期刊论文详细信息
Frontiers in Pediatrics
Mechanotransduction as an Adaptation to Gravity
Tanbir Najrana1 
关键词: gravity;    earth (planet);    mechanotranduction;    cytoskeleton;    tensegrity;    microgravity;    genomics;    epigenetic;   
DOI  :  10.3389/fped.2016.00140
学科分类:儿科学
来源: Frontiers
PDF
【 摘 要 】

Gravity has played a critical role in the development of terrestrial life. A key event in evolution has been the development of mechanisms to sense and transduce gravitational force into biological signals. The objective of this manuscript is to review how living organisms on Earth use mechanotransduction as an adaptation to gravity. Certain cells have evolved specialized structures, such as otoliths in hair cells of the inner ear and statoliths in plants, to respond directly to the force of gravity. By conducting studies in the reduced gravity of spaceflight (microgravity) or simulating microgravity in the laboratory, we have gained insights into how gravity might have changed life on Earth. We review how microgravity affects prokaryotic and eukaryotic cells at the cellular and molecular levels. Genomic studies in yeast have identified changes in genes involved in budding, cell polarity, and cell separation regulated by Ras, PI3K, and TOR signaling pathways. Moreover, transcriptomic analysis of late pregnant rats have revealed that microgravity affects genes that regulate circadian clocks, activate mechanotransduction pathways, and induce changes in immune response, metabolism, and cells proliferation. Importantly, these studies identified genes that modify chromatin structure and methylation, suggesting that long-term adaptation to gravity may be mediated by epigenetic modifications. Given that gravity represents a modification in mechanical stresses encounter by the cells, the tensegrity model of cytoskeletal architecture provides an excellent paradigm to explain how changes in the balance of forces, which are transmitted across transmembrane receptors and cytoskeleton, can influence intracellular signaling pathways and gene expression.

【 授权许可】

CC BY   

【 预 览 】
附件列表
Files Size Format View
RO201904024047876ZK.pdf 215KB PDF download
  文献评价指标  
  下载次数:11次 浏览次数:6次