VPS13蛋白对脂质转运的结构和生化研究

J. Adlakha, Zhouping Hong, PeiQi Li, K. Reinisch
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引用次数: 25

摘要

VPS13蛋白被认为在细胞器之间的接触点起作用,作为脂质在细胞器膜之间定向和批量移动的桥梁。VPS13s通过与受体(包括外周或整体膜蛋白)的相互作用锚定在膜之间。在这里,我们展示了VPS13s适配器结合域(VAB)与存在于一个这样的受体(完整膜蛋白Mcp1p)中的Pro-X-Pro肽识别基序络合的晶体结构,并从生物化学角度证明了其他Pro-X-Pro基序在同一位点与VAB结合。我们进一步证明Mcp1p和另一种直接与人类VPS13A相互作用的完整膜蛋白XK都是扰变酶。这一发现支持了大量脂质转运蛋白和超燃酶之间的伙伴关系的新兴范例。在蛋白质介导的运输过程中,当脂质分别从供体细胞器和受体细胞器的细胞质小叶中移出或插入时,超合酶可以在膜小叶之间重新平衡脂质。
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Structural and biochemical insights into lipid transport by VPS13 proteins
VPS13 proteins are proposed to function at contact sites between organelles as bridges for lipids to move directionally and in bulk between organellar membranes. VPS13s are anchored between membranes via interactions with receptors, including both peripheral or integral membrane proteins. Here we present the crystal structure of VPS13s adaptor binding domain (VAB) complexed with a Pro-X-Pro peptide recognition motif present in one such receptor, the integral membrane protein Mcp1p, and show biochemically that other Pro-X-Pro motifs bind the VAB in the same site. We further demonstrate that Mcp1p and another integral membrane protein that interacts directly with human VPS13A, XK, are scramblases. This finding supports an emerging paradigm of a partnership between bulk lipid transport proteins and scramblases. Scramblases can re-equilibrate lipids between membrane leaflets as lipids are removed from or inserted into, respectively, the cytosolic leaflet of donor and acceptor organelles in the course of protein-mediated transport.
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