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2 tes many cellular proteins, in the case of a heterotrimeric aminoacyl-tRNA synthetase complex, the ag
4 iverse array of processes and is part of the heterotrimeric Bag6 complex, which also includes ubiquit
5 H, and the RING-finger protein MAT1 form the heterotrimeric CDK-activating kinase (CAK) complex which
6 he evolutionarily conserved Sec61 complex, a heterotrimeric channel that comprises the Sec61p/Sec61al
10 microscopy structure of the ATPgammaS-bound, heterotrimeric cohesin ATPase head module and the 2.1- a
12 inase (AMPK) is an obligatory alphabetagamma heterotrimeric complex carrying a carbohydrate-binding m
13 protein phosphatase 2A (PP2A) functions as a heterotrimeric complex composed of a catalytic (C), scaf
17 n support of such functions, C9orf72 forms a heterotrimeric complex with SMCR8 and WDR41 that is recr
21 t emerged that apo GRX3 and apo BOLA2 form a heterotrimeric complex, composed by two BOLA2 molecules
27 and (according to this paradigm) operate as heterotrimeric complexes of catalytic-alpha and regulato
29 SMAD3 transcription factors, which then form heterotrimeric complexes with SMAD4 and cooperate with c
30 ed ability of the G-protein subunits to form heterotrimeric complexes, including betagamma-dimers pre
31 elucidate the thermodynamic properties of a heterotrimeric DNA complex that portrays the structure o
33 as the Werner syndrome protein (WRN) and the heterotrimeric eukaryotic ss-DNA binding protein RPA.
34 in EIF2S3, encoding the gamma subunit of the heterotrimeric eukaryotic translation initiation factor
36 Addition of the KAP subunit to generate the heterotrimeric FLA8/10/KAP relieved this inhibition, thu
37 te directly with CMG, including Ctf4 and the heterotrimeric fork protection complex (Csm3/Tof1 and Mr
41 be driven by an unconventional mechanism of heterotrimeric G protein activation that operates in lie
43 leotide exchange Factor (GEF) that activates heterotrimeric G protein alpha subunits (Galpha) and ser
44 ty and is a chaperone for several classes of heterotrimeric G protein alpha subunits in vertebrates.
45 ne nucleotide exchange (GEF) activity toward heterotrimeric G protein alpha subunits of the i, q, and
48 ist activation, as assessed by activation of heterotrimeric G protein and allosteric coupling between
52 GDD and provide insights how perturbation in heterotrimeric G protein function contributes to the dis
53 utic agent exerts its effects via perturbing heterotrimeric G protein function, despite a plethora of
59 e B lymphocyte surface receptors, triggering heterotrimeric G protein Galphai subunit guanine nucleot
62 ivative, was validated using cell-free aGPCR/heterotrimeric G protein guanosine 5'-3-O-(thio)triphosp
63 f the C terminus of the alpha subunit of the heterotrimeric G protein in G protein-coupled receptor (
67 ne nucleotide exchange factor that activates heterotrimeric G protein signaling downstream of RTKs an
68 intermediate molecule(s) that could activate heterotrimeric G protein signaling in a calcium-dependen
69 integrin activation in platelets is through heterotrimeric G protein signaling regulating hemostasis
70 ng (RGS) domain proteins generally attenuate heterotrimeric G protein signaling, thereby fine-tune th
71 g., analgesia) are predominantly mediated by heterotrimeric G protein signaling, whereas beta-arresti
73 Galpha12/13 but not representatives of other heterotrimeric G protein subfamilies, such as Galphai1,
74 cible sequestration system to inactivate the heterotrimeric G protein subunit Gbeta and find that thi
75 these interactors, we further establish the heterotrimeric G protein subunit Gnb5 as a PSD-95 comple
76 C-beta (PLC-beta) isoforms are stimulated by heterotrimeric G protein subunits and members of the Rho
77 of the AC NT for mechanisms of regulation by heterotrimeric G protein subunits is isoform-specific.
79 mma as a critical signaling component of the heterotrimeric G protein, along with the nature of presy
80 he pathway comprises a pheromone receptor, a heterotrimeric G protein, and intracellular effectors of
81 eceptors may couple to more than one type of heterotrimeric G protein, each of which consists of a Ga
82 o examine the role of Galpha13, a G12 family heterotrimeric G protein, in regulating cellular invasio
83 dissociation of the Galpha subunit from the heterotrimeric G protein, leading to downstream signalin
85 ere the very first genes for agonist-binding heterotrimeric G protein-coupled receptors (GPCRs) to be
87 Thus, our results identify a putative Wnt/heterotrimeric G protein/PI3K pathway for PCP regulation
88 ies in plant immunity provide a link between heterotrimeric G proteins and an MAPK cascade via the RA
92 ich agonist stimulation leads to coupling of heterotrimeric G proteins and generation of second messe
94 These signaling pathways are modulated by heterotrimeric G proteins and the scaffold proteins beta
95 iple waves of signaling that are mediated by heterotrimeric G proteins and the scaffolding proteins b
97 how SMO is stimulated to form a complex with heterotrimeric G proteins and whether G-protein coupling
114 hes, we unravel a mechanism of activation of heterotrimeric G proteins by RTKs and chart the key step
117 ivates several signaling pathways, including heterotrimeric G proteins Gq and G12, as well as the ext
119 ed Receptors (aGPCRs) functionally couple to heterotrimeric G proteins has been emerging in increment
121 Accordingly, XLGs expand the repertoire of heterotrimeric G proteins in plants and reveal a higher
122 receptors (GPCRs), in addition to activating heterotrimeric G proteins in the plasma membrane, appear
124 G-protein-coupled receptors, the activity of heterotrimeric G proteins is modulated by many cytoplasm
129 f GPCR signaling that dampen the activity of heterotrimeric G proteins through their GTPase-accelerat
130 tein Signaling (RGS) promote deactivation of heterotrimeric G proteins thus controlling the magnitude
131 ceptors in the brain, and it signals through heterotrimeric G proteins to activate a variety of effec
132 s signals from the Galpha(q/11) subfamily of heterotrimeric G proteins to the small guanosine triphos
134 investigated the inactive-state assembly of heterotrimeric G proteins with FZD4, a receptor importan
137 , (ii) binding of the Gbetagamma subunits of heterotrimeric G proteins, and (iii) phosphorylation of
138 ghly homologous alpha subunits of Galphaq/11 heterotrimeric G proteins, and in PLCB4 (phospholipase C
139 1 matrix metalloprotease (MMP14, MT1-MMP) by heterotrimeric G proteins, and in turn, the generation o
141 Arrestin recruitment uncouples GPCRs from heterotrimeric G proteins, and targets the proteins for
142 cells by catalyzing nucleotide release from heterotrimeric G proteins, but the mechanism underlying
144 ins, which form the alpha subunit of certain heterotrimeric G proteins, drive uveal melanoma oncogene
145 sages to signaling events by coupling to the heterotrimeric G proteins, Galpha*betagamma Classic phar
146 agonist-promoted interactions of GPCRs with heterotrimeric G proteins, GPCR kinases (GRKs), and arre
147 (GNB1) gene, encoding the Gbeta1 subunit of heterotrimeric G proteins, have recently been identified
149 dy, we report that GPR139 activates multiple heterotrimeric G proteins, including members of the G(q/
150 is transient (<10 minutes) and initiated by heterotrimeric G proteins, is followed by a second wave
152 of a similar domain in the Galpha subunit of heterotrimeric G proteins, supporting a potential role f
153 y which receptor tyrosine kinases (RTKs) and heterotrimeric G proteins, two major signaling hubs in e
154 PKA and upstream of the Galphai component of heterotrimeric G proteins, which itself localizes to cil
169 1 in complex with the agonist JMV449 and the heterotrimeric G(i1) protein, at a resolution of 3 angst
172 PR52 signalling occurs primarily through the heterotrimeric G(s) protein(2), but it is unclear how GP
175 T based sensor for detecting activation of a heterotrimeric G-protein by G-protein coupled receptors.
176 1 Gbeta and 3 Ggamma proteins represent the heterotrimeric G-protein complex in Arabidopsis, and a s
178 B2 encodes the beta2 subunit (Gbeta2) of the heterotrimeric G-protein complex that is being released
181 ng the Galpha, Gbeta, and Ggamma subunits of heterotrimeric G-protein complexes, which function upstr
182 e therefore diagnoses in the group of mosaic heterotrimeric G-protein disorders, joining McCune-Albri
184 he histamine receptor subtypes for different heterotrimeric G-protein families with single-cell resol
185 -Ras and the inhibitory alpha-subunit of the heterotrimeric G-protein Galphai showed expected functio
186 t chemoattractants rely on activation of the heterotrimeric G-protein Galphai to regulate directional
187 opic glutamate receptor mGluR6 activates the heterotrimeric G-protein Galphaobeta3gamma13, and this l
188 nd by targeted confirmation of a role of the heterotrimeric G-protein gamma subunit, AGG3, in cold to
189 ortholog [APPL (APP-Like)] directly bind the heterotrimeric G-protein Goalpha, supporting the model t
190 y physiological process is the activation of heterotrimeric G-protein Gs by beta(1)-ARs, leading to i
193 s) recruit beta-arrestin, which desensitizes heterotrimeric G-protein signalling and promotes recepto
194 PAR1 is promiscuous and couples to multiple heterotrimeric G-protein subtypes in the same cell and p
195 d receptor called V2R, which signals through heterotrimeric G-protein subunit G(s) alpha, adenylyl cy
197 es, Ras, Rab, and the G(alphai) subunit of a heterotrimeric G-protein, both in the presence and in th
198 gand histamine by activating three canonical heterotrimeric G-protein-mediated signaling pathways wit
201 GPCRs) relay extracellular signals mainly to heterotrimeric G-proteins (Galphabetagamma) and they are
204 r that couples to the Galpha(i) subfamily of heterotrimeric G-proteins and beta-arrestins (betaarrs)
208 lpha subunits of any of the four families of heterotrimeric G-proteins are putative cancer drivers.
211 calcium concentration ([Ca(2+) ](cyt) ) and heterotrimeric G-proteins are universal eukaryotic signa
215 we report the functional characterization of heterotrimeric G-proteins from a nonvascular plant, the
217 s (Rac1, RhoA/B/C, and Cdc42) as well as for heterotrimeric G-proteins in a series of live-cell imagi
219 te biosensors with specificity for different heterotrimeric G-proteins or for other G-proteins, such
220 s to a group of unconventional activators of heterotrimeric G-proteins that are cytoplasmic factors r
228 ucing signals from the microenvironment, and heterotrimeric Galpha signaling links these receptors to
230 AQ and GNA11, which encode alpha subunits of heterotrimeric Galpha(q/11) proteins, occur in about 85%
233 receptor, in complex with peptide ligand and heterotrimeric Galphasbetagamma protein determined by Vo
234 Here, we report that the sole Arabidopsis heterotrimeric Gbeta subunit, AGB1, is required for four
235 activity are regulated via interactions with heterotrimeric Gbetagamma subunits, PIP(3), and protein
238 show that activation of receptors coupled to heterotrimeric Gi/o proteins inhibits TRPM3 channels.
239 sine monophosphate stimulation, highlights a heterotrimeric GTP-binding protein (G protein)-independe
240 he transmembrane region, couple to different heterotrimeric GTP-binding proteins (G proteins) to tran
244 translation initiation factor 2 (eIF2) is a heterotrimeric GTPase, which plays a critical role in pr
247 its, binds to MOR, and inhibits signaling to heterotrimeric guanine nucleotide-binding proteins (G pr
249 B/R2, B'/R5, and B"/R3), which form the PP2A heterotrimeric holoenzyme by associating with a dimer co
250 which are transcribed and replicated by the heterotrimeric IAV RNA-dependent RNA-polymerase (RdRp).
251 channels (ASICs) form both homotrimeric and heterotrimeric ion channels that are activated by extrac
253 7, osmotic avoidance abnormal-3 (OSM-3)] and heterotrimeric (KIF3) kinesin-2 motors are required to e
257 ecular determinants mediating trafficking of heterotrimeric kinesin-2 itself are poorly understood.
261 strate unexpected new roles for both ciliary heterotrimeric kinesins and IFT particle genes and clari
262 f bacteria is mediated by a highly conserved heterotrimeric membrane protein complex denoted Sec61 in
263 to a protein-conducting channel formed by a heterotrimeric membrane protein complex, the prokaryotic
266 t and activation of Tel1(ATM) depends on the heterotrimeric MRX(MRN) complex, composed of Mre11, Rad5
268 d on studies of two prototypical models, the heterotrimeric pili in Corynebacterium diphtheriae and t
270 ells by allosterically assembling a specific heterotrimeric PP2A holoenzyme consisting of PPP2R1A (sc
271 contributing to the formation of an unusual heterotrimeric PPC decarboxylase (PPCDC) complex crucial
273 mma of eukaryotes is a universally conserved heterotrimeric protein channel complex that accommodates
274 s in many organisms secrete laminin, a large heterotrimeric protein consisting of an alpha, beta, and
277 LE: AMPK (AMP-activated protein kinase) is a heterotrimeric protein that plays an important role in e
280 s through its recruitment to a high-affinity heterotrimeric receptor complex (IL-2Ralpha/IL-2Rbeta/ga
284 t is transcribed and replicated by the viral heterotrimeric RNA polymerase (FluPol) in the context of
292 cation protein A (RPA) is a highly conserved heterotrimeric single-stranded DNA-binding protein invol
293 nal ensemble of the alpha subunit Galphas of heterotrimeric stimulatory protein Gs exhibits structura
294 heds light on the process whereby an ancient heterotrimeric TF mainly controlling cell division in an
296 ere we show that it is possible to form pure heterotrimeric three-stranded coiled coils by combining