首页> 美国卫生研究院文献>Acta Crystallographica. Section D Structural Biology >Structural insights into the interaction of the conserved mammalian proteins GAPR-1 and Beclin 1 a key autophagy protein
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Structural insights into the interaction of the conserved mammalian proteins GAPR-1 and Beclin 1 a key autophagy protein

机译:保守的哺乳动物蛋白GAPR-1和Beclin 1(一种重要的自噬蛋白)相互作用的结构见解

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摘要

Mammalian Golgi-associated plant pathogenesis-related protein 1 (GAPR-1) is a negative autophagy regulator that binds Beclin 1, a key component of the autophagosome nucleation complex. Beclin 1 residues 267–284 are required for binding GAPR-1. Here, sequence analyses, structural modeling, mutagenesis combined with pull-down assays, X-ray crystal structure determination and small-angle X-ray scattering were used to investigate the Beclin 1–GAPR-1 interaction. Five conserved residues line an equatorial GAPR-1 surface groove that is large enough to bind a peptide. A model of a peptide comprising Beclin 1 residues 267–284 docked onto GAPR-1, built using the CABS-dock server, indicates that this peptide binds to this GAPR-1 groove. Mutation of the five conserved residues lining this groove, H54A/E86A/G102K/H103A/N138G, abrogates Beclin 1 binding. The 1.27 Å resolution X-ray crystal structure of this pentad mutant GAPR-1 was determined. Comparison with the wild-type (WT) GAPR-1 structure shows that the equatorial groove of the pentad mutant is shallower and more positively charged, and therefore may not efficiently bind Beclin 1 residues 267–284, which include many hydrophobic residues. Both WT and pentad mutant GAPR-1 crystallize as dimers, and in each case the equatorial groove of one subunit is partially occluded by the other subunit, indicating that dimeric GAPR-1 is unlikely to bind Beclin 1. SAXS analysis of WT and pentad mutant GAPR-1 indicates that in solution the WT forms monomers, while the pentad mutant is primarily dimeric. Thus, changes in the structure of the equatorial groove combined with the improved dimerization of pentad mutant GAPR-1 are likely to abrogate binding to Beclin 1.
机译:哺乳动物高尔基体相关的植物病程相关蛋白1(GAPR-1)是一种负自噬调节剂,与Beclin 1结合,而Beclin 1是自噬体成核复合体的关键成分。结合GAPR-1需要Beclin 1残基267–284。在这里,序列分析,结构建模,诱变与下拉分析,X射线晶体结构确定和小角度X射线散射被用来研究Beclin 1-GAPR-1的相互作用。五个保守残基排列在赤道GAPR-1表面凹槽上,该凹槽足够大以结合肽。使用CABS-dock服务器构建的包含停靠在GAPR-1上的Beclin 1残基267–284的肽模型,表明该肽与该GAPR-1沟结合。 H54A / E86A / G102K / H103A / N138G位于该凹槽内的五个保守残基的突变消除了Beclin 1的结合。确定了该五单元突变体GAPR-1的1.27分辨率X射线晶体结构。与野生型(WT)GAPR-1结构的比较表明,五单元突变体的赤道凹槽较浅,带正电,因此可能无法有效结合Beclin 1残基267-284,其中包括许多疏水残基。 WT和五单元突变体GAPR-1均结晶为二聚体,并且在每种情况下,一个亚基的赤道沟被另一亚基部分封闭,表明二聚体GAPR-1不太可能结合Beclin1。WT和五单元突变体的SAXS分析。 GAPR-1表示在溶液中WT形成单体,而五单元位突变体主要是二聚体。因此,赤道沟结构的改变与五元突变体GAPR-1的二聚化的改善可能消除了与Beclin 1的结合。

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