首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Tubulin Polymerization-promoting Protein (TPPP/p25α) Promotes Unconventional Secretion of α-Synuclein through Exophagy by Impairing Autophagosome-Lysosome Fusion
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Tubulin Polymerization-promoting Protein (TPPP/p25α) Promotes Unconventional Secretion of α-Synuclein through Exophagy by Impairing Autophagosome-Lysosome Fusion

机译:微管蛋白聚合促进蛋白(TPPP /p25α)通过吞噬破坏自噬体与溶酶体融合促进α-突触核蛋白的非常规分泌。

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摘要

Aggregation of α-synuclein can be promoted by the tubulin polymerization-promoting protein/p25α, which we have used here as a tool to study the role of autophagy in the clearance of α-synuclein. In NGF-differentiated PC12 catecholaminergic nerve cells, we show that de novo expressed p25α co-localizes with α-synuclein and causes its aggregation and distribution into autophagosomes. However, p25α also lowered the mobility of autophagosomes and hindered the final maturation of autophagosomes by preventing their fusion with lysosomes for the final degradation of α-synuclein. Instead, p25α caused a 4-fold increase in the basal level of α-synuclein secreted into the medium. Secretion was strictly dependent on autophagy and could be up-regulated (trehalose and Rab1A) or down-regulated (3-methyladenine and ATG5 shRNA) by enhancers or inhibitors of autophagy or by modulating minus-end-directed (HDAC6 shRNA) or plus-end-directed (Rab8) trafficking of autophagosomes along microtubules. Finally, we show in the absence of tubulin polymerization-promoting protein/p25α that α-synuclein release was modulated by dominant mutants of Rab27A, known to regulate exocytosis of late endosomal (and amphisomal) elements, and that both lysosomal fusion block and secretion of α-synuclein could be replicated by knockdown of the p25α target, HDAC6, the predominant cytosolic deacetylase in neurons. Our data indicate that unconventional secretion of α-synuclein can be mediated through exophagy and that factors, which increase the pool of autophagosomes/amphisomes (e.g. lysosomal disturbance) or alter the polarity of vesicular transport of autophagosomes on microtubules, can result in an increased release of α-synuclein monomer and aggregates to the surroundings.
机译:微管蛋白聚合促进蛋白/p25α可促进α-突触核蛋白的聚集,在这里我们将其用作研究自噬在清除α-突触核蛋白中的作用的工具。在NGF分化的PC12儿茶酚胺能神经细胞中,我们显示从头表达的p25α与α-突触核蛋白共定位并导致其聚集和分布到自噬体中。然而,p25α也通过阻止自噬体与溶酶体融合以最终降解α-突触核蛋白而降低了自噬体的迁移性并阻碍了自噬体的最终成熟。相反,p25α导致分泌到培养基中的α-突触核蛋白的基础水平增加了4倍。分泌严格依赖于自噬,并且可以通过自噬的增强剂或抑制剂或通过调节负向末端的(HDAC6 shRNA)或正负调节上调(海藻糖和Rab1A)或下调(3-甲基腺嘌呤和ATG5 shRNA)。沿微管的末端定向(Rab8)转运自噬体。最后,我们表明,在不存在促微管蛋白聚合促进蛋白/p25α的情况下,α-突触核蛋白的释放受Rab27A的显性突变体调控,已知该突变体可调控晚期内体(和非双体体)元素的胞吐作用,并且溶酶体融合块和分泌α-突触核蛋白可以通过敲低p25α靶标HDAC6(神经元中主要的胞质脱乙酰酶)来复制。我们的数据表明,α-突触核蛋白的非常规分泌可以通过吞噬作用来介导,并且增加自噬体/两性体池(例如溶酶体紊乱)或改变自噬体在微管上的囊泡转运极性的因素可以导致释放增加。 α-突触核蛋白单体的聚集并聚集到周围。

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