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STRUCTURAL BASIS OF STEROL BINDING BY NPC2 A LYSOSOMAL PROTEIN DEFICIENT IN NIEMANN-PICK TYPE C2 DISEASE

机译:NPC2的固相结合的结构基础尼康-皮克C2型疾病的溶酶体蛋白缺陷。

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摘要

NPC2 is a small lysosomal glycoprotein that binds cholesterol with submicromolar affinity. Deficiency in NPC2 is the cause of Niemann Pick type C2 disease, a fatal neurovisceral disorder characterized by accumulation of cholesterol in lysosomes. Here we report the crystal structure of bovine NPC2 bound to cholesterol-3-O-sulfate, an analog that binds with greater apparent affinity than cholesterol. Structures of both apo- and sterol-bound NPC2 were observed within the same crystal lattice, with an asymmetric unit containing one molecule of apoNPC2 and two molecules of sterol-bound NPC2. As predicted from a previously determined structure of apoNPC2, the sterol binds in a deep hydrophobic pocket sandwiched between the two β sheets of NPC2, with only the sulfate substituent of the ligand exposed to solvent. In the two available structures of apoNPC2, the incipient ligand-binding pocket, which ranges from a loosely packed hydrophobic core to a small tunnel, is too small to accommodate cholesterol. In the presence of sterol, the pocket expands, facilitated by a slight separation of the β strands and substantial reorientation of some side chains, resulting in a perfect molding of the pocket around the hydrocarbon portion of cholesterol. A notable feature is the repositioning of two aromatic residues at the tunnel entrance that are essential for NPC2 function. The NPC2 structures provide evidence of a malleable binding site, consistent with the previously documented broad range of sterol ligand specificity.
机译:NPC2是一种小的溶酶体糖蛋白,以亚微摩尔亲和力结合胆固醇。 NPC2缺乏是Niemann Pick C2型疾病的病因,这是一种致命的神经内脏疾病,其特征是胆固醇在溶酶体中蓄积。在这里,我们报告牛NPC2的晶体结构与胆固醇3-O-硫酸盐结合,该类似物以比胆固醇更大的表观亲和力结合。在同一晶格中观察到载脂蛋白和固醇结合的NPC2的结构,其不对称单元包含一个分子的apoNPC2和两个分子的固醇结合的NPC2。如从先前确定的apoNPC2的结构所预测的那样,固醇在一个夹在NPC2的两个β片之间的深疏水袋中结合,只有配体的硫酸盐取代基暴露于溶剂。在apoNPC2的两个可用结构中,初始的配体结合袋(从疏松的疏水核到小的隧道)范围太小,无法容纳胆固醇。在固醇存在的情况下,由于β链的轻微分离和某些侧链的实质性重新取向而促进了囊袋的膨胀,从而使囊袋围绕胆固醇的烃部分完美成型。一个显着的特征是重新定位了隧道入口处的两个芳族残基,这对于NPC2功能至关重要。 NPC2结构提供了可塑结合位点的证据,与先前记录的广泛的甾醇配体特异性范围相符。

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