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The Two-pore channel (TPC) interactome unmasks isoform-specific roles for TPCs in endolysosomal morphology and cell pigmentation

机译:两孔通道(TPC)相互作用基因组揭示了TPC在溶酶体形态和细胞色素沉着中的亚型特异性作用

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摘要

The two-pore channels (TPC1 and TPC2) belong to an ancient family of intracellular ion channels expressed in the endolysosomal system. Little is known about how regulatory inputs converge to modulate TPC activity, and proposed activation mechanisms are controversial. Here, we compiled a proteomic characterization of the human TPC interactome, which revealed that TPCs complex with many proteins involved in Ca2+ homeostasis, trafficking, and membrane organization. Among these interactors, TPCs were resolved to scaffold Rab GTPases and regulate endomembrane dynamics in an isoform-specific manner. TPC2, but not TPC1, caused a proliferation of endolysosomal structures, dysregulating intracellular trafficking, and cellular pigmentation. These outcomes required both TPC2 and Rab activity, as well as their interactivity, because TPC2 mutants that were inactive, or rerouted away from their endogenous expression locale, or deficient in Rab binding, failed to replicate these outcomes. Nicotinic acid adenine dinucleotide phosphate (NAADP)-evoked Ca2+ release was also impaired using either a Rab binding-defective TPC2 mutant or a Rab inhibitor. These data suggest a fundamental role for the ancient TPC complex in trafficking that holds relevance for lysosomal proliferative scenarios observed in disease.
机译:两孔通道(TPC1和TPC2)属于溶酶体系统中表达的古老细胞内离子通道家族。关于监管输入如何收敛以调节TPC活性的了解甚少,并且所提出的激活机制也存在争议。在这里,我们对人类TPC相互作用组进行了蛋白质组学表征,结果表明TPC与许多与Ca 2 + 体内稳态,运输和膜组织有关的蛋白质复合。在这些相互作用因子中,TPCs被解析为以Rab GTPases为支架,并以同工型特异性方式调节内膜动力学。 TPC2而非TPC1引起了溶酶体结构的增殖,细胞内运输失调和细胞色素沉着。这些结果既需要TPC2和Rab活性,又需要它们的相互作用,因为没有活性的TPC2突变体,或从其内源表达区域重新布线,或缺乏Rab结合的TPC2突变体均无法复制这些结果。烟酸腺嘌呤二核苷酸磷酸(NAADP)诱发的Ca 2 + 的释放也受到Rab结合缺陷型TPC2突变体或Rab抑制剂的损害。这些数据表明,古代TPC复合物在贩运中起着基本作用,与疾病中观察到的溶酶体增生情景有关。

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