Hamann Bree L, Blind Raymond D
Division of Diabetes Endocrinology and Metabolism, Department of Medicine, Vanderbilt University School of Medicine, Nashville, Tennessee.
Departments of Medicine, Biochemistry and Pharmacology, Division of Diabetes Endocrinology and Metabolism, The Vanderbilt Diabetes Research and Training Center and the Vanderbilt-Ingram Cancer Center, Nashville, Tennessee.
J Cell Physiol. 2018 Jan;233(1):107-123. doi: 10.1002/jcp.25886. Epub 2017 May 3.
Phospholipid signaling has clear connections to a wide array of cellular processes, particularly in gene expression and in controlling the chromatin biology of cells. However, most of the work elucidating how phospholipid signaling pathways contribute to cellular physiology have studied cytoplasmic membranes, while relatively little attention has been paid to the role of phospholipid signaling in the nucleus. Recent work from several labs has shown that nuclear phospholipid signaling can have important roles that are specific to this cellular compartment. This review focuses on the nuclear phospholipid functions and the activities of phospholipid signaling enzymes that regulate metazoan chromatin and gene expression. In particular, we highlight the roles that nuclear phosphoinositides play in several nuclear-driven physiological processes, such as differentiation, proliferation, and gene expression. Taken together, the recent discovery of several specifically nuclear phospholipid functions could have dramatic impact on our understanding of the fundamental mechanisms that enable tight control of cellular physiology.
磷脂信号传导与广泛的细胞过程有着明确的联系,特别是在基因表达和控制细胞的染色质生物学方面。然而,大多数阐明磷脂信号通路如何促进细胞生理功能的研究都集中在细胞质膜上,而对磷脂信号在细胞核中的作用关注相对较少。几个实验室最近的研究表明,核磷脂信号传导可能具有特定于该细胞区室的重要作用。本综述聚焦于核磷脂功能以及调节后生动物染色质和基因表达的磷脂信号酶的活性。特别是,我们强调了核磷酸肌醇在几种由核驱动的生理过程中所起的作用,如分化、增殖和基因表达。综上所述,最近发现的几种特定的核磷脂功能可能会对我们理解实现对细胞生理进行严格控制的基本机制产生巨大影响。