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首页> 外文期刊>Glycobiology. >Structure of human POFUT1, its requirement in ligand-independent oncogenic Notch signaling, and functional effects of Dowling-Degos mutations
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Structure of human POFUT1, its requirement in ligand-independent oncogenic Notch signaling, and functional effects of Dowling-Degos mutations

机译:人体Pofut1的结构,其在配体无关的致癌信号传导中的要求,以及Dowling-Degos突变的功能作用

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摘要

Protein O-fucosyltransferase-1 (POFUT1), which transfers fucose residues to acceptor sites on serine and threonine residues of epidermal growth factor-like repeats of recipient proteins, is essential for Notch signal transduction in mammals. Here, we examine the consequences of POFUT1 loss on the oncogenic signaling associated with certain leukemia-associated mutations of human Notch1, report the structures of human POFUT1 in free and GDP-fucose bound states, and assess the effects of Dowling-Degos mutations on human POFUT1 function. CRISPR-mediated knockout of POFUT1 in U2OS cells suppresses both normal Notch1 signaling, and the ligand-independent signaling associated with leukemogenic mutations of Notch1. Normal and oncogenic signaling are rescued by wild-type POFUT1 but rescue is impaired by an active-site R240A mutation. The overall structure of the human enzyme closely resembles that of the Caenorhabditis elegans protein, with an overall backbone RMSD of 0.93 angstrom, despite primary sequence identity of only 39% in the mature protein. GDP-fucose binding to the human enzyme induces limited backbone conformational movement, though the side chains of R43 and D244 reorient to make direct contact with the fucose moiety in the complex. The reported Dowling-Degos mutations of POFUT1, except for M262T, fail to rescue Notch1 signaling efficiently in the CRISPR-engineered POFUT1(-/-) background. Together, these studies identify POFUT1 as a potential target for cancers driven by Notch1 mutations and provide a structural roadmap for its inhibition.
机译:蛋白质O-岩藻糖基转移酶-1(Pofut1),其将岩藻糖残基转移到受体蛋白的表皮生长因子样重复的丝氨酸和苏氨酸残留物上的受体位点,对于哺乳动物中的缺口信号转导必不可少。在这里,我们检查Pofut1损失对与某些人Notch1的某些白血病相关突变相关的致癌信号的后果,报告了人体Pofut1的自由和GDP - 岩藻糖结合状态,并评估了Dowling-Degos突变对人的影响Pofut1功能。 U2OS细胞中Pofut1的Cr Clasp介导的敲除抑制了与Notch1的白血病突变相关的正常Notch1信号传导和与与白血动突变相关的配体无关的信号传导。正常和致癌信号传导通过野生型Pofut1拯救,但是通过活性位点R240A突变损伤。人类酶的整体结构非常类似于Caenorhabditis elegans蛋白,其整体骨干RMSD为0.93埃,尽管成熟蛋白只有39%的主要序列同一性。 GDP - 岩藻糖与人酶结合诱导有限的骨干构象运动,虽然R43和D244的侧链重新定位,使其在复合物中与岩藻糖部分直接接触。除M262T之外,Pofut1的报告的Dowling-Degos突变未能在CRISPR-CREANGERED POFUT1( - / - )背景中有效地撤消Notch1信号。这些研究一起鉴定Pofut1作为由Notch1突变驱动的癌症的潜在靶标,并为其抑制提供结构路线图。

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