of th
142 on, which may function to tune the levels of centrosomal microtubules during passage through mitosis.
146 iated by the plus-end kinesin KIF16B and non-centrosomal microtubules, and its delivery to the apical
147 tein is necessary and sufficient to organize centrosomal microtubules, and promote their nucleation a
148 crotubule interactions among male pronuclei, centrosomal microtubules, and the animal pole, but not t
152 sent the first theoretical model for the non-centrosomal MT cytoskeleton in Drosophila oocytes, in wh
159 icrotubule-organizing centers (MTOCs) to non-centrosomal MTOCs during differentiation is poorly under
163 ule, reveal that the anchoring of apical non-centrosomal MTs at apical junctions is polarized, observ
165 question of whether Golgi assembly requires centrosomal MTs or can be self-organized, relying on its
166 Increased DVL levels, in contrast, sequester centrosomal NEK2 and mimic monopolar spindle defects ind
167 subunit-associated protein 2 (CDK5RAP2) and centrosomal Nek2-associated protein 1 (C-NAP1), two prot
168 clude that cell confinement controls nuclear-centrosomal orientation and lumen initiation during 3D e
169 s recruitment is dependent on hSAS-6 but not centrosomal P4.1-associated protein (CPAP) and CP110.
172 in vivo that DISC1 coding variants modulate centrosomal PCM1 localization, highlight a role for DISC
173 sonance energy transfer reporters shows that centrosomal PDE4D3 modulated a dynamic microdomain withi
177 of Plk1 in zebrafish embryos illustrates how centrosomal Plk1 underlies mitotic spindle assembly.
178 ay in interphase cells, and depletion of its centrosomal pool entails microtubule disorganization.
179 ft140-deleted collecting ducts showed normal centrosomal positioning and no misorientation of the mit
180 l a critical role for SDCCAG8 in controlling centrosomal properties and function, and provide insight
184 ature centrioles (basal bodies) and requires centrosomal protein 164kDa (Cep164), a component of dist
185 s) and recruitment of the insulator proteins Centrosomal Protein 190 kD (CP190) and Modifier of mdg4
186 2), potently and selectively binds the human centrosomal protein 250 (CEP250), resulting in disruptio
195 n, the membrane glycoprotein dysadherin, the centrosomal protein 68 (Cep68), and the cytoskeletal ada
196 hts the article by Shi et al that identified centrosomal protein 70 as a key mediator of breast cance
197 the article by Li et al that identified the centrosomal protein 72 as a biomarker for prognosis of u
198 -1G>A and c.534delT) in CEP78, which encodes centrosomal protein 78, in six individuals of Jewish anc
200 age proteins Fas-binding factor 1 (FBF1) and centrosomal protein 83 (CEP83), which we show here are r
202 es and basal bodies via interaction with the centrosomal protein CAP350 and demonstrate that CYLD mus
203 We further show that downregulation of the centrosomal protein Cep120 impairs microtubule organizat
207 microcephaly- and primordial dwarfism-linked centrosomal protein CEP215 has been implicated in this p
212 motifs of TRMs are found in CAP350, a human centrosomal protein interacting with FOP, and the C-term
213 er region of the CEP72 gene, which encodes a centrosomal protein involved in microtubule formation, h
214 entrosomin (cnn), an essential gene encoding centrosomal protein isoforms required during syncytial d
217 somal protein 4.1-associated protein (CPAP), centrosomal protein of 152 kDa (CEP152), and centrobin a
219 e/threonine kinase, Aurora A (AurA), and the centrosomal protein of 192 kDa (Cep192)/spindle defectiv
220 in rat brain-11A, Ras-like in rat brain-8A, centrosomal protein of 290 kDa, pericentriolar material
221 ts in human pericentrin (PCNT), encoding the centrosomal protein pericentrin, cause a form of osteody
225 has a mutation in KIAA0586, which encodes a centrosomal protein required for the formation of primar
226 yeast two-hybrid screening, we identify the centrosomal protein RSA-2 as a SYS-1 binding partner and
227 identified mutations in a gene encoding the centrosomal protein SDCCAG8 as causing NPHP type 10 in h
228 , microcephaly caused by the loss of the non-centrosomal protein SMC5 is also TP53-dependent but is n
231 er, these results demonstrate that SFI1 is a centrosomal protein that localizes USP9X to the centroso
234 hat mutations in CSPP1, which encodes a core centrosomal protein, are disease causing on the basis of
235 ns, which share similarity with FOP, a human centrosomal protein, are essential for microtubule organ
238 influence of DISC1 genotype extends to other centrosomal proteins and DISC1 binding partners remains
239 ) in muscle cells due to the accumulation of centrosomal proteins and microtubule (MT) nucleation act
244 melanogaster spermiogenesis, the quantity of centrosomal proteins is dramatically reduced; for exampl
245 from the other events and to determine that centrosomal proteins lead the reorganization hierarchy.
247 on-induced autophagosome biogenesis, but how centrosomal proteins regulate GABARAP localization is un
248 this paper, we identify a specific subset of centrosomal proteins that are recruited to the cell cort
249 specifically interacts with CP110 and Cep97, centrosomal proteins that play a role in regulating cent
250 These include Lis1 and Ndel1, which are centrosomal proteins that regulate microtubule organizat
251 gesting that Mps1 phosphorylates a subset of centrosomal proteins to drive the assembly of new centri
254 eractions of INPP5E with several ciliary and centrosomal proteins, including a recently identified ci
255 on (BioID) method [13, 14], we found several centrosomal proteins, including Akap450, Pcm1, and Peric
257 y of kinesin and that Akap450, but not other centrosomal proteins, is required for MT nucleation from
263 f centrosomes from cells' ends, we show that centrosomal proximity is predictive of the placement of
265 Moreover, centriolin depletion displaces the centrosomal Rab11 GAP, Evi5, and increases mother-centri
267 stream vesicular transport events leading to centrosomal Rab8 activation and ciliary membrane formati
268 show that TRAPP II subunits colocalize with centrosomal Rabin8 and are required for Rabin8 preciliar
269 reased MT nucleation rate and diminished the centrosomal recruitment of EB1 without affecting MT grow
270 in RNAs or a loss-of-function allele impairs centrosomal recruitment of gamma-tubulin and pericentrin
272 th Rab5a and PKC dynamically interact at the centrosomal region of migrating cells, and PKC-mediated
273 d to MT-associated protein 1B (MAP1B) in the centrosomal region, where it maintained MT acetylation.
276 ng and phosphorylation of BRCA1 enhanced its centrosomal retention and regulation of centrosome ampli
277 with Aurora A kinase inhibitor, suggesting a centrosomal role for the Aurora A-dependent complex of c
279 erial disorganization, as well as defects in centrosomal separation and mitotic chromosome alignment.
280 l of linker proteins, an event necessary for centrosomal separation and proper formation of the mitot
282 reorganize and move from centrosomal to non-centrosomal sites at the RB-sperm boundary whereas actin
283 MTOC and MTOC function is reassigned to non-centrosomal sites such as the apical membrane in epithel
285 o recruits the gamma-tubulin complex to both centrosomal (spindle pole body) and non-centrosomal site
286 l differentiation by switching Ninein from a centrosomal splice form in NPCs to a non-centrosomal iso
287 n mammals, Cep250 processing is required for centrosomal splitting and is mediated by Nek phopsphoryl
288 newly synthesized ILK protein colocalized to centrosomal structures and was required for correct cent
292 wn and unique substrates, including multiple centrosomal substrates for Syk, were identified, support
298 intact microtubules reorganize and move from centrosomal to non-centrosomal sites at the RB-sperm bou
300 data suggest that the mitotic regulation of centrosomal WASH and the Arp2/3 complex controls local a