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1 l interaction of full-length PsIAA4 in vivo (yeast two-hybrid system).
2 -transcription factor interactions using the yeast two-hybrid system.
3 PNGase (mPNGase) were detected by using the yeast two-hybrid system.
4 vitro in affinity chromatography and in the yeast two-hybrid system.
5 followed by phenotypic screening based on a yeast two-hybrid system.
6 p6, a human cDNA library was screened in the yeast two-hybrid system.
7 gion of AbetaPP have been isolated using the yeast two-hybrid system.
8 e amino-terminal end of P. yoelii MSP-1 in a yeast two-hybrid system.
9 vestigated the interaction directly with the yeast two-hybrid system.
10 proteins that interacted with p35 using the yeast two-hybrid system.
11 ct with each other and self-associate in the yeast two-hybrid system.
12 f the IFT complex was investigated using the yeast two-hybrid system.
13 ns of VacA (termed p-33 and p-55) by using a yeast two-hybrid system.
14 1p as trap were active when tested using the yeast two-hybrid system.
15 apacity to mediate heterodimerization in the yeast two-hybrid system.
16 a cDNA library via a variant of the original yeast two-hybrid system.
17 ize the 4OHT-bound ERalpha conformation in a yeast two-hybrid system.
18 mbrane protein was investigated by using the yeast two-hybrid system.
19 pping of protein-protein interactions is the yeast two-hybrid system.
20 tation, as well as genetic tools such as the yeast two-hybrid system.
21 azE and MazF was also characterized with the yeast two-hybrid system.
22 with actin was originally characterized by a yeast two-hybrid system.
23 important protein interactions has been the yeast two-hybrid system.
24 nable to interact with wild-type p-55 in the yeast two-hybrid system.
25 ssayed and found to interact strongly in the yeast two-hybrid system.
26 NifL interacted with GlnK and GlnKY51F in a yeast two-hybrid system.
27 terminal regulatory region of p100 using the yeast two-hybrid system.
28 sigma(28) was demonstrated by utilizing the yeast two-hybrid system.
29 s factor receptor family, as the bait in the yeast two-hybrid system.
30 t with SKR-1, -2, -3, -7, -8, and -10 in the yeast two-hybrid system.
31 lpha-, beta-, gamma-, and delta-zeins in the yeast two-hybrid system.
32 cell complementary DNA library by using the yeast two-hybrid system.
33 s of mouse Rpgr(ORF15) was used as bait in a yeast two-hybrid system.
34 n p29 and p67(phox) was demonstrated using a yeast two-hybrid system.
35 cDNA expression library was screened using a yeast two-hybrid system.
36 e direct interaction of FleN and FleQ in the yeast two-hybrid system.
37 is interaction was initially found using the yeast two-hybrid system.
38 ed significant dimer formation, by using the yeast two-hybrid system.
39 with the Cdh1 substrate-binding protein in a yeast two-hybrid system.
40 MYOC-MYOC interactions were studied with a yeast two-hybrid system.
41 protein-protein interaction assays using the yeast two-hybrid system.
42 ibrary for interacting proteins by using the yeast two-hybrid system.
43 necessary for interaction with Src using the yeast two-hybrid system.
44 are confirmed by similar interactions in the yeast two-hybrid system.
45 ts were used to assay for interaction in the yeast two-hybrid system.
46 16 interacts with AtbZIP68 and AtGBF1 in the yeast two-hybrid system.
47 protein, UBL1, associates with RAD51 in the yeast two-hybrid system.
48 techniques such as mass spectrometry or the yeast two-hybrid system.
49 boxyl terminus (beta(1)AR-CT) as bait in the yeast two-hybrid system.
50 thermore, LIN-56 and LIN-15A interact in the yeast two-hybrid system.
51 cific binding domains within MUC5B using the yeast two-hybrid system.
52 expression library and screened it using the yeast two-hybrid system.
53 protein, WTAP, which was isolated using the yeast two-hybrid system.
54 of associating with the core protein using a yeast two-hybrid system.
55 it eliminated MucA-MucB interactions in the yeast two-hybrid system.
56 Munc18-1 was also identified using the yeast two-hybrid system.
57 he interaction between these subunits in the yeast two-hybrid system.
58 ntify novel interactors of Smads by use of a yeast two-hybrid system.
59 coding 12-LOX interacting proteins using the yeast two-hybrid system.
60 efective for multimerization using a reverse yeast two-hybrid system.
61 ins using a highly specific, high-throughput yeast two-hybrid system.
62 binding site, CudA forms a homodimer in the yeast two-hybrid system.
63 eracts directly with the FANCD2 protein in a yeast two-hybrid system.
64 y developed a cost-effective high-throughput yeast two-hybrid system.
65 red for Msi1p to associate with Cac1p in the yeast two-hybrid system.
66 ssessed by using a stringent high-throughput yeast two-hybrid system.
67 d to the Z ring or interact with FtsZ in the yeast two-hybrid system.
68 alpha(2)-Heremans-Schmid glycoprotein in the yeast two-hybrid system.
69 domain in a membrane-bound, split-ubiquitin yeast two-hybrid system.
70 Ctr9 as a novel DAT binding partner using a yeast two-hybrid system.
71 the 22-kDa alpha-zein when expressed in the yeast two-hybrid system.
72 brane anchor in MinD interactions, using the yeast two-hybrid system.
73 ding Drosophila PP1c-binding proteins in the yeast two-hybrid system.
74 E(77-114), in the N terminus of BfpE using a yeast two-hybrid system.
75 transcriptional activation and expression in yeast two-hybrid systems.
77 in-protein interaction assays done using the yeast two-hybrid system, 56 (approximately 17%) showed p
79 he present study we have isolated, using the yeast two-hybrid system, a 182 amino acid residue fragme
80 screen a human liver cDNA library using the yeast two-hybrid system, a cDNA for cytohesin-1, a appro
82 HPS1 and HPS4 do not interact directly in a yeast two-hybrid system, although HPS4 interacts with it
84 lished interactions naively tested using the yeast two-hybrid system and 2.7 times better than for ra
85 associated polypeptides using the Gal4-based yeast two-hybrid system and a cDNA library derived from
89 een revealed by the RNAi assays, we used the yeast two-hybrid system and an in vitro glutathione-S-tr
91 ms of the importin alpha protein family in a yeast two-hybrid system and by an in planta bimolecular
92 5Delta32, both by genetic criteria using the yeast two-hybrid system and by biochemical criteria usin
93 interaction was confirmed in a conventional yeast two-hybrid system and by direct interaction betwee
97 nteraction between Rad52 and Rad59 using the yeast two-hybrid system and co-immunoprecipitation from
100 teraction was initially demonstrated using a yeast two-hybrid system and corroborated by both in vivo
102 ns on nibrin and Mre11 were mapped using the yeast two-hybrid system and expression of epitope-tagged
103 we screened a prostate cDNA library using a yeast two-hybrid system and found that the cleavage and
104 K1 as a binding partner for UNC5H1 using the yeast two-hybrid system and found that the extreme three
105 etween decorin and EGFR was confirmed in the yeast two-hybrid system and further validated by experim
108 with the cytoplasmic tail of megalin in the yeast two-hybrid system and glutathione-S-transferase pu
110 to the cytoplasmic domain of ADAM12 using a yeast two-hybrid system and identified a protein called
111 with Nck via the intermediate domain in the yeast two-hybrid system and in a glutathione S-transfera
112 eIF4H interacts physically with eIF4A in the yeast two-hybrid system and in GST pull-down assays and
114 ved C-terminal motif in Hook proteins in the yeast two-hybrid system and in tissue culture cells, and
115 ptide also interacts with OASTL based on the yeast two-hybrid system and in vitro binding assays.
116 KorB and IncC interact in vivo by using the yeast two-hybrid system and in vitro by using partially
119 nitially developed interaction assays (e.g., yeast two-hybrid system and split-ubiquitin assay) usual
120 hways of maspin, we employed a maspin-baited yeast two-hybrid system and subsequently identified Inte
121 d proteins that interacted with INSM1 by the yeast two-hybrid system and the binding of one of them,
123 beta-galactosidase quantitative assay in the yeast two-hybrid system and were confirmed by an in vitr
126 ain, Ckigamma2, -gamma3, and -epsilon in the yeast two-hybrid system, and bound Ckidelta and -epsilon
127 , perfluoro-octanoate-PAGE, a membrane-based yeast two-hybrid system, and chemical cross-linking expe
128 the decapping complex VARICOSE (VCS) in the yeast two-hybrid system, and co-localizes with component
130 th the plant SnRK AKIN11 both in vivo in the yeast two-hybrid system, and in vitro in a GST-fusion 'p
131 s with the spliceosome protein U1-70K in the yeast two-hybrid system, and is co-localized with U1-70K
132 y lipoprotein complexes, was identified by a yeast two-hybrid system as a strong and specific binding
133 e 3 (PDCL3, also known as PhLP2A), through a yeast two-hybrid system, as a novel protein involved in
136 etween IDH1 and IDH2 were detected using the yeast two-hybrid system, but interactions between identi
137 ally impaired and unregulated CDPKs with the yeast two-hybrid system can accelerate the discovery of
139 9 was studied using affinity chromatography, yeast two-hybrid system, coimmunoprecipitation, and gel
140 CDC-42 physically interacts with PAR-6 in a yeast two-hybrid system, consistent with data on the int
141 finity purification-mass spectrometry or the yeast two-hybrid system, contributes a unique and releva
144 hermore, extensive assays utilizing the Gal4 yeast two-hybrid system demonstrate interactions of syne
148 nst a library carrying M. xanthus DNA in the yeast two-hybrid system, eight positive, independent clo
149 breast epithelial cell cDNA library using a yeast two-hybrid system for ARHI-interacting proteins.
150 DNA library with a specific antibody and the yeast two-hybrid system for protein interaction using as
151 Since its original description in 1989, the yeast two-hybrid system has been extensively used to ide
154 lular domains of each immune receptor in the yeast two-hybrid system in a kinase activity-dependent m
155 les of human DNA ligase IV, we have used the yeast two-hybrid system in conjunction with traditional
157 ts, with the cytoplasmic portion of Ob-Rb in yeast two-hybrid systems, in protein precipitation exper
161 the HEC proteins can dimerize with SPT in a yeast two-hybrid system, indicating that the HEC genes w
162 gp41 CD failed to interact with PRA1 in the yeast two-hybrid system, its interaction with PRA1 was s
163 ffinity-capture complex purification and the yeast two-hybrid system, may produce inaccurate data set
165 o experiments using either a split ubiquitin yeast two-hybrid system or bimolecular fluorescence comp
168 (1) Using the C-terminus of LPP as bait in a yeast two hybrid system, palladin, an actin-associated p
173 it to screen a human heart cDNA library in a yeast two-hybrid system, retrieving two unique clones th
177 ble activation partners for SAF-1, we used a yeast two-hybrid system that detected interaction betwee
179 However, MA showed binding to TSG101 in the yeast two-hybrid system that was dependent on an intact
181 ted in a physical interaction, we employed a yeast-two-hybrid system that revealed a dimerization bet
183 cellular C terminus of the human CaR and the yeast two hybrid system to screen a human kidney cDNA li
185 romatography, coimmunoprecipitation, and the yeast two-hybrid system to demonstrate that the extracel
193 of cellular signaling, we have modified the yeast two-hybrid system to explore the possibility of NO
194 which was used in this report as bait in the yeast two-hybrid system to find other interacting cell t
198 m of AR-regulated transcription, we used the yeast two-hybrid system to identify AR-associated protei
200 clues about the function of APP, we used the yeast two-hybrid system to identify interaction between
202 regulation of PKCtheta, we have employed the yeast two-hybrid system to identify PKCtheta-interacting
204 beta PP processing and function, we used the yeast two-hybrid system to identify proteins that intera
208 ignal transduction pathway, we have used the yeast two-hybrid system to identify proteins that physic
209 d random mutagenesis in combination with the yeast two-hybrid system to identify residues in the YopH
211 an integrated strategy based on the reverse yeast two-hybrid system to isolate and characterize such
215 ial targets of c-Abl kinase, we utilized the yeast two-hybrid system to screen a murine cDNA library.
218 phosphorylation, we modified the Gal4-based yeast two-hybrid system to screen for phosphorylation-de
219 s of BCSG1 in breast cancer cells, we used a yeast two-hybrid system to screen for proteins that coul
220 or cell invasion and metastasis, we used the yeast two-hybrid system to screen for proteins that inte
223 Thus, we screened a cDNA library using a yeast two-hybrid system to search for interacting protei
224 results also demonstrate the utility of the yeast two-hybrid system to study protein-protein interac
226 FBP-5, we screened a human cDNA library by a yeast two-hybrid system using IGFBP-5 as bait and identi
228 brain microvascular endothelial cells by the yeast two-hybrid system using the N-terminal domain of C
229 ing with Rb in muscle cells, we utilized the yeast two-hybrid system, using the A-B and C pockets of
230 interaction was identified by screening of a yeast two-hybrid system vascular endothelial cell librar
232 ential nucleator of enamel crystallites, the yeast two-hybrid system was applied to a mouse tooth exp
233 the role of RGSZ1 in cellular signaling, the yeast two-hybrid system was employed to identify potenti
240 ce the temporal control of NCKX4 activity, a yeast two-hybrid system was used to search for protein i
242 biguous interaction, first observed with the yeast two-hybrid system, was corroborated by co-immunopr
248 entifying Jak2-interacting proteins with the yeast two-hybrid system, we cloned the human homologue o
249 ys, radioligand binding experiments, and the yeast two-hybrid system, we demonstrate that FGF7 binds
259 kinase 1 (Plk1)-interacting proteins using a yeast two-hybrid system, we have identified histone acet
270 may underlie the disease phenotype.Using the yeast two-hybrid system, we identified ETO/MTG8, a compo
288 ne was changed to alanine could activate the yeast two-hybrid system when paired with RsbW, whereas m
289 s with the Aspergillus NUDE coiled-coil in a yeast two-hybrid system, while human LIS1 interacts with
290 cer-associated C terminus (BRCT) domain in a yeast two-hybrid system, while increased sensitivity of
292 enesis, Pipkz1, was shown to interact in the yeast two-hybrid system with a putative bZIP transcripti
293 factor, interleukin-1, and ROS, we used the yeast two-hybrid system with ASK1 as bait to identify AS
294 on factor-1gamma (EF1gamma) interacts in the yeast two-hybrid system with DOA, the LAMMER protein kin
295 d caveolin-1 was determined by the Pro-Quest yeast two-hybrid system with full-length NSP4 and seven
299 co-regulatory proteins in RKO cells using a yeast two-hybrid system with the intact TRbeta1 as bait.
300 g sites for VHb on the cytochrome, using the yeast two-hybrid system with VHb as the bait and testing