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1 2, K225, and K257 residues independent of an E3 ligase.
2 d OTUD5 as a specific stabilizer of the UBR5 E3 ligase.
3 SlBBX20 is a substrate of the CUL4-DDB1-DET1 E3 ligase.
4 evelopment of covalent inhibitors for an RBR E3 ligase.
5 plant ERAD system contains a plant-specific E3 ligase.
6 tion in melanoma cells by the ITCH ubiquitin E3 ligase.
7 ase due to loss-of-function of the gigaxonin-E3 ligase.
8 ly phospho-inactivates Nedd4-2, an ubiquitin E3 ligase.
9 ication and validation of targets of the GID E3 ligase.
10 (iDAb) fused to the UBOX domain of the CHIP E3 ligase.
11 omain of LGR4 conferred interaction with the E3 ligases.
12 r family is mirrored in the partner RBR-type E3 ligases.
13 acromolecules (macrodrugs) fused to specific E3 ligases.
14 , which is a distinctive feature of RBR-type E3 ligases.
15 itin ligase (WWP2) are HECT family ubiquitin E3 ligases.
16 G finger domains may be a general feature of E3 ligases.
17 tified relative to the ~ 600 predicted human E3 ligases.
18 is known to be tightly controlled by several E3 ligases.
19 (binding positions, scaffold-class) and the E3 ligases.
20 modification with ubiquitin, including ~600 E3 ligases.
22 ligase WWP1 (WW domain-containing ubiquitin E3 ligase 1) suppressed the dimerization, membrane recru
29 horylates UFL1 at serine 462, enhancing UFL1 E3 ligase activity and promoting ATM activation in a pos
30 taICP0 virus or mutants with deficiencies in E3 ligase activity cannot counteract beta interferon (IF
31 er hand, reciprocally inhibits the ubiquitin E3 ligase activity of APC(Cdh1) through direct phosphory
33 nduced kinase 1 (PINK1) activity, and Parkin E3 ligase activity toward CDGSH iron sulfur domain 1 (CI
34 chimeric UHRF1 (finger swap) with diminished E3 ligase activity toward nucleosomal histones, despite
35 -mediated ER protein reflux does not require E3 ligase activity, and proceeds even more vigorously wh
36 emimethylated DNA binding functions, but not E3 ligase activity, maintain cancer-specific DNA methyla
37 ysis of MDM2, one of the targets of the RLIM E3 ligase activity, showed consistent downregulation in
38 insight into allosteric regulation of UHRF1 E3 ligase activity, suggesting that UHRF1's SRA finger l
44 2) and its principal negative regulator, the E3 ligase adaptor Kelch-like ECH-associated protein 1 (K
46 arbon source-dependent regulation of the GID E3 ligase, an important regulator of cellular metabolism
47 in a reciprocal circuit with the cell cycle E3 ligase anaphase-promoting complex/cyclosome (APC/C),
52 clear E2 enzyme that interacts with the RFA4 E3 ligase and forms UBC26-RFA4-receptor complexes in nuc
53 ons as a substrate adaptor of cullin 3-based E3 ligase and has a crucial role in various cellular pro
55 Employing ligands for cereblon/cullin 4A E3 ligase and SI-109, we obtained a series of potent PRO
57 ylation and phosphorylation of the viral cis-E3 ligase and transactivator protein IE2 work in tandem
59 screened an RNAi library targeting ubiquitin E3 ligases and observed that knockdown of the E3 ligase
60 s to redirect the ubiquitination activity of E3 ligases and potently degrade a target protein within
63 ulator of proteostasis in many cells, having E3-ligase and chaperone functions and often directing da
64 beta alters the phosphorylation of TRIM2 (an E3 ligase) and optineurin (an autophagy receptor), which
66 transfer from the destruction complex to the E3 ligase, and test models suggesting Dishevelled and AP
67 of a ubiquitin to the chain is catalyzed by E3 ligases, and removal of ubiquitin is catalyzed by a D
68 of the relatively unexplored plant RBR-type E3 ligases, and through mutagenesis and biochemical assa
71 observations show the unexpected role of an E3 ligase as a co-receptor that directly participates in
73 brane protein, and MGRN1, a RING superfamily E3 ligase, assemble to form a receptor-like ubiquitin li
75 athogen Magnaporthe oryzae and the RING-type E3 ligase AVRPIZ-T INTERACTING PROTEIN 10 (APIP10) negat
79 lve a putative sterol-sensing domain in this E3 ligase, but was abolished when either membrane extrac
80 ous ubiquitination by several F-box-specific E3 ligases, but its degradation is prevented in cancer c
81 specific recruitment of the Rnf40-containing E3 ligase by Egr2, the central transcriptional regulator
82 that E6AP/UBE3A is distinguished from other E3 ligases by having a 12 nM binding site at the proteas
84 ggers ubiquitination by the Hsp70-associated E3 ligase c-terminus of Hsp70-interacting protein (CHIP)
87 ential generality of the paradigm that MARCH E3 ligases can mediate the antiproliferative response to
88 lation is the ubiquitylation of JAM-C by the E3 ligase Casitas B-lineage lymphoma (CBL), which contro
90 d 3.0 muM), respectively, by introducing the E3 ligase cereblon-binding ligand pomalidomide to Mcl-1/
91 der, MS39 (compound 6), and a first-in-class E3 ligase cereblon-recruiting EGFR degrader, MS154 (comp
92 f and deliver their protein substrate to the E3 ligase complex for ubiquitination and subsequent degr
94 urthermore, CRY1 and CRY2 cooperate with the E3 ligase complex SKP-CULLIN-FBXL3 (SCF(FBXL3)) to reduc
95 exes serve as an example of a cognate kinase-E3 ligase complex that selectively triggers rapid phosph
96 that, in addition to directing the Cul3-RING E3 ligase complex to degrade cellular/viral target prote
97 required for formation of the NPR1-Cullin 3 E3 ligase complex to ubiquitinate SINC-localized substra
98 h encodes Cullin 3 (CUL3), a component of an E3 ligase complex, are thought of as risk factors for AS
99 or cofactor binding and stabilization of the E3 ligase complex, such as the zinc-binding motif and N-
100 tion component of the SCF(FBW7) multiprotein E3 ligase complex, targets both WT and tumor-derived mut
105 availability, due to its role as part of an E3-ligase complex which targets the hypoxia-inducible fa
106 es, we characterized two related Cullin-RING E3 ligase complexes, Cul2(ZYG11B) and Cul2(ZER1), that a
108 small molecules and the expression levels of E3 ligase components across hundreds of human cancer cel
110 These results reveal a new mechanism of E3 ligase control of mTORC1 activity through the RNF186-
111 ism of antiviral restriction in which a TRIM E3 ligase controls viral replication by regulating the s
112 her demonstrate that PIF5 interacts with the E3 ligase COP1, promoting PIF5 stabilisation in light-gr
113 st two-hybrid screen assay and identified an E3 ligase, COP9 INTERACTING F-BOX KELCH 1 (CFK1), as a n
115 karyotic cell biology depends on cullin-RING E3 ligase (CRL)-catalysed protein ubiquitylation(1), whi
119 sed myoblast differentiation to identify the E3 ligase CUL2(FEM1B) and its substrate FNIP1 as core co
120 We have confirmed the involvement of the E3 ligase CUL4A-DDB1 cereblon ubiquitination pathway, ma
122 interest in developing strategies to target E3 ligases, de-ubiquitinases, and/or ubiquitin receptors
123 mals, neddylation is promoted by the five co-E3 ligases, defective in cullin neddylation 1 domain-con
124 ation of mutant but not wild-type EGFR in an E3 ligase-dependent manner in cancer cell lines and effe
125 H19, associates with dystrophin and inhibits E3-ligase-dependent polyubiquitination at Lys 3584 (refe
136 ield mostly focus on choosing an appropriate E3 ligase for the target protein, improving the binding
140 s employ protein ubiquitylation by ubiquitin E3 ligases for functional regulation or protein quality
142 establishment domains are defined, including E3 ligase function, but the maintenance domains are poor
146 Variation in the promoter region of the HECT E3 ligase gene BnaUPL3 C03 made a major contribution to
147 olerance and overexpression of the rice SUMO E3 ligase gene OsSIZ1 improves heat and water deficit st
148 ide evidence that mutations in the ubiquitin E3 ligase gene RNF170, which targets inositol 1,4,5-tris
149 -associated degradation pathway, such as the E3 ligases gp78 and HRD1, which cooperate to catalyze PI
150 demonstrates that KSHV infection induces the E3 ligase HACE1 protein to regulate KSHV-induced oxidati
151 is increasingly recognized but, while a few E3 ligases have been shown to regulate nuclear export, e
152 uired for resistance to tunicamycin, whereas E3 ligase Hel2-mediated ubiquitination of uS10 was not.
155 Previous studies have shown a role for the E3 ligase HUWE1 in modulating c-MYC, an oncogene frequen
156 We report here that RIPLET, an essential E3 ligase in antiviral immunity, promotes the antiviral
158 of SV proteostasis and that Parkin is a key E3 ligase in the autophagy-mediated clearance of SV prot
160 epletion of the N-end rule pathway ubiquitin E3 ligases in NatB mutants did not restore NAD(+) levels
162 und, full-length LGR5 interacting with these E3 ligases in whole cells has not been reported, and onl
163 acrophages from knock-in mice expressing the E3 ligase-inactive HOIL-1[C458S] mutant, we identify IRA
164 nsformation through targeting of promiscuous E3 ligases, including FBW7, a known MMP-9 and Snail regu
165 G protein signaling protein 2 (RGS2) by its E3 ligase, increasing the potential for rational design
167 and could be used to develop optimized ICP0 E3 ligase inhibitors.IMPORTANCE Since acyclovir and its
168 acid receptors and adaptors of Cullin3-based E3 ligase, interact with and mediate the degradation of
172 this study, we found that deficiency of the E3 ligase Itch, which leads to spontaneous colitis and r
174 3 ligases and observed that knockdown of the E3 ligase Kelch-like protein 42 (KLHL42) impairs TGF-bet
175 is the first report of a PROTAC in which the E3 ligase ligand and targeting warhead combine to exert
176 von Hippel-Lindau (VHL) and cereblon (CRBN) E3 ligase ligands and a variety of linkers, which result
177 on with HOIP, the catalytic component of the E3 ligase linear ubiquitin assembly complex (LUBAC).
179 ontrol (RQC), Rqc2/NEMF closely supports the E3 ligase Ltn1/listerin in promoting ubiquitylation and
180 ago truncatula, VAPYRIN (VPY) and a putative E3 ligase LUMPY INFECTIONS (LIN) are required for infect
181 n genome contains an estimated 600 ubiquitin E3 ligases, many of which are single-subunit E3s (ssE3s)
184 rom clinical biopsy tissues, we identify the E3 ligase MDM2 as a key regulator of prostate CSC integr
185 n2 ubiquitination was likely mediated by the E3 ligase MDM2 homolog (MDM2), indicated by an increased
187 ligand classes exemplified by antibodies, an E3 ligase, MDM2 proto-oncogene (MDM2), and protease (Spl
189 Our results suggest that the plant-specific E3 ligase MfSTMIR participates in the ERAD pathway by in
190 we explored the potential of novel cereblon E3 ligase modulators (CELMoDs) for the treatment of pati
191 natively regulated versus well characterised E3 ligases, MuRF1/MAFbx, at the gene expression level du
192 sion profile for UBR5 vs. well characterized E3-ligases, MuRF1/MAFbx, where, after atrophy evoked by
194 DMD, chaperoned by Cdc37/Hsp90, recruits the E3 ligase, NEDD4, to catalyze polyubiquitination of pro-
197 ethodologies that have been used to identify E3 ligases or DUBs to facilitate the search for yet-to-b
198 , we demonstrate that tumor-derived UBR5, an E3 ligase overexpressed in human OC associated with poor
202 Here, we identified a RING domain ubiquitin E3 ligase, PIR1 (PP2CA interacting RING finger protein 1
203 diated degradation, which is mediated by the E3 ligase PJA1 and show that this occurs through binding
204 eptor function, tripartite motif 21 (TRIM21) E3 ligase plays an essential role in the p62-Keap1-Nrf2
205 vious studies have also shown that ubiquitin E3 ligases potently control TGF-beta signaling through t
206 tructural analysis it was proposed that RING E3 ligases prime the E2~ubiquitin conjugate (E2~Ub) for
208 which initial modification by a Cullin-RING E3 ligase promotes its chromatin association and express
211 lation, since the targeted knockdown of PCNA E3-ligase (RAD18) and a non-ubiquitylable (PCNA K164R) k
212 odegron for the SCF (Skp-Cul-Fbox) ubiquitin E3-ligase receptor protein Fbxw7alpha (F-box/WD40 7).
216 quitin E3 ligases, we identified a RING-type E3 ligase, ring finger protein 186 (RNF186), that critic
217 romoting its K63-linked ubiquitination by an E3 ligase RNF146, which blocks LKB1/STRAD/MO25 complex f
219 truct combining the RING domain of ubiquitin E3 ligase RNF4 with a protein-specific camelid nanobody
220 ism: forming RSPO-bridged complexes with the E3 ligases RNF43 and ZNRF3 to inhibit ubiquitylation of
221 its homologs Lgr4/6 and stem-cell-expressed E3 ligases Rnf43/Znrf3, is expressed in nodose-petrosal
226 iation of the kinase module depends upon the E3 ligase, SCF(FBW7) In addition, genetically insulin-re
228 ion of DYRK2 protein by inhibiting ubiquitin E3 ligase SIAH2 with vitamin K3 promoted apoptosis and a
229 rformed a dual-luciferase-based, genome-wide E3 ligase siRNA library screen and identified ASB13 as a
230 -methylation mutants, we identified the SUMO E3 ligase SIZ1 as a critical regulator of active DNA dem
231 cific peptidase 7) opposes the activities of E3 ligases, stabilizes DNA-bound NF-kB, and thereby prom
232 all ubiquitin-like protein SUMO and the SUMO E3 ligase Su(var)2-10 are required for piRNA-guided depo
233 adly to characterize the degronomes of other E3 ligase substrate receptors, including those that adhe
236 by PROTAC has grown steadily, the number of E3 ligases successfully exploited to accomplish this has
237 lates the levels of proteins targeted by SCF-E3 ligases, such as C-MYC, beta-catenin, and steroid rec
238 /tramtrack/bric-a-brac) subunit of ubiquitin E3 ligases, suggesting enhanced regulation of protein dy
239 the approach to rediscover substrates of the E3 ligase targeting drug lenalidomide and to identify pr
240 allosteric, reversible PTP inhibitor with an E3 ligase targeting ligand through a well-designed linke
241 with LT stabilization, decrease in the Skp2 E3 ligase targeting these LT proteins for degradation, a
244 -phase kinase-associated protein 2 (SKP2) as E3 ligase that executes lysine-48-linked poly-ubiquitina
246 Here, we report that HOIL-1 is an atypical E3 ligase that forms oxyester bonds between the C termin
247 una is an evolutionarily conserved ubiquitin E3 ligase that has been identified as a crucial regulato
250 which encodes an ER-membrane-localized RING E3 ligase that is highly conserved in leguminous plants,
251 Our findings establish gigaxonin as a key E3 ligase that positively controls the initiation of Shh
254 eriments, we establish Pib1 as the ubiquitin E3 ligase that regulates Rds2 ubiquitination and stabili
255 y SCF-FBXL17, a dimerization-quality-control E3 ligase that ubiquitylates and helps to degrade inacti
256 Therefore, identifying and recruiting the E3 ligases that are enriched in tumors with minimal expr
258 s developed have utilized ligands to recruit E3 ligases that are ubiquitously expressed in both tumor
260 hitecture and chemical tractability of human E3 ligases that could expand the toolbox for PROTAC disc
261 en RNA helicases and tripartite motif (TRIM) E3 ligases that lead to their functional coordination in
263 n ligase PIRE (PBL13 interacting RING domain E3 ligase) that interacts with both PBL13 and RBOHD.
264 otein (FANCD2) by the multisubunit ubiquitin E3 ligase, the FA core complex, is an obligate step in a
265 reveal that a single substrate can engage an E3 ligase through multiple binding modes, affecting its
266 , interact with their cognate TRIM/TRIM-like E3 ligases through similar epitopes in the helicase doma
268 lysis targeting chimera (PROTAC) recruits an E3 ligase to a target protein to induce its ubiquitinati
269 at UBP12/UBP13 counteracts the effect of NLA E3 ligase to accelerate leaf senescence under nitrogen s
270 -related proteins using the same warhead and E3 ligase to heretofore underappreciated aspects of the
274 ween membrane-embedded cytoplasmic ubiquitin E3 ligases to conjugate heterotypic branched or mixed ub
275 lls make use of hundreds of unique ubiquitin E3 ligases to ensure proteome fidelity and control cellu
276 Heterobifunctional molecules, which recruit E3 ligases to ubiquitinate a target protein of interest,
277 recognizing Akt K64 methylation and recruits E3 ligase TRAF6 and Skp2-SCF to the Akt complex, indepen
280 ependent ubiquitination by the action of the E3 ligases Ubr1 and San1, allowing detailed study of pro
281 lic response, which included upregulation of E3 ligases UBR2 and atrogin1/MAFbx, increased LC3-II, an
287 We previously identified a novel cullin-RING E3 ligase utilizing F-box only protein 44 (FBXO44) as th
289 ally target BCR-ABL1 protein and recruit the E3 ligase Von Hippel-Lindau, resulting in ubiquitination
290 Here, we described the discovery of a novel E3 ligase von Hippel-Lindau-recruiting EGFR degrader, MS
292 to uncovering extended specificities of UBR E3 ligases, we characterized two related Cullin-RING E3
293 oach of an siRNA library targeting ubiquitin E3 ligases, we identified a RING-type E3 ligase, ring fi
294 (SCF) complexes compose the largest group of E3 ligases whose specificity is determined by a diverse
295 Understanding crosstalk and competition for E3 ligases will be key in ultimately developing a global
297 y domain of RNF168, E7 binds directly to the E3 ligase without affecting its enzymatic activity.
299 r copper level leads to the activation of an E3-ligase, XIAP, which potentiates IL-17-induced NFkappa
300 ulti-step molecular process initiated by the E3 ligase ZNF598 through sensing of ribosomes collided a