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Glycosylation- and phosphorylation-dependent intracellular transport of lysosomal hydrolases.

机译:溶酶体水解酶的糖基化和磷酸化依赖性细胞内运输。

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摘要

Lysosomes contain more than 50 soluble hydrolases that are targeted to lysosomes in a mannose 6-phosphate (Man6P)-dependent manner. The phosphorylation of man- nose residues on high mannose-type oligosaccharides of newly synthesized lysosomal enzymes is catalyzed by two multimeric enzymes, GlcNAc-1-phosphotransferase and GlcNAc-1-phosphodiester-alpha-N-acetylglucosaminidase, allowing the binding to two distinct Man6P receptors in the Golgi apparatus. Inherited defects in the GlcNAc-1-phosphotransferase complex result in missorting and cellular loss of lysosomal enzymes, and the subsequent lysosomal dysfunction causes the lysosomal storage disorders mucolipidosis types II and III. Biosynthetic studies and the availability of Man6P receptor-deficient mouse models have provided new insights into the structural requirements for preferential binding of subsets of lysosomal enzymes to Man6P receptors as well as the identification of alternative targeting pathways.
机译:溶酶体包含50多种以甘露糖6磷酸(Man6P)依赖性方式靶向溶酶体的可溶性水解酶。新合成的溶酶体酶的高甘露糖型寡糖上的人鼻残基的磷酸化被两种多聚酶GlcNAc-1-磷酸转移酶和GlcNAc-1-磷酸二酯-α-N-乙酰氨基葡糖苷酶催化。高尔基体中的受体。 GlcNAc-1-磷酸转移酶复合物中的遗传缺陷导致溶酶体酶的缺失和细胞损失,随后的溶酶体功能障碍导致溶酶体贮积病II和III型粘膜脂质病。生物合成研究和Man6P受体缺陷型小鼠模型的可用性为溶酶体酶子集优先结合Man6P受体的结构要求以及替代靶向途径的鉴定提供了新的见识。

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