首页> 外文期刊>Human Molecular Genetics >ADAMTS9 and ADAMTS20 are differentially affected by loss of B3GLCT in mouse model of Peters plus syndrome
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ADAMTS9 and ADAMTS20 are differentially affected by loss of B3GLCT in mouse model of Peters plus syndrome

机译:Adamts9和Adamts20在Peters Plus综合征的小鼠模型中失去B3Glct的差异影响

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Peters plus syndrome (MIM #261540 PTRPLS), characterized by defects in eye development, prominent forehead, hypertelorism, short stature and brachydactyly, is caused by mutations in the beta 3-glucosyltransferase (B3GLCT) gene. Protein O-fucosyltransferase 2 (POFUT2) and B3GLCT work sequentially to add an O-linked glucose beta 1-3fucose disaccharide to properly folded thrombospondin type 1 repeats (TSRs). Forty-nine proteins are predicted to be modified by POFUT2, and nearly half are members of the ADAMTS superfamily. Previous studies suggested that O-linked fucose is essential for folding and secretion of POFUT2-modified proteins and that B3GLCT-mediated extension to the disaccharide is essential for only a subset of targets. To test this hypothesis and gain insight into the origin of PTRPLS developmental defects, we developed and characterized two mouse B3glct knockout alleles. Using these models, we tested the role of B3GLCT in enabling function of ADAMTS9 and ADAMTS20, two highly conserved targets whose functions are well characterized in mouse development. The mouse B3glct mutants developed craniofacial and skeletal abnormalities comparable to PTRPLS. In addition, we observed highly penetrant hydrocephalus, white spotting and soft tissue syndactyly. We provide strong genetic and biochemical evidence that hydrocephalus and white spotting in B3glct mutants resulted from loss of ADAMTS20, eye abnormalities from partial reduction of ADAMTS9 and cleft palate from loss of ADAMTS20 and partially reduced ADAMTS9 function. Combined, these results provide compelling evidence that ADAMTS9 and ADAMTS20 were differentially sensitive to B3GLCT inactivation and suggest that the developmental defects in PTRPLS result from disruption of a subset of highly sensitive POFUT2/B3GLCT targets such as ADAMTS20.
机译:Peters Plus综合征(MIM#261540 ptrpls),其特征在于眼发育的缺陷,突出的额头,超高性,矮小的身材和晶状体,是由β3-葡糖基转移酶(B3Glct)基因的突变引起的。蛋白质O-岩藻糖基转移酶2(Pofut2)和B3Glct顺序地合作,加入O-连接的葡萄糖β1-3倍糖,以适当折叠的血压出型1型重复(TSR)。预计将通过Pofut2修改四十九个蛋白质,并且近一半是Adamts Superfamily的成员。以前的研究表明,O-连接的岩藻糖对于Pofut2改性蛋白的折叠和分泌至关重要,并且B3Glct介导的二糖延伸对于仅靶标是必不可少的。为了测试这一假设并深入了解Ptrpls发育缺陷的起源,我们开发并表征了两只小鼠B3Glct淘汰等位基因。使用这些模型,我们测试了B3Glct在Adamts9和Adamts20的启用功能中的作用,两个高度保守的目标,其功能在小鼠开发中具有很好的特征。小鼠B3Glct突变体开发了与Ptrpls相当的颅面和骨骼异常。此外,我们观察到高度渗透性的脑积水,白色斑点和软组织综合征。我们提供强大的遗传和生化证据,即B3Glct突变体中的脑积分和白色斑点因缺失Adamts20而导致的眼镜,从Adamts9的部分减少和裂隙腭损失,并且部分地减少了Adamts9功能。结合,这些结果提供了令人信服的证据,即Adamts9和Adamts20对B3Glct灭活差异敏感,并表明ptrpls中的发育缺陷是由于诸如Adamts20等高度敏感的Pofut2 / B3Glct靶标而产生的发育缺陷。

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