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V-ATPase a 亚基在吞噬作用/内吞作用和自噬中的不同作用。

The different roles of V-ATPase a subunits in phagocytosis/endocytosis and autophagy.

机构信息

School of Biology and Biological Engineering, South China University of Technology, Guangzhou, PR China.

The Innovation Centre of Ministry of Education for Development and Diseases, School of Medicine, South China University of Technology, Guangzhou, China.

出版信息

Autophagy. 2024 Oct;20(10):2297-2313. doi: 10.1080/15548627.2024.2366748. Epub 2024 Jun 25.

Abstract

Microglia are specialized macrophages responsible for the clearance of dead neurons and pathogens by phagocytosis and degradation. The degradation requires phagosome maturation and acidification provided by the vesicular- or vacuolar-type H-translocating adenosine triphosphatase (V-ATPase), which is composed of the cytoplasmic V domain and the membrane-embedded V domain. The V-ATPase a subunit, an integral part of the V domain, has four isoforms in mammals. The functions of different isoforms on phagosome maturation in different cells/species remain controversial. Here we show that mutations of both the V-ATPase Atp6v0a1 and Tcirg1b/Atp6v0a3 subunits lead to the accumulation of phagosomes in zebrafish microglia. However, their mechanisms are different. The V-ATPase Atp6v0a1 subunit is mainly distributed in early and late phagosomes. Defects of this subunit lead to a defective transition from early phagosomes to late phagosomes. In contrast, The V-ATPase Tcirg1b/Atp6v0a3 subunit is primarily located on lysosomes and regulates late phagosome-lysosomal fusion. Defective Tcirg1b/Atp6v0a3, but not Atp6v0a1 subunit leads to reduced acidification and impaired macroautophagy/autophagy in microglia. We further showed that ATP6V0A1/a1 and TCIRG1/a3 subunits in mouse macrophages preferentially located in endosomes and lysosomes, respectively. Blocking these subunits disrupted early-to-late endosome transition and endosome-to-lysosome fusion, respectively. Taken together, our results highlight the essential and conserved roles played by different V-ATPase subunits in multiple steps of phagocytosis and endocytosis across various species.: Apoe: apolipoprotein E; ANXA5/annexin V: annexin A5; ATP6V0A1/a1: ATPase H+-transporting V0 subunit a1; ATP6V0A2/a2: ATPase H+-transporting V0 subunit a2; ATP6V0A4/a4: ATPase H+-transporting V0 subunit a4; dpf: days post-fertilization; EEA1: early endosome antigen 1; HOPS: homotypic fusion and protein sorting; LAMP1: lysosomal associated membrane protein 1; Lcp1: lymphocyte cytosolic protein 1 (L-plastin); Map1lc3/Lc3: microtubule-associated protein 1 light chain 3; NR: neutral red; PBS: phosphate-buffered saline; PtdIns: phosphatidylinositol; PtdIns3P: phosphatidylinositol-3-phosphate; PtdIns(3,5)P2: phosphatidylinositol (3,5)-bisphosphate; RAB4: RAB4, member RAS oncogene family; RAB5: RAB5, member RAS oncogene family; RAB7: RAB7, member RAS oncogene family; TCIRG1/Atp6v0a3/a3: T cell immune regulator 1, ATPase H+-transporting V0 subunit a3; V-ATPase: vacuolar-type H+-translocating adenosine triphosphatase; Xla.Tubb2b/NBT: tubulin beta 2B class IIb.

摘要

小胶质细胞是专门的巨噬细胞,通过吞噬作用和降解来清除死亡的神经元和病原体。降解需要吞噬体成熟和由囊泡或液泡型 H 转运三磷酸腺苷酶(V-ATPase)提供的酸化,V-ATPase 由细胞质 V 结构域和膜嵌入 V 结构域组成。V-ATPase 的 a 亚基是 V 结构域的一个组成部分,在哺乳动物中有四个同工型。不同同工型在不同细胞/物种中的吞噬体成熟中的功能仍然存在争议。在这里,我们表明 V-ATPase Atp6v0a1 和 Tcirg1b/Atp6v0a3 亚基的突变导致斑马鱼小胶质细胞中吞噬体的积累。然而,它们的机制是不同的。V-ATPase Atp6v0a1 亚基主要分布在早期和晚期吞噬体中。该亚基的缺陷导致从早期吞噬体向晚期吞噬体的转变有缺陷。相比之下,V-ATPase Tcirg1b/Atp6v0a3 亚基主要位于溶酶体上,并调节晚期吞噬体-溶酶体融合。缺陷型 Tcirg1b/Atp6v0a3,但不是 Atp6v0a1 亚基导致小胶质细胞中的酸化和巨自噬/自噬受损。我们进一步表明,小鼠巨噬细胞中的 ATP6V0A1/a1 和 TCIRG1/a3 亚基分别优先位于内体和溶酶体中。阻断这些亚基分别破坏了早期到晚期内体的转变和内体到溶酶体的融合。总之,我们的结果强调了不同 V-ATPase 亚基在多种物种的吞噬作用和胞吞作用的多个步骤中发挥的重要和保守作用。Apoe:载脂蛋白 E;ANXA5/annexin V:膜联蛋白 A5;ATP6V0A1/a1:ATP 酶 H+-转运 V0 亚基 a1;ATP6V0A2/a2:ATP 酶 H+-转运 V0 亚基 a2;ATP6V0A4/a4:ATP 酶 H+-转运 V0 亚基 a4;dpf:受精后天数;EEA1:早期内体抗原 1;HOPS:同源融合和蛋白分选;LAMP1:溶酶体相关膜蛋白 1;Lcp1:淋巴细胞胞质蛋白 1(L- plastin);Map1lc3/Lc3:微管相关蛋白 1 轻链 3;NR:中性红;PBS:磷酸盐缓冲盐水;PtdIns:磷脂酰肌醇;PtdIns3P:磷脂酰肌醇-3-磷酸;PtdIns(3,5)P2:磷脂酰肌醇(3,5)-双磷酸;RAB4:RAB4,RAS 癌基因家族成员;RAB5:RAB5,RAS 癌基因家族成员;RAB7:RAB7,RAS 癌基因家族成员;TCIRG1/Atp6v0a3/a3:T 细胞免疫调节剂 1,ATP 酶 H+-转运 V0 亚基 a3;V-ATPase:液泡型 H+-转运三磷酸腺苷酶;Xla.Tubb2b/NBT:微管蛋白 beta 2B 类 IIb。

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