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溶酶体质子泵 V0 大亚基 a3 胞质结构域在破骨细胞 Rab7 相互作用和分泌溶酶体运输中的作用。

Role of the Cytosolic Domain of the a3 Subunit of V-ATPase in the Interaction with Rab7 and Secretory Lysosome Trafficking in Osteoclasts.

机构信息

Division of Biochemistry, School of Pharmacy, Iwate Medical University.

Center for Basic Medical Research, International University of Health and Welfare.

出版信息

Biol Pharm Bull. 2024;47(1):339-344. doi: 10.1248/bpb.b23-00833.

Abstract

We previously reported that the a3 subunit of proton-pumping vacuolar-type ATPase (V-ATPase) interacts with Rab7 and its guanine nucleotide exchange factor, Mon1a-Ccz1, and recruits them to secretory lysosomes in osteoclasts, which is essential for anterograde trafficking of secretory lysosomes. The a3 subunit interacts with Mon1a-Ccz1 through its cytosolic N-terminal domain. Here, we examined the roles of this domain in the interaction with Rab7 and trafficking of secretory lysosomes. Immunoprecipitation experiments showed that a3 interacted with Rab7 through its cytosolic domain, similar to the interaction with Mon1a-Ccz1. We connected this domain with a lysosome localization signal and expressed it in a3-knockout (a3KO) osteoclasts. Although the signal connected to the cytosolic domain was mainly detected in lysosomes, impaired lysosome trafficking in a3KO osteoclasts was not rescued. These results indicate that the cytosolic domain of a3 can interact with trafficking regulators, but is insufficient to induce secretory lysosome trafficking. The C-terminal domain of a3 and other subunits of V-ATPase are likely required to form a fully functional complex for secretory lysosome trafficking.

摘要

我们之前曾报道质子泵液泡型 ATP 酶 (V-ATPase) 的 a3 亚基与 Rab7 及其鸟嘌呤核苷酸交换因子 Mon1a-Ccz1 相互作用,并将它们募集到破骨细胞的分泌溶酶体中,这对于分泌溶酶体的顺行运输是必不可少的。a3 亚基通过其胞质 N 端结构域与 Mon1a-Ccz1 相互作用。在这里,我们研究了该结构域在与 Rab7 相互作用和分泌溶酶体运输中的作用。免疫沉淀实验表明,a3 通过其胞质结构域与 Rab7 相互作用,类似于与 Mon1a-Ccz1 的相互作用。我们将这个结构域与一个溶酶体定位信号相连,并在 a3 敲除 (a3KO) 破骨细胞中表达。尽管与胞质结构域相连的信号主要在溶酶体中被检测到,但 a3KO 破骨细胞中的溶酶体运输受损并未得到挽救。这些结果表明,a3 的胞质结构域可以与运输调节剂相互作用,但不足以诱导分泌溶酶体运输。a3 的 C 端结构域和 V-ATPase 的其他亚基可能需要形成一个功能齐全的复合物,以进行分泌溶酶体运输。

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