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原发性培养的髓袢升支细胞迁移诱导 AQP3 和 AQP4 的意外定位。

Unexpected localization of AQP3 and AQP4 induced by migration of primary cultured IMCD cells.

机构信息

Department of Internal Medicine D, Experimental Nephrology, Münster, Germany.

Biomedizinisches Technologiezentrum der Medizinischen Fakultät Münster, Münster, Germany.

出版信息

Sci Rep. 2021 Jun 7;11(1):11930. doi: 10.1038/s41598-021-91369-y.

Abstract

Aquaporin-2-4 (AQP) are expressed in the principal cells of the renal collecting duct (CD). Beside their role in water transport across membranes, several studies showed that AQPs can influence the migration of cells. It is unknown whether this also applies for renal CD cells. Another fact is that the expression of these AQPs is highly modulated by the external osmolality. Here we analyzed the localization of AQP2-4 in primary cultured renal inner medullary CD (IMCD) cells and how osmolality influences the migration behavior of these cells. The primary IMCD cells showed a collective migration behavior and there were no differences in the migration speed between cells cultivated either at 300 or 600 mosmol/kg. Acute increase from 300 to 600 mosmol/kg led to a marked reduction and vice versa an acute decrease from 600 to 300 mosmol/kg to a marked increase in migration speed. Interestingly, none of the analyzed AQPs were localized at the leading edge. While AQP3 disappeared within the first 2-3 rows of cells, AQP4 was enriched at the rear end. Further analysis indicated that migration induced lysosomal degradation of AQP3. This could be prevented by activation of the protein kinase A, inducing localization of AQP3 and AQP2 at the leading edge and increasing the migration speed.

摘要

水通道蛋白-2-4 (AQP) 在肾脏集合管的主细胞中表达。除了在跨膜运输水方面的作用外,几项研究表明 AQPs 可以影响细胞的迁移。目前尚不清楚这是否也适用于肾脏 CD 细胞。另一个事实是,这些 AQPs 的表达受外部渗透压的高度调节。在这里,我们分析了原代培养的肾脏髓质内集合管 (IMCD) 细胞中 AQP2-4 的定位,以及渗透压如何影响这些细胞的迁移行为。原代 IMCD 细胞表现出集体迁移行为,在 300 或 600 mosmol/kg 培养的细胞之间,迁移速度没有差异。急性从 300 增加到 600 mosmol/kg 导致迁移速度明显降低,反之亦然,急性从 600 降低到 300 mosmol/kg 导致迁移速度明显增加。有趣的是,没有一个分析的 AQPs 定位于前缘。虽然 AQP3 在最初的 2-3 行细胞中消失,但 AQP4 在后端富集。进一步的分析表明,迁移诱导了 AQP3 的溶酶体降解。通过激活蛋白激酶 A 可以防止这种情况发生,蛋白激酶 A 诱导 AQP3 和 AQP2 定位在前缘,并增加迁移速度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e934/8185088/94e771391731/41598_2021_91369_Fig1_HTML.jpg

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