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mTORC1‐PGC1 axis regulates mitochondrial remodeling during reprogramming.

Authors :
Wang, Lulu
Xu, Xueting
Jiang, Che
Ma, Gang
Huang, Yinghua
Zhang, Hui
Lai, Yiwei
Wang, Ming
Ahmed, Tanveer
Lin, Runxia
Guo, Wenjing
Luo, Zhiwei
Li, Wenjuan
Zhang, Meng
Ward, Carl
Qian, Minxian
Liu, Baohua
Esteban, Miguel A.
Qin, Baoming
Source :
FEBS Journal; Jan2020, Vol. 287 Issue 1, p108-121, 14p
Publication Year :
2020

Abstract

Metabolic reprogramming, hallmarked by enhanced glycolysis and reduced mitochondrial activity, is a key event in the early phase of somatic cell reprogramming. Although extensive work has been conducted to identify the mechanisms of mitochondrial remodeling in reprogramming, many questions remain. In this regard, different laboratories have proposed a role in this process for either canonical (ATG5‐dependent) autophagy‐mediated mitochondrial degradation (mitophagy), noncanonical (ULK1‐dependent, ATG5‐independent) mitophagy, mitochondrial fission or reduced biogenesis due to mTORC1 suppression. Clarifying these discrepancies is important for providing a comprehensive picture of metabolic changes in reprogramming. Yet, the comparison among these studies is difficult because they use different reprogramming conditions and mitophagy detection/quantification methods. Here, we have systematically explored mitochondrial remodeling in reprogramming using different culture media and reprogramming factor cocktails, together with appropriate quantification methods and thorough statistical analysis. Our experiments show lack of evidence for mitophagy in mitochondrial remodeling in reprogramming, and further confirm that the suppression of the mTORC1‐PGC1 pathway drives this process. Our work helps to clarify the complex interplay between metabolic changes and nutrient sensing pathways in reprogramming, which may also shed light on other contexts such as development, aging and cancer. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
1742464X
Volume :
287
Issue :
1
Database :
Complementary Index
Journal :
FEBS Journal
Publication Type :
Academic Journal
Accession number :
141075574
Full Text :
https://doi.org/10.1111/febs.15024