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Thalidomide promotes degradation of SALL4, a transcription factor implicated in Duane Radial Ray syndrome

机译:沙利度胺可促进SALL4的降解,SALL4是与Duane Radial Ray综合征有关的转录因子

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摘要

In historical attempts to treat morning sickness, use of the drug thalidomide led to the birth of thousands of children with severe birth defects. Despite their teratogenicity, thalidomide and related IMiD drugs are now a mainstay of cancer treatment; however, the molecular basis underlying the pleiotropic biology and characteristic birth defects remains unknown. Here we show that IMiDs disrupt a broad transcriptional network through induced degradation of several C2H2 zinc finger transcription factors, including SALL4, a member of the spalt-like family of developmental transcription factors. Strikingly, heterozygous loss of function mutations in SALL4 result in a human developmental condition that phenocopies thalidomide-induced birth defects such as absence of thumbs, phocomelia, defects in ear and eye development, and congenital heart disease. We find that thalidomide induces degradation of SALL4 exclusively in humans, primates, and rabbits, but not in rodents or fish, providing a mechanistic link for the species-specific pathogenesis of thalidomide syndrome.
机译:在治疗晨吐的历史性尝试中,使用沙利度胺使数千名患有严重先天性缺陷的儿童出生。尽管具有致畸性,沙利度胺和相关的IMiD药物现在仍是癌症治疗的主要手段。然而,多效性生物学和特征性先天缺陷的分子基础仍然未知。在这里,我们显示IMiDs通过诱导几个C2H2锌指转录因子(包括SALL4)的降解来破坏广泛的转录网络,SALL4是类SPALT家族的发育转录因子之一。令人惊讶的是,SALL4中功能突变的杂合丧失导致人类发育状况,这种现象表型化了沙利度胺诱导的先天缺陷,例如拇指,腓肠肌,耳朵和眼睛发育的缺陷以及先天性心脏病。我们发现沙利度胺仅在人,灵长类动物和兔子中诱导SALL4降解,但不在啮齿动物或鱼类中诱导SALL4降解,从而为沙利度胺综合症的特定病因机制提供了机械联系。

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