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两种甘露糖6-磷酸受体转运不同的溶酶体蛋白补体。

The two mannose 6-phosphate receptors transport distinct complements of lysosomal proteins.

作者信息

Pohlmann R, Boeker M W, von Figura K

机构信息

Georg-August-Universität, Abteilung Biochemie II, Göttingen, Federal Republic of Germany.

出版信息

J Biol Chem. 1995 Nov 10;270(45):27311-8. doi: 10.1074/jbc.270.45.27311.

Abstract

Mammalian cells express two different mannose 6-phosphate receptors (MPR 46 and MPR 300), which both mediate targeting of Man-6-P-containing lysosomal proteins to lysosomes. To assess the contribution of either and both MPRs to the transport of lysosomal proteins, fibroblasts were established from mouse embryos that were homozygous for disrupted alleles of either MPR 46 or MPR 300 or both MPRs. Fibroblasts missing both MPRs secreted most of the newly synthesized lysosomal proteins and were unable to maintain the catabolic function of lysosomes. The intracellular levels of lysosomal proteins decreased to < 20%, and undigested material accumulated in the lysosomal compartment. Fibroblasts lacking either MPR exhibited only a partial missorting and maintained, in general, half-normal to normal levels of lysosomal proteins. The same species of lysosomal proteins were found in secretions of double MPR-deficient fibroblasts as in secretions of single MPR-deficient fibroblasts, but at different ratios. This clearly indicates that neither MPR has an exclusive affinity for one or several lysosomal proteins. Furthermore, neither MPR can substitute in vivo for the loss of the other. It is proposed that the heterogeneity of the Man-6-P recognition marker within a lysosomal protein and among different lysosomal proteins has necessitated the evolution of two MPRs with complementary binding properties to ensure an efficient targeting of lysosomal proteins.

摘要

哺乳动物细胞表达两种不同的甘露糖6-磷酸受体(MPR 46和MPR 300),它们都介导含甘露糖-6-磷酸的溶酶体蛋白靶向运输到溶酶体。为了评估单个或两个MPR对溶酶体蛋白运输的作用,从纯合缺失MPR 46或MPR 300等位基因或同时缺失这两个MPR等位基因的小鼠胚胎中建立成纤维细胞。同时缺失两个MPR的成纤维细胞分泌大部分新合成的溶酶体蛋白,并且无法维持溶酶体的分解代谢功能。溶酶体蛋白的细胞内水平降至<20%,未消化的物质在溶酶体区室中积累。缺失单个MPR的成纤维细胞仅表现出部分分选错误,总体上溶酶体蛋白水平维持在正常水平的一半到正常水平。在双MPR缺陷型成纤维细胞的分泌物中发现的溶酶体蛋白种类与单MPR缺陷型成纤维细胞的分泌物中相同,但比例不同。这清楚地表明,两个MPR对一种或几种溶酶体蛋白都没有排他性亲和力。此外,在体内一个MPR不能替代另一个MPR的缺失。有人提出,溶酶体蛋白内和不同溶酶体蛋白间甘露糖-6-磷酸识别标记的异质性使得必须进化出两种具有互补结合特性的MPR,以确保溶酶体蛋白的有效靶向运输。

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