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亮肽素对内体蛋白水解活性的抑制作用可阻断主要组织相容性复合体II类分子的表面表达及其在内体中转化为抗十二烷基硫酸钠αβ异二聚体的过程。

Inhibition of endosomal proteolytic activity by leupeptin blocks surface expression of MHC class II molecules and their conversion to SDS resistance alpha beta heterodimers in endosomes.

作者信息

Neefjes J J, Ploegh H L

机构信息

The Netherlands Cancer Institute, Amsterdam.

出版信息

EMBO J. 1992 Feb;11(2):411-6. doi: 10.1002/j.1460-2075.1992.tb05069.x.

Abstract

The biosynthesis of MHC Class II molecules starts with the assembly of the alpha and beta subunits and the invariant chain. Intracellular transport of Class II molecules was followed in pulse-chase experiments of a human Epstein-Barr virus-transformed B lymphoblastoid cell line. Entry of Class II molecules into the endocytotic pathway and their cell surface appearance were monitored using neuraminidase as a fluid endocytotic marker and as a surface probe, respectively. In the course of intracellular transport, the Class II associated invariant chain is removed by proteases located in the endosomal pathway. Here, we show that leupeptin inhibits not only invariant chain breakdown, but also surface deposition of newly synthesized Class II molecules. Class II molecules display remarkable resistance to SDS at ambient temperature when occupied by peptide. We exploit this property to show that peptide binding precedes surface expression, and takes place in the course of intracellular transport through an endosomal compartment. Leupeptin blocks the conversion of Class II molecules to an SDS resistant complex.

摘要

MHC II类分子的生物合成始于α亚基、β亚基和恒定链的组装。在对人Epstein-Barr病毒转化的B淋巴母细胞系进行的脉冲追踪实验中,对II类分子的细胞内运输进行了跟踪。分别使用神经氨酸酶作为流体胞吞标记物和表面探针,监测II类分子进入胞吞途径及其在细胞表面的出现情况。在细胞内运输过程中,与II类分子相关的恒定链被位于内体途径中的蛋白酶去除。在此,我们表明亮抑酶肽不仅抑制恒定链的降解,还抑制新合成的II类分子的表面沉积。当被肽占据时,II类分子在环境温度下对SDS表现出显著的抗性。我们利用这一特性表明肽结合先于表面表达,并发生在通过内体区室的细胞内运输过程中。亮抑酶肽阻断II类分子向SDS抗性复合物的转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/635c/556469/772135372760/emboj00087-0043-a.jpg

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