mTORC2通过促进鞘磷脂运输抑制低渗透应激诱导的细胞死亡。

The Journal of Cell Biology Pub Date : 2022-04-04 Epub Date: 2022-03-23 DOI:10.1083/jcb.202106160
Yumiko Ono, Kenji Matsuzawa, Junichi Ikenouchi
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引用次数: 0

摘要

上皮细胞不断受到渗透胁迫。在低渗透环境中,水分子涌入细胞会增加质膜的张力,因为它会迅速膨胀。因此,质膜必须提供膜脂,因为膨胀超过其弹性极限将导致细胞破裂。然而,维持恒定质膜张力的分子机制尚不清楚。在这项研究中,我们发现当上皮细胞暴露于低渗透胁迫时,顶膜选择性地膨胀。这需要激活mTORC2,从而增强含有鞘磷脂的分泌囊泡的运输,鞘磷脂是根尖膜的主要脂质。我们进一步发现mTORC2-Rab35轴通过上调PI(4,5)P2代谢,促进肌动蛋白皮质的降解,从而促进装载鞘磷脂的囊泡的顶端系结,从而缓解质膜张力,从而在抵御低压应激中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

mTORC2 suppresses cell death induced by hypo-osmotic stress by promoting sphingomyelin transport.

mTORC2 suppresses cell death induced by hypo-osmotic stress by promoting sphingomyelin transport.

mTORC2 suppresses cell death induced by hypo-osmotic stress by promoting sphingomyelin transport.

mTORC2 suppresses cell death induced by hypo-osmotic stress by promoting sphingomyelin transport.

Epithelial cells are constantly exposed to osmotic stress. The influx of water molecules into the cell in a hypo-osmotic environment increases plasma membrane tension as it rapidly expands. Therefore, the plasma membrane must be supplied with membrane lipids since expansion beyond its elastic limit will cause the cell to rupture. However, the molecular mechanism to maintain a constant plasma membrane tension is not known. In this study, we found that the apical membrane selectively expands when epithelial cells are exposed to hypo-osmotic stress. This requires the activation of mTORC2, which enhances the transport of secretory vesicles containing sphingomyelin, the major lipid of the apical membrane. We further show that the mTORC2-Rab35 axis plays an essential role in the defense against hypotonic stress by promoting the degradation of the actin cortex through the up-regulation of PI(4,5)P2 metabolism, which facilitates the apical tethering of sphingomyelin-loaded vesicles to relieve plasma membrane tension.

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