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1 raction of full-length PsIAA4 in vivo (yeast two-hybrid system).
2 as a novel DAT binding partner using a yeast two-hybrid system.
3 2)-Heremans-Schmid glycoprotein in the yeast two-hybrid system.
4 n in a membrane-bound, split-ubiquitin yeast two-hybrid system.
5 2-kDa alpha-zein when expressed in the yeast two-hybrid system.
6 anchor in MinD interactions, using the yeast two-hybrid system.
7 rosophila PP1c-binding proteins in the yeast two-hybrid system.
8 14), in the N terminus of BfpE using a yeast two-hybrid system.
9 e (mPNGase) were detected by using the yeast two-hybrid system.
10  in affinity chromatography and in the yeast two-hybrid system.
11 mer-dependent readout from an AcnB bacterial two-hybrid system.
12 wed by phenotypic screening based on a yeast two-hybrid system.
13 human cDNA library was screened in the yeast two-hybrid system.
14  interaction with both XRCC3 and RAD51B in a two-hybrid system.
15 f AbetaPP have been isolated using the yeast two-hybrid system.
16 o-terminal end of P. yoelii MSP-1 in a yeast two-hybrid system.
17 ated the interaction directly with the yeast two-hybrid system.
18 ins that interacted with p35 using the yeast two-hybrid system.
19 h each other and self-associate in the yeast two-hybrid system.
20 1 receptor-interacting domain in a mammalian two-hybrid system.
21 IFT complex was investigated using the yeast two-hybrid system.
22 g) of SV40 virus in a tetracycline-inducible two-hybrid system.
23 (IncG) was demonstrated by using a bacterial two-hybrid system.
24 VacA (termed p-33 and p-55) by using a yeast two-hybrid system.
25 trap were active when tested using the yeast two-hybrid system.
26 y to mediate heterodimerization in the yeast two-hybrid system.
27 aptured proteins was verified in a bacterial two-hybrid system.
28  library via a variant of the original yeast two-hybrid system.
29 e 4OHT-bound ERalpha conformation in a yeast two-hybrid system.
30  protein was investigated by using the yeast two-hybrid system.
31 of protein-protein interactions is the yeast two-hybrid system.
32 , as well as genetic tools such as the yeast two-hybrid system.
33 d MazF was also characterized with the yeast two-hybrid system.
34 n of full-length Qin and TLE1 in a mammalian two-hybrid system.
35 ctin was originally characterized by a yeast two-hybrid system.
36 tant protein interactions has been the yeast two-hybrid system.
37 to interact with wild-type p-55 in the yeast two-hybrid system.
38  and found to interact strongly in the yeast two-hybrid system.
39 interacted with GlnK and GlnKY51F in a yeast two-hybrid system.
40 al regulatory region of p100 using the yeast two-hybrid system.
41 (28) was demonstrated by utilizing the yeast two-hybrid system.
42 or receptor family, as the bait in the yeast two-hybrid system.
43 ular meshwork (TM) cells through a mammalian two-hybrid system.
44 g that the interaction was not unique to the two-hybrid system.
45  SKR-1, -2, -3, -7, -8, and -10 in the yeast two-hybrid system.
46  beta-, gamma-, and delta-zeins in the yeast two-hybrid system.
47 complementary DNA library by using the yeast two-hybrid system.
48 and p67(phox) was demonstrated using a yeast two-hybrid system.
49 eened for p35-interacting proteins using the two-hybrid system.
50 xpression library was screened using a yeast two-hybrid system.
51 ct interaction of FleN and FleQ in the yeast two-hybrid system.
52 eraction was initially found using the yeast two-hybrid system.
53 also detected with the yeast split-ubiquitin two-hybrid system.
54 eoB, as determined using the BACTH bacterial two-hybrid system.
55 ouse Rpgr(ORF15) was used as bait in a yeast two-hybrid system.
56 he Cdh1 substrate-binding protein in a yeast two-hybrid system.
57 n-protein interaction assays using the yeast two-hybrid system.
58 eracts with AtbZIP68 and AtGBF1 in the yeast two-hybrid system.
59 re, LIN-56 and LIN-15A interact in the yeast two-hybrid system.
60 Munc18-1 was also identified using the yeast two-hybrid system.
61 inal domain (LN) interactions in a bacterial two-hybrid system.
62 -immunoprecipitation assay and the mammalian two-hybrid system.
63 rfered with MzrA-EnvZ binding in a bacterial two-hybrid system.
64 ve for multimerization using a reverse yeast two-hybrid system.
65 ing a highly specific, high-throughput yeast two-hybrid system.
66 ng site, CudA forms a homodimer in the yeast two-hybrid system.
67  directly with the FANCD2 protein in a yeast two-hybrid system.
68 tein, and they interact with each other in a two-hybrid system.
69 loped a cost-effective high-throughput yeast two-hybrid system.
70 r Msi1p to associate with Cac1p in the yeast two-hybrid system.
71 nal Y6 cell cDNA library using the bacterial two-hybrid system.
72 d by using a stringent high-throughput yeast two-hybrid system.
73 he Z ring or interact with FtsZ in the yeast two-hybrid system.
74  effect on MarR interaction with TktA in the two-hybrid system.
75 riptional activation and expression in yeast two-hybrid systems.
76                                Using a yeast two-hybrid system, 38 candidates interacting with TcPKAc
77 tein interaction assays done using the yeast two-hybrid system, 56 (approximately 17%) showed positiv
78                  We report that in the yeast two-hybrid system a domain of U(S)3 essential for antiap
79 sent study we have isolated, using the yeast two-hybrid system, a 182 amino acid residue fragment of
80 s using reporter genes: a modified mammalian two-hybrid system, a bioluminescence resonance energy tr
81                We use the well studied yeast two-hybrid system adapted for mammalian cells and modify
82                                  A bacterial two-hybrid system allowed us to provide clear evidence f
83 and HPS4 do not interact directly in a yeast two-hybrid system, although HPS4 interacts with itself.
84                              Using the yeast-two hybrid system and coprecipitation of recombinant pro
85 ated polypeptides using the Gal4-based yeast two-hybrid system and a cDNA library derived from a chon
86   Using the yeast (Saccharomyces cerevisiae) two-hybrid system and a potato (Solanum tuberosum) KNOX
87                              Using the yeast two-hybrid system and a protein array membrane, we ident
88                              Using the yeast two-hybrid system and affinity immobilization assays, we
89 vealed by the RNAi assays, we used the yeast two-hybrid system and an in vitro glutathione-S-transfer
90                              Using the yeast two-hybrid system and bimolecular fluorescence complemen
91 the importin alpha protein family in a yeast two-hybrid system and by an in planta bimolecular fluore
92 32, both by genetic criteria using the yeast two-hybrid system and by biochemical criteria using the
93 action was confirmed in a conventional yeast two-hybrid system and by direct interaction between puri
94          In a novel application of the yeast two-hybrid system and by immunoprecipitation, we show he
95  To explain this process, we show by a yeast two-hybrid system and chemical cross-linking that the lu
96         Additional studies using a mammalian two-hybrid system and ChIP indicate that 2MD is also mor
97         Snf1 also interacts with Nrg1 in the two-hybrid system and co-immunoprecipitates with both Nr
98                            We used the yeast two-hybrid system and co-immunoprecipitation analysis to
99                                    Mammalian two-hybrid system and co-immunoprecipitation assays both
100 tion between Rad52 and Rad59 using the yeast two-hybrid system and co-immunoprecipitation from yeast
101                              Using the yeast two-hybrid system and co-immunoprecipitation methods, we
102                         Using both the yeast two-hybrid system and coimmunoprecipitation assays, we c
103 were systematically mapped using a mammalian two-hybrid system and confirmed using a co-immunoprecipi
104 ion was initially demonstrated using a yeast two-hybrid system and corroborated by both in vivo and i
105 ed out in Escherichia coli using a bacterial two-hybrid system and do not require specialized equipme
106 ha12.1 subunit by using a modified mammalian two-hybrid system and fluorescence resonance energy tran
107 reened a prostate cDNA library using a yeast two-hybrid system and found that the cleavage and polyad
108 a binding partner for UNC5H1 using the yeast two-hybrid system and found that the extreme three C-ter
109  decorin and EGFR was confirmed in the yeast two-hybrid system and further validated by experiments u
110                            We used the yeast two-hybrid system and gel overlays to study intimin-Tir
111 eins was shown using a split ubiquitin yeast two-hybrid system and gel shift assays.
112                         By using a bacterial two-hybrid system and genetic mutagenesis, we showed tha
113                 We utilized a modified yeast two-hybrid system and identified a new, widely expressed
114 e cytoplasmic domain of ADAM12 using a yeast two-hybrid system and identified a protein called PACSIN
115 Nck via the intermediate domain in the yeast two-hybrid system and in a glutathione S-transferase (GS
116 pamine D(2) receptor interact in a bacterial two-hybrid system and in a poly-histidine pull-down assa
117 uired for interaction with skNAC in both the two-hybrid system and in coimmunoprecipitation experimen
118 interacts physically with eIF4A in the yeast two-hybrid system and in GST pull-down assays and that t
119  with Agrobacterium protein VirE2 in a yeast two-hybrid system and in planta.
120 terminal motif in Hook proteins in the yeast two-hybrid system and in tissue culture cells, and Hook
121 also interacts with OASTL based on the yeast two-hybrid system and in vitro binding assays.
122 t directly associates with maspin in a yeast two-hybrid system and in vitro.
123 ly developed interaction assays (e.g., yeast two-hybrid system and split-ubiquitin assay) usually are
124 of maspin, we employed a maspin-baited yeast two-hybrid system and subsequently identified Interferon
125 eins that interacted with INSM1 by the yeast two-hybrid system and the binding of one of them, Cbl-as
126                        We employed the yeast two-hybrid system and used perlecan domain V as bait to
127 kigamma2, -gamma3, and -epsilon in the yeast two-hybrid system, and bound Ckidelta and -epsilon in pu
128 luoro-octanoate-PAGE, a membrane-based yeast two-hybrid system, and chemical cross-linking experiment
129     3DX bound well to its epitope in a yeast two-hybrid system, and GST-fused 3DX also bound to sever
130  plant SnRK AKIN11 both in vivo in the yeast two-hybrid system, and in vitro in a GST-fusion 'pull do
131  the spliceosome protein U1-70K in the yeast two-hybrid system, and is co-localized with U1-70K in nu
132 n cultured TM cells, by means of a mammalian two-hybrid system, and through biochemical coimmunopreci
133                         Whereas a variety of two-hybrid systems are available to measure the interact
134 protein complexes, was identified by a yeast two-hybrid system as a strong and specific binding partn
135 DCL3, also known as PhLP2A), through a yeast two-hybrid system, as a novel protein involved in the st
136 s among lens crystallins in a mammalian cell two-hybrid system assay and speculated about the signifi
137 n complex in vivo as determined by bacterial two-hybrid system assay.
138 ein interactions was screened by a mammalian two-hybrid system assay.
139             Analysis of the Pnn motifs using two-hybrid system assays demonstrated that the polyserin
140                                   In a yeast two-hybrid system based on reconstitution of Ras signali
141            Immunoprecipitation and the yeast two-hybrid system both suggest physical interaction of t
142                              Using the yeast two-hybrid system, CCTeta was found to bind to the N-ter
143                             With a mammalian two-hybrid system, coimmunoprecipitation experiments, an
144 studied using affinity chromatography, yeast two-hybrid system, coimmunoprecipitation, and gel overla
145  purification-mass spectrometry or the yeast two-hybrid system, contributes a unique and relevant per
146                            We used the yeast two-hybrid system coupled with random mutagenesis to ide
147                                    The yeast two-hybrid system data also indicated that CarR is capab
148 e, extensive assays utilizing the Gal4 yeast two-hybrid system demonstrate interactions of synemin wi
149                  Experiments using the yeast two-hybrid system demonstrated a protein-protein interac
150                             Use of the yeast two-hybrid system demonstrated direct interaction betwee
151                    Analysis with a bacterial two-hybrid system designed to facilitate the study of pr
152   In this review we will introduce the yeast two-hybrid system, discuss modifications of the system t
153 library carrying M. xanthus DNA in the yeast two-hybrid system, eight positive, independent clones co
154                                The bacterial two-hybrid system established a specific interaction bet
155 brane-based yeast (Saccharomyces cerevisiae) two-hybrid system established that tetraspanins can phys
156 t epithelial cell cDNA library using a yeast two-hybrid system for ARHI-interacting proteins.
157 brary was then introduced into yeast surface two-hybrid system for final quantitative selection of an
158       When these variants were tested in the two-hybrid system for their interaction with NtrB, a rec
159                                  A bacterial two-hybrid system further indicated that Rv3789 interact
160  its original description in 1989, the yeast two-hybrid system has been extensively used to identify
161                  In the membrane-based yeast two-hybrid system, homo-oligomeric interactions between
162 at occur in E. coli also occurs in the yeast two-hybrid system (i.e., off-DNA).
163 obunyavirus N protein by yeast and mammalian two-hybrid systems, immunoprecipitation experiments, and
164 domains of each immune receptor in the yeast two-hybrid system in a kinase activity-dependent manner.
165 d using the yeast (Saccharomyces cerevisiae) two-hybrid system in Arabidopsis (Arabidopsis thaliana).
166  human DNA ligase IV, we have used the yeast two-hybrid system in conjunction with traditional bioche
167  have been combined with a bacterial reverse two-hybrid system in our labs and used in the identifica
168                          We used a mammalian two-hybrid system in this study.
169 ein for readout of a tetracycline-inducible, two-hybrid system in vivo.
170                             We demonstrate a two-hybrid system in which MAL62p is used in conjunction
171                           By using the yeast two-hybrid system, in vitro coimmunoprecipitation, and i
172      Additional mapping studies in the yeast two-hybrid system indicated that only the N-terminal por
173                                    The yeast two-hybrid system indicated that regions near the C term
174                                  A Bacterial Two Hybrid system indicates that DauA and the sensor com
175                        Analysis in the yeast two-hybrid system indicates that the N-terminal portions
176 EC proteins can dimerize with SPT in a yeast two-hybrid system, indicating that the HEC genes work in
177 criptional effectors (LITEs), an optogenetic two-hybrid system integrating the customizable TALE DNA-
178 cells as demonstrated in yeast and mammalian two-hybrid systems; interaction sites are mapped to 237-
179                            Using a bacterial two-hybrid system, it could be shown that the N-terminus
180 is sensitivity issue, we introduced in vitro two-hybrid system (IVT2H) into microfluidic drops and de
181 r-binding protein PspF to create an in vitro two-hybrid system (IVT2H), capable of carrying out gene
182 es the interaction with Rad54 protein in the two-hybrid system, leads to increased sensitivity to the
183 y-capture complex purification and the yeast two-hybrid system, may produce inaccurate data sets owin
184 d the Sos recruitment system, an alternative two-hybrid system method to detect protein-protein inter
185                     When tested in the yeast two-hybrid system, mutation of Leu-536 increased the bas
186 riments using either a split ubiquitin yeast two-hybrid system or bimolecular fluorescence complement
187 e1 did not interact with ABIN-2 in the yeast two-hybrid system or mammalian cells.
188 on pathways have successfully used the yeast two-hybrid system or related methods.
189 ing the C-terminus of LPP as bait in a yeast two hybrid system, palladin, an actin-associated protein
190                       Using a modified yeast two-hybrid system, PDZ(Omi) mutants were isolated by the
191                     By employing a bacterial two hybrid system, pull down assays and surface plasmon
192                           By using the yeast two-hybrid system, purified lectin and pilin domains, an
193 hance N-terminal dimerization in a bacterial two-hybrid system reconstituted in V. cholerae, which is
194      These data demonstrate that the imaging two-hybrid system responds in a proportional fashion to
195 ur approach increased the sensitivity of the two-hybrid system, resulting in a more complete interact
196 screen a human heart cDNA library in a yeast two-hybrid system, retrieving two unique clones that enc
197            Deletion analysis using the yeast two-hybrid system revealed that the armadillo repeat dom
198 opamine D(2) receptor as bait in a bacterial two-hybrid system, S100B was determined to be a potentia
199                                  A bacterial two-hybrid system screen identified bacterioferritins an
200                           Although the yeast two-hybrid system suggested an interaction of six differ
201                                  A mammalian two-hybrid system (termed as trM2H) was developed to det
202 S could not be demonstrated with a bacterial two-hybrid system that reconstitutes an intracellular ce
203 er, MA showed binding to TSG101 in the yeast two-hybrid system that was dependent on an intact PTAP m
204   Utilizing a split-ubiquitin membrane yeast two-hybrid system that was developed to identify interac
205                                     In yeast two-hybrid systems, the N-terminus of NIL-16 interacts w
206 ort the application of an enhanced Dual Bait two-hybrid system to allow detection and manipulation of
207                            We used the yeast two-hybrid system to analyze the role of Alpharetrovirus
208 graphy, coimmunoprecipitation, and the yeast two-hybrid system to demonstrate that the extracellular
209                         We then used a yeast two-hybrid system to detect potential protein-protein in
210                       We have used the yeast two-hybrid system to detect variants of GlnB that intera
211 ttaci, Texas turkey, were also cloned in the two-hybrid system to determine if LcrH-2 and LcrE would
212             In this study, we used the yeast two-hybrid system to determine the multimerization domai
213                              Using the yeast two-hybrid system to determine the target host cell prot
214                   We have modified the yeast two-hybrid system to enable the detection of protein-pro
215 llular signaling, we have modified the yeast two-hybrid system to explore the possibility of NO-depen
216              In this study we used the yeast two-hybrid system to find proteins interacting with scie
217                            Here we present a two-hybrid system to follow the heterodimerization of me
218                              We used a yeast two-hybrid system to identify a putative cotton fiber me
219                Here we have used a bacterial two-hybrid system to identify and quantify the interacti
220                            We used the yeast two-hybrid system to identify binding partners of Lsm11
221                          Here we use a yeast two-hybrid system to identify novel TIR1 mutants with al
222     Here, as a test case, we used a two-bait two-hybrid system to identify peptide aptamers that dist
223                             Use of the yeast two-hybrid system to identify proteins that associate wi
224 P processing and function, we used the yeast two-hybrid system to identify proteins that interact wit
225                            We used the yeast two-hybrid system to identify proteins that interact wit
226 transduction pathway, we have used the yeast two-hybrid system to identify proteins that physically i
227                            We used the yeast two-hybrid system to identify the Prtb (Proline-rich tra
228 tegrated strategy based on the reverse yeast two-hybrid system to isolate and characterize such edge-
229    In this study, we have used the bacterial two-hybrid system to isolate cDNA-encoding proteins that
230          Because of the failure of the yeast two-hybrid system to reveal interactions between luminal
231 rgets of c-Abl kinase, we utilized the yeast two-hybrid system to screen a murine cDNA library.
232      Using the era gene as bait in the yeast two-hybrid system to screen E. coli genomic libraries, w
233               We developed a sensitive yeast two-hybrid system to screen for hERalpha variants with i
234 we used the yeast (Saccharomyces cerevisiae) two-hybrid system to screen for NF-YC1-interacting prote
235 horylation, we modified the Gal4-based yeast two-hybrid system to screen for phosphorylation-dependen
236 CSG1 in breast cancer cells, we used a yeast two-hybrid system to screen for proteins that could asso
237                   We used an optimized yeast two-hybrid system to screen mouse pregnancy-associated l
238                          Here, using a yeast two-hybrid system to search for AtRALF1-interacting prot
239 us, we screened a cDNA library using a yeast two-hybrid system to search for interacting protein(s) a
240 ts also demonstrate the utility of the yeast two-hybrid system to study protein-protein interactions
241                  Here we have used the yeast two-hybrid system to test for direct interaction between
242  we screened a human cDNA library by a yeast two-hybrid system using IGFBP-5 as bait and identified f
243      In the present study, we employed yeast two-hybrid system using the N-terminal domain of AIP1 as
244 microvascular endothelial cells by the yeast two-hybrid system using the N-terminal domain of CNF1 as
245 stallin genes were cloned and fused into the two-hybrid system vectors (target and prey proteins).
246                                    The yeast two hybrid system was used to confirm these interactions
247 le protein interaction analyses, a bacterial two-hybrid system was coupled with a whole genome shotgu
248 le of RGSZ1 in cellular signaling, the yeast two-hybrid system was employed to identify potential eff
249 functional genetic screen based on the yeast two-hybrid system was performed.
250                                  A mammalian two-hybrid system was used to assay the protein-protein
251                                        Yeast two-hybrid system was used to demonstrate that a homodim
252  expression in single yeast cells carrying a two-hybrid system was used to detect in vivo protein-pro
253                         In addition, a yeast two-hybrid system was used to detect the interactions of
254                                    The yeast two-hybrid system was used to identify a groucho homolog
255 t-ubiquitin yeast (Saccharomyces cerevisiae) two-hybrid system was used to identify B-cell-associated
256                                    The yeast two-hybrid system was used to isolate the ATP binding pr
257                                    The yeast two-hybrid system was used to search for proteins that b
258                                 A LexA-based two-hybrid system was utilized to define interaction dom
259 s interaction, first observed with the yeast two-hybrid system, was corroborated by co-immunoprecipit
260                              Using the yeast-two hybrid system we isolated a novel Numb interactor in
261                              Using a reverse two-hybrid system we previously identified mutations in
262               Furthermore, using a mammalian two-hybrid system, we confirmed that ARA55 interacts wit
263                              Using the yeast two-hybrid system, we found that HAP1 also interacts wit
264                                    Using the two-hybrid system, we found that the extreme C-terminal
265 fragments in the bacterial adenylate cyclase two-hybrid system, we found that transketolase A (TktA)
266                              Using the yeast two-hybrid system, we found that TRIM32 binds and ubiqui
267                              Using the yeast two-hybrid system, we found that VZV IE63 interacts with
268       In the present study employing a yeast two-hybrid system, we found that zyxin, a molecule known
269              In this report, using the yeast two-hybrid system, we have identified a novel interactio
270  1 (Plk1)-interacting proteins using a yeast two-hybrid system, we have identified histone acetyltran
271                              Using the yeast two-hybrid system, we have now identified two sperm-spec
272                              Using the yeast two-hybrid system, we have observed a strong interaction
273                                  Using yeast two-hybrid system, we have previously identified C19ORF5
274    Using a modified yeast substrate trapping two-hybrid system, we identified a cytosolic adaptor pro
275                             By using a yeast two-hybrid system, we identified a gene, invasion inhibi
276                              Using the yeast two-hybrid system, we identified a number of proteins th
277                              Using the yeast two-hybrid system, we identified a transcriptional coact
278                                Using a yeast two-hybrid system, we identified Arabidopsis thaliana VI
279                              Using the yeast two-hybrid system, we identified Hsp90, a chaperone with
280                              Using the yeast two-hybrid system, we identified several second-site sup
281                              Using the yeast two-hybrid system, we identified Sprouty2 as an interact
282                              Using the yeast two-hybrid system, we identified uridine kinase like-1 (
283                              Using the yeast two-hybrid system, we previously isolated a novel protei
284                                 By using the two-hybrid system, we recently identified Pin2/TRF1-inte
285                                Using a yeast two-hybrid system, we screened for galectin-3-interactin
286                       Exploiting the reverse two-hybrid system, we screened for mutated Imp4 proteins
287   Using chemical cross-linking and the yeast two-hybrid system, we show that sortilin interacts with
288                    With the use of the yeast two-hybrid system, we show that this Dnm1p oligomerizati
289     Using a stringent, high-throughput yeast two-hybrid system, we tested pairwise interactions among
290                Using the yeast and mammalian two-hybrid systems, we observed that the CCR5 receptor i
291  changed to alanine could activate the yeast two-hybrid system when paired with RsbW, whereas mutant
292 sociated C terminus (BRCT) domain in a yeast two-hybrid system, while increased sensitivity of BRCT-d
293 , Pipkz1, was shown to interact in the yeast two-hybrid system with a putative bZIP transcription fac
294 r, interleukin-1, and ROS, we used the yeast two-hybrid system with ASK1 as bait to identify ASK1 sub
295 tor-1gamma (EF1gamma) interacts in the yeast two-hybrid system with DOA, the LAMMER protein kinase of
296 olin-1 was determined by the Pro-Quest yeast two-hybrid system with full-length NSP4 and seven overla
297                          Combining the yeast two-hybrid system with genetic analysis, we show here th
298                                    The yeast two-hybrid system with myocilin as the bait and a human
299  identity with yeast Sec3p, interacts in the two-hybrid system with other subunits of the complex (Se
300 s for VHb on the cytochrome, using the yeast two-hybrid system with VHb as the bait and testing every

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