Section for Cell Biology and Physiology, Department of Biology, Faculty of Science, University of Copenhagen, DK-2100 Copenhagen, Denmark.
Department of Pathology, Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.
Cells. 2020 Feb 18;9(2):465. doi: 10.3390/cells9020465.
Increased metabolic acid production and upregulation of net acid extrusion render pH homeostasis profoundly dysregulated in many cancers. Plasma membrane activity of vacuolar H ATPases (V-ATPases) has been implicated in acid extrusion and invasiveness of some cancers, yet often on the basis of unspecific inhibitors. Serving as a membrane anchor directing V-ATPase localization, the a subunit of the V0 domain of the V-ATPase (ATP6V0a1-4) is particularly interesting in this regard. Here, we map the regulation and roles of ATP6V0a3 in migration, invasion, and growth in pancreatic ductal adenocarcinoma (PDAC) cells. a3 mRNA and protein levels were upregulated in PDAC cell lines compared to non-cancer pancreatic epithelial cells. Under control conditions, a3 localization was mainly endo-/lysosomal, and its knockdown had no detectable effect on pH regulation after acid loading. V-ATPase inhibition, but not a3 knockdown, increased HIF-1 expression and decreased proliferation and autophagic flux under both starved and non-starved conditions, and spheroid growth of PDAC cells was also unaffected by a3 knockdown. Strikingly, a3 knockdown increased migration and transwell invasion of Panc-1 and BxPC-3 PDAC cells, and increased gelatin degradation in BxPC-3 cells yet decreased it in Panc-1 cells. We conclude that in these PDAC cells, a3 is upregulated and negatively regulates migration and invasion, likely in part via effects on extracellular matrix degradation.
在许多癌症中,代谢性酸生成增加和净酸外排的上调导致 pH 稳态严重失调。液泡型 H+ATP 酶(V-ATPase)的质膜活性已被牵涉到一些癌症的酸外排和侵袭中,但通常基于非特异性抑制剂。作为一种膜锚定向 V-ATPase 定位的物质,V-ATPase 的 V0 结构域的 a 亚基(ATP6V0a1-4)在这方面特别有趣。在这里,我们绘制了 ATP6V0a3 在胰腺导管腺癌(PDAC)细胞迁移、侵袭和生长中的调节和作用图谱。与非癌胰腺上皮细胞相比,PDAC 细胞系中 a3 mRNA 和蛋白水平上调。在对照条件下,a3 定位主要在内体/溶酶体中,其敲低在酸加载后对 pH 调节没有可检测的影响。V-ATPase 抑制,但不是 a3 敲低,在饥饿和非饥饿条件下增加了 HIF-1 的表达,降低了增殖和自噬通量,并且 PDAC 细胞的球体生长也不受 a3 敲低的影响。引人注目的是,a3 敲低增加了 Panc-1 和 BxPC-3 PDAC 细胞的迁移和 Transwell 侵袭,并增加了 BxPC-3 细胞的明胶降解,但降低了 Panc-1 细胞的明胶降解。我们得出结论,在这些 PDAC 细胞中,a3 上调并负调控迁移和侵袭,可能部分通过对细胞外基质降解的影响。