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Familial STAG2 germline mutation defines a new human cohesinopathy

机译:家族性STAG2种系突变定义了一种新的人类黏着病

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摘要

We characterize a novel human cohesinopathy originated from a familial germline mutation of the gene encoding the cohesin subunit STAG2, which we propose to call STAG2-related X-linked Intellectual Deficiency. Five individuals carry a STAG2 p.Ser327Asn (c.980 G > A) variant that perfectly cosegregates with a phenotype of syndromic mental retardation in a characteristic X-linked recessive pattern. Although patient-derived cells did not show overt sister-chromatid cohesion defects, they exhibited altered cell cycle profiles and gene expression patterns that were consistent with cohesin deficiency. The protein level of STAG2 in patient cells was normal. Interestingly, STAG2 S327 is located at a conserved site crucial for binding to SCC1 and cohesin regulators. When expressed in human cells, the STAG2 p.Ser327Asn mutant is defective in binding to SCC1 and other cohesin subunits and regulators. Thus, decreased amount of intact cohesin likely underlies the phenotypes of STAG2-SXLID. Intriguingly, recombinant STAG2 p.Ser327Asn binds normally to SCC1, WAPL, and SGO1 in vitro, suggesting the existence of unknown in vivo mechanisms that regulate the interaction between STAG2 and SCC1.
机译:我们表征了一种新型的人类黏着病,其起源于编码黏附素亚基STAG2的基因的家族生殖系突变,我们建议将其称为STAG2相关的X连锁智力缺陷。五个人携带一个STAG2 p.Ser327Asn(c.980 G> A)变异体,该变异体以特征性的X连锁隐性模式与综合征性智力障碍的表型完美共聚。尽管患者来源的细胞没有显示出明显的姐妹染色单体内聚缺陷,但它们显示出改变的细胞周期谱和基因表达模式,与粘附素缺乏相一致。患者细胞中STAG2的蛋白质水平正常。有趣的是,STAG2 S327位于一个保守的位点,对于与SCC1和黏附素调节剂的结合至关重要。当在人类细胞中表达时,STAG2 p.Ser327Asn突变体在结合SCC1和其他黏附素亚基和调节剂方面存在缺陷。因此,减少的完整粘着蛋白的数量可能是STAG2-SXLID表型的基础。有趣的是,重组STAG2 p.Ser327Asn在体外正常地与SCC1,WAPL和SGO1结合,这表明存在未知的体内机制可调节STAG2和SCC1之间的相互作用。

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