Cohen Behor Eleazar
Universidad Central de Venezuela, Caracas, Venezuela.
J Membr Biol. 2025 Feb;258(1):1-13. doi: 10.1007/s00232-024-00328-x. Epub 2024 Oct 31.
Cell swelling is known to be involved in various stages of the growth of plant cells and microorganisms but in mammalian cells how crucial a swollen state is for determining the fate of the cellular proliferation remains unclear. Recent evidence has increased our understanding of how the loss of the cell surface interactions with the extracellular matrix at early mitosis decreases the membrane tension triggering curvature changes in the plasma membrane and the activation of the sodium/hydrogen (Na +/H +) exchanger (NHE1) that drives osmotic swelling. Such a swollen state is temporary, but it is critical to alter essential membrane biophysical parameters that are required to activate Ca2 + channels and modulate the opening of K + channels involved in setting the membrane potential. A decreased membrane potential across the mitotic cell membrane enhances the clustering of Ras proteins involved in the Ca2 + and cytoskeleton-driven events that lead to cell rounding. Changes in the external mechanical and osmotic forces also have an impact on the lipid composition of the plasma membrane during mitosis.
已知细胞肿胀参与植物细胞和微生物生长的各个阶段,但在哺乳动物细胞中,肿胀状态对于决定细胞增殖命运的关键程度仍不清楚。最近的证据使我们进一步了解到,在有丝分裂早期,细胞表面与细胞外基质的相互作用丧失如何降低膜张力,从而引发质膜的曲率变化以及驱动渗透性肿胀的钠/氢(Na +/H +)交换体(NHE1)的激活。这种肿胀状态是暂时的,但对于改变激活Ca2 + 通道和调节参与设定膜电位的K + 通道开放所需的基本膜生物物理参数至关重要。有丝分裂细胞膜上膜电位的降低会增强参与Ca2 + 和细胞骨架驱动事件的Ras蛋白的聚集,这些事件会导致细胞变圆。外部机械力和渗透力的变化在有丝分裂期间也会对质膜的脂质组成产生影响。