Plasma proteomic changes in response to exercise training are associated with cardiorespiratory fitness adaptations — Jeremy Robbins (2023) | RDL Network
Plasma proteomic changes in response to exercise training are associated with cardiorespiratory fitness adaptations
JCI Insight 8(7)
Article 2023 English
Authors
JR
Jeremy Robbins
PR
Prashant Rao
SD
Shuliang Deng
Abstract
1 min read
Regular exercise leads to widespread salutary effects, and there is increasing recognition that exercise-stimulated circulating proteins can impart health benefits. Despite this, limited data exist regarding the plasma proteomic changes that occur in response to regular exercise. Here, we perform large-scale plasma proteomic profiling in 654 healthy human study participants before and after a supervised, 20-week endurance exercise training intervention. We identify hundreds of circulating proteins that are modulated, many of which are known to be secreted. We highlight proteins involved in angiogenesis, iron homeostasis, and the extracellular matrix, many of which are novel, including training-induced increases in fibroblast activation protein (FAP), a membrane-bound and circulating protein relevant in body-composition homeostasis. We relate protein changes to training-induced maximal oxygen uptake adaptations and validate our top findings in an external exercise cohort. Furthermore, we show that FAP is positively associated with survival in 3 separate, population-based cohorts.
Jeremy Robbins, Prashant Rao, Michael Mi, Michelle J. Keyes, Shuliang Deng, Daniel H. Katz, Pierre M. Jean Beltran, Usman A. Tahir, Jacob L. Barber, Laurie Farrell, Clary B. Clish, Mark A. Sarzynski, Claude Bouchard, Robert E. Gerszten
Jacob L. Barber, Guoshuai Cai, Jeremy Robbins, Prashant Rao, Michael Mi, Sujoy Ghosh, Clary B. Clish, Daniel H. Katz, Robert E. Gerszten, Claude Bouchard, Mark A. Sarzynski
Jacob L. Barber, Guoshuai Cai, Jeremy Robbins, Prashant Rao, Michael Mi, Sujoy Ghosh, Clary B. Clish, Daniel H. Katz, Robert E. Gerszten, Claude Bouchard, Mark A. Sarzynski
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