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TPC1 Has Two Variant Isoforms and Their Removal Has Different Effects on Endo-Lysosomal Functions Compared to Loss of TPC2

机译:TPC1有两个变异的同工型与TPC2的丢失相比去除它们对内溶酶体功能的影响不同

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摘要

Organelle ion homeostasis within the endo-lysosomal system is critical for physiological functions. Two-pore channels (TPCs) are cation channels that reside in endo-lysosomal organelles, and overexpression results in endo-lysosomal trafficking defects. However, the impact of a lack of TPC expression on endo-lysosomal trafficking is unknown. Here, we characterize Tpcn1 expression in two transgenic mouse lines (Tpcn1XG716 and Tpcn1T159) and show expression of a novel evolutionarily conserved Tpcn1B transcript from an alternative promoter, raising important questions regarding the status of Tpcn1 expression in mice recently described to be Tpcn1 knockouts. We show that the transgenic Tpcn1T159 line lacks expression of both Tpcn1 isoforms in all tissues analyzed. Using mouse embryonic fibroblasts (MEFs) from Tpcn1−/− and Tpcn2−/− animals, we show that a lack of Tpcn1 or Tpcn2 expression has no significant impact on resting endo-lysosomal pH or morphology. However, differential effects in endo-lysosomal function were observed upon the loss of Tpcn1 or Tpcn2 expression; thus, while Tpcn1−/− MEFs have impaired trafficking of cholera toxin from the plasma membrane to the Golgi apparatus, Tpcn2−/− MEFs show slower kinetics of ligand-induced platelet-derived growth factor receptor β (PDGFRβ) degradation, which is dependent on trafficking to lysosomes. Our findings indicate that TPC1 and TPC2 have important but distinct roles in the endo-lysosomal pathway.
机译:溶酶体系统内的细胞器离子稳态对生理功能至关重要。两孔通道(TPC)是驻留在内溶酶体细胞器中的阳离子通道,过表达会导致内溶酶体运输缺陷。但是,缺乏TPC表达对溶酶体运输的影响尚不清楚。在这里,我们表征了Tpcn1在两个转基因小鼠品系(Tpcn1 XG716 和Tpcn1 T159 )中的表达,并显示了另一种启动子在进化上保守的Tpcn1B转录本的表达,提出了重要的问题关于最近描述为Tpcn1基因敲除的小鼠中Tpcn1表达状态的问题。我们表明,转基因的Tpcn1 T159 品系在所有分析的组织中都缺少两种Tpcn1同工型的表达。使用来自Tpcn1 -/-和Tpcn2 -// 动物的小鼠胚胎成纤维细胞(MEF),我们显示缺乏Tpcn1或Tpcn2表达对静息内膜没有显着影响-溶酶体pH或形态。然而,在Tpcn1或Tpcn2表达缺失时,观察到了溶酶体功能的差异。因此,尽管Tpcn1 -/- MEF抑制了霍乱毒素从质膜向高尔基体的运输,但Tpcn2 -/- MEF却显示出配体诱导的血小板动力学较慢。衍生的生长因子受体β(PDGFRβ)降解,这取决于向溶酶体的运输。我们的发现表明,TPC1和TPC2在内溶酶体途径中具有重要但截然不同的作用。

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