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zinc and ring finger 3 OKDB#: 4693
 Symbols: ZNRF3 Species: human
 Synonyms: RNF203, BK747E2.3  Locus: 22q12.1 in Homo sapiens
HPMR


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General Comment Crystal structure of R-spondin 2 in complex with the ectodomains of its receptors LGR5 and ZNRF3. Zebisch M et al. (2015) The four secreted R-spondin (Rspo1-4) proteins of vertebrates function as stem cell growth factors and potentiate canonical Wnt signalling. Rspo proteins act by cross-linking members of two cell surface receptor families, complexing the stem cell markers LGR4-6 with the Frizzled-specific E3 ubiquitin ligases ZNRF3/RNF43. The consequent internalisation of the ternary LGR-Rspo-E3 complex removes the E3 ligase activity, which otherwise targets the Wnt receptor Frizzled for degradation, and thus enhances Wnt signalling. Multiple combinations of LGR4-6, Rspo1-4 and ZNRF3/RNF43 are possible, implying the existence of generic interaction determinants, but also of specific differences in complex architecture and activity. We present here a high resolution crystal structure of an ectodomain variant of human LGR5 (hLGR5ecto) complexed with a signalling competent fragment of mouse Rspo2 (mRspo2Fu1-Fu2). The structure shows that the particularly potent Rspo2 ligand engages LGR5 in a fashion almost identical to that reported for hRSPO1. Comparison of our hLGR5ecto structure with previously published structures highlights a surprising plasticity of the LGR ectodomains, characterised by a nearly 9° or larger rotation of the N-terminal half of the horseshoe-like fold relative to the C-terminal half. We also report a low resolution hLGR5-mRspo2Fu1-Fu2-mZNRF3ecto ternary complex structure. This crystal structure confirms our previously suggested hypothesis, showing that Rspo proteins cross-link LGRs and ZNRF3 into a 2:2:2 complex, whereas a 1:1:1 complex is formed with RNF43.////////////////// wnt pathway co receptor binds rspondin and LGR4. ZNRF3 and LGR4 form a receptor complex for R-spondin (Supplementary Fig. 15). In the absence of R-spondin, ZNRF3 ubiquitylates frizzled and promotes the degrada- tion of frizzled and LRP6, leading to attenuated canonical and non- canonical Wnt signalling. When R-spondin is present, it induces the interaction between ZNRF3 and LGR4, leading to the membrane clearance of ZNRF3. This results in accumulation of frizzled and LRP6 on the plasma membrane and enhances canonical and non- canonical Wnt signalling. ZNRF3 is a unique transmembrane ubiqui- tin E3 ligase, the activity of which is directly regulated by ligand binding.

General function Receptor
Comment
Cellular localization Plasma membrane
Comment
Ovarian function
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Expression regulated by
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Ovarian localization
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Follicle stages
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Phenotypes
Mutations 1 mutations

Species: human
Mutation name:
type: naturally occurring
fertility: None
Comment: ZNRF3 functions in mammalian sex determination by inhibiting canonical WNT signaling. Harris A et al. (2018) Mammalian sex determination is controlled by the antagonistic interactions of two genetic pathways: The SRY-SOX9-FGF9 network promotes testis determination partly by opposing proovarian pathways, while RSPO1/WNT-β-catenin/FOXL2 signals control ovary development by inhibiting SRY-SOX9-FGF9. The molecular basis of this mutual antagonism is unclear. Here we show that ZNRF3, a WNT signaling antagonist and direct target of RSPO1-mediated inhibition, is required for sex determination in mice. XY mice lacking ZNRF3 exhibit complete or partial gonadal sex reversal, or related defects. These abnormalities are associated with ectopic WNT/β-catenin activity and reduced Sox9 expression during fetal sex determination. Using exome sequencing of individuals with 46,XY disorders of sex development, we identified three human ZNRF3 variants in very rare cases of XY female presentation. We tested two missense variants and show that these disrupt ZNRF3 activity in both human cell lines and zebrafish embryo assays. Our data identify a testis-determining function for ZNRF3 and indicate a mechanism of direct molecular interaction between two mutually antagonistic organogenetic pathways.//////////////////

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created: May 28, 2012, 2:27 p.m. by: Hsueh   email:
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last update: May 9, 2018, 9:56 a.m. by: hsueh    email:



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