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The palmitoyltransferase of the cation-dependent mannose 6-phosphate receptor cycles between the plasma membrane and endosomes

机译:阳离子依赖性甘露糖6-磷酸受体在质膜和内体之间的棕榈酰转移酶循环

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摘要

The cation-dependent mannose 6-phosphate receptor (CD-MPR) mediates the transport of lysosomal enzymes from the trans-Golgi network to endosomes. Evasion of lysosomal degradation of the CD-MPR requires reversible palmitoylation of a cysteine residue in its cytoplasmic tail. Because palmitoylation is reversible and essential for correct trafficking, it presents a potential regulatory mechanism for the sorting signals within the cytoplasmic domain of the CD-MPR. Characterization of the palmitoylation performing an in vitro palmitoylation assay by using purified full-length CD-MPR revealed that palmitoylation of the CD-MPR occurs enzymatically by a membrane-bound palmitoyltransferase. In addition, analysis of the localization revealed that the palmitoyltransferase cycles between endosomes and the plasma membrane. This was identified by testing fractions from HeLa cell homogenate separated on a density gradient in the in vitro palmitoylation assay and further confirmed by in vivo labeling experiments by using different treatments to block specific protein trafficking steps within the cell. We identified a novel palmitoyltransferase activity in the endocytic pathway responsible for palmitoylation of the CD-MPR. The localization of the palmitoyltransferase not only fulfills the requirement of our hypothesis to be a regulator of the intracellular trafficking of the CD-MPR but also may affect the sorting/activity of other receptors cycling through endosomes.
机译:阳离子依赖性甘露糖6磷酸受体(CD-MPR)介导溶酶体酶从反高尔基体网络向内体的运输。要避免CD-MPR的溶酶体降解,需要在其细胞质尾巴中将半胱氨酸残基进行可逆的棕榈酰化。因为棕榈酰化是可逆的并且对于正确的运输必不可少,所以它为CD-MPR胞质域内的信号分类提供了潜在的调节机制。通过使用纯化的全长CD-MPR进行体外棕榈酰化测定的棕榈酰化特征表明,CD-MPR的棕榈酰化是通过膜结合的棕榈酰转移酶以酶促方式发生的。另外,对定位的分析揭示了内体与质膜之间的棕榈酰转移酶循环。通过在体外棕榈酰化测定中测试在密度梯度上分离的HeLa细胞匀浆的馏分,可以确定这一点,并通过使用不同的处理方法来阻断细胞内特定的蛋白质运输步骤,通过体内标记实验进一步证实。我们在负责CD-MPR的棕榈酰化的内吞途径中发现了一种新型的棕榈酰转移酶活性。棕榈酰转移酶的定位不仅满足我们的假设是调节CD-MPR的细胞内运输的要求,而且还可能影响通过内体循环的其他受体的分类/活性。

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