Prieto Javier, Torres Josema
Departamento Biología Celular, Biología Funcional y Antropología Física, University of Valencia, 46100 Burjassot, Spain.
Instituto de Investigación Sanitaria (INCLIVA), 46010 Valencia, Spain.
Stem Cells Int. 2017;2017:8073721. doi: 10.1155/2017/8073721. Epub 2017 Apr 17.
Somatic cells can be reprogrammed into a pluripotent cellular state similar to that of embryonic stem cells. Given the significant physiological differences between the somatic and pluripotent cells, cell reprogramming is associated with a profound reorganization of the somatic phenotype at all levels. The remodeling of mitochondrial morphology is one of these dramatic changes that somatic cells have to undertake during cell reprogramming. Somatic cells transform their tubular and interconnected mitochondrial network to the fragmented and isolated organelles found in pluripotent stem cells early during cell reprogramming. Accordingly, mitochondrial fission, the process whereby the mitochondria divide, plays an important role in the cell reprogramming process. Here, we present an overview of the importance of mitochondrial fission in both cell reprogramming and cellular transformation.
体细胞可被重编程为类似于胚胎干细胞的多能细胞状态。鉴于体细胞和多能细胞之间存在显著的生理差异,细胞重编程与体细胞表型在各个层面的深刻重组相关。线粒体形态的重塑是体细胞在细胞重编程过程中必须经历的显著变化之一。在细胞重编程早期,体细胞会将其管状且相互连接的线粒体网络转变为多能干细胞中发现的碎片化和孤立的细胞器。因此,线粒体分裂,即线粒体进行分裂的过程,在细胞重编程过程中起着重要作用。在此,我们概述线粒体分裂在细胞重编程和细胞转化中的重要性。