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Nuclear sphingolipid metabolism.

机译:核鞘脂代谢。

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Nuclear lipid metabolism is implicated in various processes, including transcription, splicing, and DNA repair. Sphingolipids play roles in numerous cellular functions, and an emerging body of literature has identified roles for these lipid mediators in distinct nuclear processes. Different sphingolipid species are localized in various subnuclear domains, including chromatin, the nuclear matrix, and the nuclear envelope, where sphingolipids exert specific regulatory and structural functions. Sphingomyelin, the most abundant nuclear sphingolipid, plays both structural and regulatory roles in chromatin assembly and dynamics in addition to being an integral component of the nuclear matrix. Sphingosine-1-phosphate modulates histone acetylation, sphingosine is a ligand for steroidogenic factor 1, and nuclear accumulation of ceramide has been implicated in apoptosis. Finally, nuclear membrane-associated ganglioside GM1 plays a pivotal role in Ca(2+) homeostasis. This review highlights research on the factors that control nuclear sphingolipid metabolism and summarizes the roles of these lipids in various nuclear processes.
机译:核脂质代谢涉及多种过程,包括转录,剪接和DNA修复。鞘脂在许多细胞功能中发挥作用,并且新兴的文献已经确定了这些脂质介体在不同的核过程中的作用。不同的鞘脂种类位于各种亚核域,包括染色质,核基质和核包膜,其中鞘脂发挥特定的调节和结构功能。鞘磷脂,最丰富的核鞘脂,除了是核基质的组成部分外,在染色质组装和动力学中起结构和调节作用。鞘氨醇-1-磷酸调节组蛋白的乙酰化,鞘氨醇是类固醇生成因子1的配体,神经酰胺的核蓄积与细胞凋亡有关。最后,核膜相关的神经节苷脂GM1在Ca(2+)动态平衡中发挥关键作用。这篇综述重点研究了控制核鞘脂代谢的因素,并总结了这些脂质在各种核过程中的作用。

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