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Structure and function of lysosomal phospholipase A2 and lecithin: cholesterol acyltransferase

机译:溶酶体磷脂酶A2和卵磷脂的结构和功能:胆固醇酰基转移酶

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摘要

Lysosomal phospholipase A2 (LPLA2) and lecithin: cholesterol acyltransferase (LCAT) belong to a structurally uncharacterized family of key lipid-metabolizing enzymes responsible for lung surfactant catabolism and for reverse cholesterol transport, respectively. Whereas LPLA2 is predicted to underlie the development of drug-induced phospholipidosis, somatic mutations in LCAT cause fish eye disease and familial LCAT deficiency. Here we describe several high-resolution crystal structures of human LPLA2 and a low-resolution structure of LCAT that confirms its close structural relationship to LPLA2. Insertions in the a/b hydrolase core of LPLA2 form domains that are responsible for membrane interaction and binding the acyl chains and head groups of phospholipid substrates. The LCAT structure suggests the molecular basis underlying human disease for most of the known LCAT missense mutations, and paves the way for rational development of new therapeutics to treat LCAT deficiency, atherosclerosis and acute coronary syndrome.
机译:溶酶体磷脂酶A2(LPLA2)和卵磷脂:胆固醇酰基转移酶(LCAT)分别属于负责肺表面活性物质分解代谢和胆固醇逆向转运的主要脂质代谢酶的结构上未表征的家族。预计LPLA2是药物诱导的磷脂病发展的基础,而LCAT中的体细胞突变会引起鱼眼疾病和家族性LCAT缺乏症。在这里,我们描述了人LPLA2的几种高分辨率晶体结构和LCAT的低分辨率结构,证实了其与LPLA2的紧密结构关系。 LPLA2的a / b水解酶核心中的插入形成域,该域负责膜相互作用并结合磷脂底物的酰基链和头基。 LCAT结构为大多数已知的LCAT错义突变提供了人类疾病的分子基础,并为合理开发治疗LCAT缺乏,动脉粥样硬化和急性冠状动脉综合征的新疗法铺平了道路。

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