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结构域在胰腺脂肪酶相关蛋白2功能特性中的作用

Role of the structural domains in the functional properties of pancreatic lipase-related protein 2.

作者信息

Berton Amélie, Sebban-Kreuzer Corinne, Crenon Isabelle

机构信息

UMR, INSERM 476, INRA 1260, Université de Méditerranée, Nutrition Humaine et Lipides, Faculté de Médecine de Timone, Marseille, France.

出版信息

FEBS J. 2007 Nov;274(22):6011-23. doi: 10.1111/j.1742-4658.2007.06123.x. Epub 2007 Oct 24.

Abstract

Although structurally similar, classic pancreatic lipase (PL) and pancreatic lipase-related protein (PLRP)2, expressed in the pancreas of several species, differ in substrate specificity, sensitivity to bile salts and colipase dependence. In order to investigate the role of the two domains of PLRP2 in the function of the protein, two chimeric proteins were designed by swapping the N and C structural domains between the horse PL (Nc and Cc domains) and the horse PLRP2 (N2 and C2 domains). NcC2 and N2Cc proteins were expressed in insect cells, purified by one-step chromatography, and characterized. NcC2 displays the same specific activity as PL, whereas N2Cc has the same as that PLRP2. In contrast to N2Cc, NcC2 is highly sensitive to interfacial denaturation. The lipolytic activity of both chimeric proteins is inhibited by bile salts and is not restored by colipase. Only N2Cc is found to be a strong inhibitor of PL activity, due to competition for colipase binding. Active site-directed inhibition experiments demonstrate that activation of N2Cc occurs in the presence of bile salt and does not require colipase, as does PLRP2. The inability of PLRP2 to form a high-affinity complex with colipase is only due to the C-terminal domain. Indeed, the N-terminal domain can interact with the colipase. PLRP2 properties such as substrate selectivity, specific activity, bile salt-dependent activation and interfacial stability depend on the nature of the N-terminal domain.

摘要

虽然结构相似,但在几种物种的胰腺中表达的经典胰脂肪酶(PL)和胰脂肪酶相关蛋白(PLRP)2在底物特异性、对胆盐的敏感性和辅脂酶依赖性方面存在差异。为了研究PLRP2的两个结构域在该蛋白功能中的作用,通过交换马PL(Nc和Cc结构域)和马PLRP2(N2和C2结构域)之间的N端和C端结构域设计了两种嵌合蛋白。NcC2和N2Cc蛋白在昆虫细胞中表达,通过一步层析法纯化并进行特性分析。NcC2表现出与PL相同的比活性,而N2Cc与PLRP2相同。与N2Cc不同,NcC2对界面变性高度敏感。两种嵌合蛋白的脂解活性均被胆盐抑制,且不能被辅脂酶恢复。由于竞争辅脂酶结合,仅发现N2Cc是PL活性的强抑制剂。活性位点定向抑制实验表明,N2Cc在胆盐存在下被激活,且不需要辅脂酶,这与PLRP2一样。PLRP2不能与辅脂酶形成高亲和力复合物仅归因于C端结构域。实际上,N端结构域可以与辅脂酶相互作用。PLRP2的底物选择性、比活性、胆盐依赖性激活和界面稳定性等特性取决于N端结构域的性质。

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