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</script>Human Slow Troponin T (TNNT1) Pre-mRNA Alternative Splicing Is an Indicator of Skeletal Muscle Response to Resistance Exercise in Older Adults
Human Slow Troponin T (TNNT1) Pre-mRNA Alternative Splicing Is an Indicator of Skeletal Muscle Response to Resistance Exercise in Older Adults
Slow skeletal muscle troponin T (TNNT1) pre-messenger RNA alternative splicing (AS) provides transcript diversity and increases the variety of proteins the gene encodes. Here, we identified three major TNNT1 splicing patterns (AS1-3), quantified their expression in the vastus lateralis muscle of older adults, and demonstrated that resistance training modifies their relative abundance; specifically, upregulating AS1 and downregulating AS2 and AS3. In addition, abundance of TNNT1 AS2 correlated negatively with single muscle fiber-specific force after resistance training, while abundance of AS1 correlated negatively with V max. We propose that TNNT1 AS1, AS2 and the AS1/AS2 ratio are potential quantitative biomarkers of skeletal muscle adaptation to resistance training in older adults, and that their profile reflects enhanced single fiber muscle force in the absence of significant increases in fiber cross-sectional area.
- Wake Forest University United States
- Wayne State College United States
- Wayne State University United States
- Kyungsung University Korea (Republic of)
Aged, 80 and over, Male, Aging, Exercise Tolerance, Biopsy, RNA Splicing, Adaptation, Physiological, Polymerase Chain Reaction, Gene Expression Regulation, Troponin T, Humans, Female, RNA, Messenger, Muscle, Skeletal, Aged, Follow-Up Studies
Aged, 80 and over, Male, Aging, Exercise Tolerance, Biopsy, RNA Splicing, Adaptation, Physiological, Polymerase Chain Reaction, Gene Expression Regulation, Troponin T, Humans, Female, RNA, Messenger, Muscle, Skeletal, Aged, Follow-Up Studies
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