鞘脂合成在细胞分裂过程中维持核膜的完整性和基因组的稳定性。

IF 7.4 1区 生物学 Q1 CELL BIOLOGY
Sunyoung Hwang,William Russo,Jaylah Cormier,Jillian Johnson,Sara Martin,Marica Rosaria Ippolito,Sara Cordone,Rui Li,Lihua Julie Zhu,Stefano Santaguida,Eduardo M Torres
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引用次数: 0

摘要

在细胞分裂过程中,脂质合成必须精确调节以支持膜生长和细胞器的生物发生,但对于这一过程如何与其他细胞周期事件协调知之甚少。在这里,我们发现在细胞周期的S期和G2期鞘脂的重新合成对于增加核膜是必不可少的。事实上,丝氨酸棕榈酰基转移酶(SPT)的产物,长链碱基,定位于细胞核,是酵母和人类细胞核膜的组成部分。重要的是,抑制SPT不能诱导细胞周期阻滞,导致酵母细胞核膜塌陷和活力丧失。在人类细胞中,这导致核形态异常和基因组不稳定,核泡、微核、后期桥和多极有丝分裂的发生率增加就是证据。这些结果表明,低鞘脂可用性下的细胞分裂失调可以驱动几种与疾病相关的表型,包括异常的核形态和基因组不稳定。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sphingolipid synthesis maintains nuclear membrane integrity and genome stability during cell division.
Lipid synthesis must be precisely regulated to support membrane growth and organelle biogenesis during cell division, yet little is known about how this process is coordinated with other cell cycle events. Here, we show that de novo synthesis of sphingolipids during the S and G2 phases of the cell cycle is essential to increasing nuclear membranes. Indeed, the products of serine palmitoyltransferase (SPT), long-chain bases, localize to the nucleus and are integral components of nuclear membranes in yeast and human cells. Importantly, inhibition of SPT fails to induce cell cycle arrest, causing nuclear membrane collapse and loss of viability in yeast cells. In human cells, this causes abnormal nuclear morphology and genomic instability, evidenced by the increased incidence of nuclear blebs, micronuclei, anaphase bridges, and multipolar mitosis. These results indicate that dysregulated cell division under low sphingolipid availability can drive several disease-associated phenotypes, including aberrant nuclear morphologies and genomic instability.
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来源期刊
Journal of Cell Biology
Journal of Cell Biology 生物-细胞生物学
CiteScore
12.60
自引率
2.60%
发文量
213
审稿时长
1 months
期刊介绍: The Journal of Cell Biology (JCB) is a comprehensive journal dedicated to publishing original discoveries across all realms of cell biology. We invite papers presenting novel cellular or molecular advancements in various domains of basic cell biology, along with applied cell biology research in diverse systems such as immunology, neurobiology, metabolism, virology, developmental biology, and plant biology. We enthusiastically welcome submissions showcasing significant findings of interest to cell biologists, irrespective of the experimental approach.
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