Phosphoinositide signaling in the nucleus: Impacts on chromatin and transcription regulation

IF 2.4 4区 生物学 Q4 CELL BIOLOGY
Nesrine Hifdi, Mathilde Vaucourt, Karim Hnia, Ganna Panasyuk, Marie Vandromme
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引用次数: 0

Abstract

Phosphoinositides also called Polyphosphoinositides (PPIns) are small lipid messengers with established key roles in organelle trafficking and cell signaling in response to physiological and environmental inputs. Besides their well-described functions in the cytoplasm, accumulating evidences pointed to PPIns involvement in transcription and chromatin regulation. Through the description of previous and recent advances of PPIns implication in transcription, this review highlights key discoveries on how PPIns modulate nuclear factors activity and might impact chromatin to modify gene expression. Finally, we discuss how PPIns nuclear and cytosolic metabolisms work jointly in orchestrating key transduction cascades that end in the nucleus to modulate gene expression.

Abstract Image

核内磷酸肌肽信号传导:对染色质和转录调控的影响。
磷酸肌苷也被称为多磷酸肌苷(PPIns),是一种小的脂质信使,在响应生理和环境输入的细胞器运输和细胞信号传导中起着关键作用。除了在细胞质中的功能,越来越多的证据表明PPIns参与转录和染色质调节。本文通过对PPIns在转录中的作用的既往和近期进展的描述,重点介绍了PPIns如何调节核因子活性并可能影响染色质以修饰基因表达的关键发现。最后,我们讨论了PPIns的核代谢和胞质代谢如何共同协调关键的转导级联,最终在细胞核中调节基因表达。
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来源期刊
Biology of the Cell
Biology of the Cell 生物-细胞生物学
CiteScore
5.30
自引率
0.00%
发文量
53
审稿时长
>12 weeks
期刊介绍: The journal publishes original research articles and reviews on all aspects of cellular, molecular and structural biology, developmental biology, cell physiology and evolution. It will publish articles or reviews contributing to the understanding of the elementary biochemical and biophysical principles of live matter organization from the molecular, cellular and tissues scales and organisms. This includes contributions directed towards understanding biochemical and biophysical mechanisms, structure-function relationships with respect to basic cell and tissue functions, development, development/evolution relationship, morphogenesis, stem cell biology, cell biology of disease, plant cell biology, as well as contributions directed toward understanding integrated processes at the organelles, cell and tissue levels. Contributions using approaches such as high resolution imaging, live imaging, quantitative cell biology and integrated biology; as well as those using innovative genetic and epigenetic technologies, ex-vivo tissue engineering, cellular, tissue and integrated functional analysis, and quantitative biology and modeling to demonstrate original biological principles are encouraged.
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