丝裂原激活的蛋白激酶信号对成骨细胞谱系的控制。

Current molecular biology reports Pub Date : 2017-06-01 Epub Date: 2017-04-25 DOI:10.1007/s40610-017-0059-5
Renny T Franceschi, Chunxi Ge
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引用次数: 37

摘要

综述目的:本综述将及时评估MAP激酶在骨发育和体内平衡中的作用,特别强调成骨细胞谱系的转录控制。最近的研究发现:ERK和p38 MAP激酶作为细胞外基质、机械负荷、TGF-β、bmp和FGF2启动信号的转导器。MAPK信号也可能影响和/或与其他重要通路如WNT和HIPPO相互作用。ERK和p38 MAP激酶通路磷酸化特异性成骨转录因子,包括RUNX2、Osterix、ATF4和DLX5。对于RUNX2,特定丝氨酸残基的磷酸化启动染色质的表观遗传变化,这是去浓缩和增加转录所必需的。MAPK还通过磷酸化和抑制PPARγ抑制骨髓脂肪形成,这可能解释了众所周知的骨骼负荷减少和骨髓脂肪积累之间的关系。摘要:MAPKs将细胞外环境的信号转导到细胞核,使骨细胞能够对激素/生长因子信号和机械负荷的变化做出反应,从而优化骨结构以满足身体的生理和机械需求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Control of the Osteoblast Lineage by Mitogen-Activated Protein Kinase Signaling.

Control of the Osteoblast Lineage by Mitogen-Activated Protein Kinase Signaling.

Purpose of the review: This review will provide a timely assessment of MAP kinase actions in bone development and homeostasis with particular emphasis on transcriptional control of the osteoblast lineage.

Recent findings: ERK and p38 MAP kinases function as transducers of signals initiated by the extracellular matrix, mechanical loading, TGF-β, BMPs and FGF2. MAPK signals may also affect and/or interact with other important pathways such as WNT and HIPPO. ERK and p38 MAP kinase pathways phosphorylate specific osteogenic transcription factors including RUNX2, Osterix, ATF4 and DLX5. For RUNX2, phosphorylation at specific serine residues initiates epigenetic changes in chromatin necessary for decondensation and increased transcription. MAPK also suppresses marrow adipogenesis by phosphorylating and inhibiting PPARγ, which may explain the well-known relationship between reduced skeletal loading and marrow fat accumulation.

Summary: MAPKs transduce signals from the extracellular environment to the nucleus allowing bone cells to respond to changes in hormonal/growth factor signaling and mechanical loading thereby optimizing bone structure to meet physiological and mechanical needs of the body.

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