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首页> 外文期刊>Journal of Molecular Biology >Structural analysis of lipid complexes of GM2-activator protein.
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Structural analysis of lipid complexes of GM2-activator protein.

机译:GM2-激活蛋白脂质复合物的结构分析。

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摘要

The GM2-activator protein (GM2-AP) is a small lysosomal lipid transfer protein essential for the hydrolytic conversion of ganglioside GM2 to GM3 by beta-hexosaminidase A. The crystal structure of human apo-GM2-AP is known to consist of a novel beta-cup fold with a spacious hydrophobic interior. Here, we present two new structures of GM2-AP with bound lipids, showing two different lipid-binding modes within the apolar pocket. The 1.9A structure with GM2 bound shows the position of the ceramide tail and significant conformational differences among the three molecular copies in the asymmetric unit. The tetrasaccharide head group is not visible and is presumed to be disordered. However, its general position could be established through modeling. The structure of a low-pH crystal, determined at 2.5A resolution, has a significantly enlarged hydrophobic channel that merges with the apolar pocket. Electron density inside the pocket and channel suggests the presence of a trapped phospholipid molecule. Structurealignments among the four crystallographically unique monomers provide information on the potential role for lipid binding of flexible chain segments at the rim of the cavity opening. Two discrete orientations of the S130-T133 loop define an open and a closed configuration of the hydrophobic channel that merges with the apolar pocket. We propose: (i) that the low-pH structure represents an active membrane-binding conformation; (ii) that the mobile S130-T133 loop serves as a gate for passage of ligand into the apolar pocket; and (iii) that this loop and the adjacent apolar V59-W63 loop form a surface patch with two exposed tryptophan residues that could interface with lipid bilayers.
机译:GM2激活蛋白(GM2-AP)是一种小的溶酶体脂质转移蛋白,是神经节苷脂GM2被β-己糖胺酶A水解转化为GM3所必需的。已知人类载脂蛋白GM2-AP的晶体结构由一种新型β杯折叠,带有宽敞的疏水内部。在这里,我们介绍了与脂质结合的GM2-AP的两个新结构,显示了非极性口袋中的两个不同的脂质结合模式。带有GM2的1.9A结构显示了神经酰胺尾巴的位置以及不对称单元中三个分子拷贝之间的显着构象差异。四糖头基是不可见的,推测是无序的。但是,可以通过建模确定其一般位置。以2.5A分辨率测定的低pH晶体的结构具有明显扩大的疏水通道,该通道与非极性囊合并。口袋和通道内的电子密度表明存在捕获的磷脂分子。四种在晶体学上独特的单体之间的结构比对提供了关于在空腔开口的边缘处柔性链段的脂质结合的潜在作用的信息。 S130-T133回路的两个不连续方向定义了疏水通道的开放和闭合构型,该通道与非极性腔融合。我们提出:(i)低pH结构代表活性的膜结合构象; (ii)可移动的S130-T133环用作配体进入非极性口袋的门; (iii)该环和相邻的非极性V59-W63环形成具有两个暴露的色氨酸残基的表面贴剂,所述色氨酸残基可以与脂质双层结合。

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