Proteomics

Dataset Information

0

Mouse muscle proteome for sarcopenia study


ABSTRACT: Aging and lack of exercise are ones of most important attributing causes of muscle loss. To find a novel factor contributing to muscle loss, we performed mass spectrometry-based proteomic analysis in gastrocnemii of unloading and old mice compared to those of exercised and young mice.

INSTRUMENT(S): Q Exactive HF, Q Exactive

ORGANISM(S): Mus Musculus (mouse)

TISSUE(S): Fibroblast

DISEASE(S): Disease Free

SUBMITTER: Kyunggon Kim  

LAB HEAD: Kyunggon Kim

PROVIDER: PXD043715 | Pride | 2024-08-10

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
20170720_Exercise_1st_F01.raw Raw
20170720_Exercise_1st_F02.raw Raw
20170720_Exercise_1st_F03.raw Raw
20170720_Exercise_1st_F04.raw Raw
20170720_Exercise_1st_F05.raw Raw
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Publications

Extracellular C1qbp inhibits myogenesis by suppressing NFATc1.

Kim Jin-Man JM   Kim Ho Kyoung HK   Cho Han Jin HJ   Moon Sung-Ah SA   Kim Yewon Y   Hong Jeong Yeon JY   Lee Seung Hun SH   Kim Kyunggon K   Koh Jung-Min JM  

Scientific reports 20240708 1


Aging and lack of exercise are the most important etiological factors for muscle loss. We hypothesized that new factors that contribute to muscle loss could be identified from ones commonly altered in expression in aged and exercise-limited skeletal muscles. Mouse gastrocnemius muscles were subjected to mass spectrometry-based proteomic analysis. The muscle proteomes of hindlimb-unloaded and aged mice were compared to those of exercised and young mice, respectively. C1qbp expression was signific  ...[more]

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