Searching the Resource Information Network

Our searching services are busy right now. Please try again later

  • Register
X
Forgot Password

If you have forgotten your password you can enter your email here and get a temporary password sent to your email.

X

Leaving Community

Are you sure you want to leave this community? Leaving the community will revoke any permissions you have been granted in this community.

No
Yes

Succinate induces skeletal muscle fiber remodeling via SUNCR1 signaling.

Tao Wang | Ya-Qiong Xu | Ye-Xian Yuan | Ping-Wen Xu | Cha Zhang | Fan Li | Li-Na Wang | Cong Yin | Lin Zhang | Xing-Cai Cai | Can-Jun Zhu | Jing-Ren Xu | Bing-Qing Liang | Sarah Schaul | Pei-Pei Xie | Dong Yue | Zheng-Rui Liao | Lu-Lu Yu | Lv Luo | Gan Zhou | Jin-Ping Yang | Zhi-Hui He | Man Du | Yu-Ping Zhou | Bai-Chuan Deng | Song-Bo Wang | Ping Gao | Xiao-Tong Zhu | Qian-Yun Xi | Yong-Liang Zhang | Gang Shu | Qing-Yan Jiang
EMBO reports | 2019

The conversion of skeletal muscle fiber from fast twitch to slow-twitch is important for sustained and tonic contractile events, maintenance of energy homeostasis, and the alleviation of fatigue. Skeletal muscle remodeling is effectively induced by endurance or aerobic exercise, which also generates several tricarboxylic acid (TCA) cycle intermediates, including succinate. However, whether succinate regulates muscle fiber-type transitions remains unclear. Here, we found that dietary succinate supplementation increased endurance exercise ability, myosin heavy chain I expression, aerobic enzyme activity, oxygen consumption, and mitochondrial biogenesis in mouse skeletal muscle. By contrast, succinate decreased lactate dehydrogenase activity, lactate production, and myosin heavy chain IIb expression. Further, by using pharmacological or genetic loss-of-function models generated by phospholipase Cβ antagonists, SUNCR1 global knockout, or SUNCR1 gastrocnemius-specific knockdown, we found that the effects of succinate on skeletal muscle fiber-type remodeling are mediated by SUNCR1 and its downstream calcium/NFAT signaling pathway. In summary, our results demonstrate succinate induces transition of skeletal muscle fiber via SUNCR1 signaling pathway. These findings suggest the potential beneficial use of succinate-based compounds in both athletic and sedentary populations.

Pubmed ID: 31318145

Research resources used in this publication

None found

Antibodies used in this publication

None found

Associated grants

  • Agency: National Key Point Research and Invention Program, International
    Id: 2016YFD0501205
  • Agency: NIH HHS, United States
    Id: K99DK107008
  • Agency: NIDDK NIH HHS, United States
    Id: K99 DK107008
  • Agency: National Science Foundation of China, International
    Id: 31790411
  • Agency: NIDDK NIH HHS, United States
    Id: R00 DK107008
  • Agency: Innovation Team Project in University of Guangdong Province, International
    Id: 2017KCXTD002
  • Agency: National Science Foundation of China, International
    Id: 31572480
  • Agency: Guangdong Key areas Research and Development Project, International
    Id: 2019B020218001
  • Agency: National Key Point Research and Invention Program, International
    Id: 2018YFD0500403

Publication data is provided by the National Library of Medicine ® and PubMed ®. Data is retrieved from PubMed ® on a weekly schedule. For terms and conditions see the National Library of Medicine Terms and Conditions.

This is a list of tools and resources that we have found mentioned in this publication.


ATCC (tool)

RRID:SCR_001672

Global nonprofit biological resource center (BRC) and research organization that provides biological products, technical services and educational programs to private industry, government and academic organizations. Its mission is to acquire, authenticate, preserve, develop and distribute biological materials, information, technology, intellectual property and standards for the advancement and application of scientific knowledge. The primary purpose of ATCC is to use its resources and experience as a BRC to become the world leader in standard biological reference materials management, intellectual property resource management and translational research as applied to biomaterial development, standardization and certification. ATCC characterizes cell lines, bacteria, viruses, fungi and protozoa, as well as develops and evaluates assays and techniques for validating research resources and preserving and distributing biological materials to the public and private sector research communities.

View all literature mentions

MetaMorph Microscopy Automation and Image Analysis Software (tool)

RRID:SCR_002368

Software tool for automated microscope acquisition, device control, and image analysis. Used for integrating dissimilar fluorescent microscope hardware and peripherals into a single custom workstation, while providing all the tools needed to perform analysis of acquired images. Offers user friendly application modules for analysis such as cell signaling, cell counting, and protein expression.

View all literature mentions

Promega (tool)

RRID:SCR_006724

An Antibody supplier

View all literature mentions

C57BL/6J (tool)

RRID:IMSR_JAX:000664

Mus musculus with name C57BL/6J from IMSR.

View all literature mentions

C2C12 (tool)

RRID:CVCL_0188

Cell line C2C12 is a Spontaneously immortalized cell line with a species of origin Mus musculus (Mouse)

View all literature mentions