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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The levels of mature glycosylated nicastrin are regulated and correlate with gamma-secretase processing of amyloid beta-precursor protein.
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The levels of mature glycosylated nicastrin are regulated and correlate with gamma-secretase processing of amyloid beta-precursor protein.

机译:成熟的糖基化尼古斯丁的水平受到调节,并与淀粉样β前体蛋白的γ-分泌酶加工相关。

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摘要

Nicastrin, a type-I transmembrane glycoprotein, is a necessary component of the high molecular weight presenilin (PS) complexes that mediate intramembranous cleavage of beta-amyloid precursor protein (betaAPP) and Notch. Nicastrin undergoes trafficking-dependent glycosylation maturation, and PS1 interacts preferentially with these maturely glycosylated forms of nicastrin. We investigated the effects of differing levels of the immature and mature endoglycosidase-H-resistant forms of nicastrin on Abeta40- and Abeta42-peptide secretion in several cell lines stably expressing a mutant nicastrin (D336A/Y337A) that increases Abeta secretion. There was no correlation between Abeta secretion and the level of over-expression of the immature forms of nicastrin. The total level of mature nicastrin remained constant, but mutant nicastrin replaced endogenous mature nicastrin in varying degrees. Differences in the levels of mature mutant nicastrin positively correlated with Abeta secretion, but did not influence either betaAPP trafficking or processing by alpha- and beta-secretases. Proper trafficking and terminal maturation of nicastrin is therefore a necessary event for the regulated intramembranous proteolysis of betaAPP.
机译:Nicastrin是一种I型跨膜糖蛋白,是介导β淀粉样蛋白前体蛋白(betaAPP)和Notch膜内裂解的高分子量早老素(PS)复合物的必要成分。尼卡斯特林经历依赖于运输的糖基化成熟,而PS1优先与这些尼卡斯特林的成熟糖基化形式相互作用。我们在稳定表达增加Abeta分泌的突变型nicastrin(D336A / Y337A)的几种细胞系中,研究了不同水平的烟碱的成熟水平对内糖苷酶H的不成熟和成熟的抵抗方式,对Abeta40-和Abeta42-肽分泌的影响。 Abeta分泌与未成熟形式的尼卡斯特林的过度表达水平之间没有相关性。成熟尼古丁的总水平保持恒定,但是突变尼古丁在不同程度上替代了内源性成熟尼古丁。成熟突变体尼卡斯特林水平的差异与Abeta分泌呈正相关,但既不影响betaAPP贩运,也不影响alpha-和beta-分泌酶的加工。因此,尼卡斯特林的正确运输和最终成熟是βAPP调控膜内蛋白水解的必要事件。

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