Genome-Wide Association Study Identifies CDKN1A as a Novel Locus Associated with Muscle Fiber Composition

Author:

Semenova Ekaterina A.,Zempo HirofumiORCID,Miyamoto-Mikami Eri,Kumagai Hiroshi,Larin Andrey K.,Sultanov Rinat I.,Babalyan Konstantin A.,Zhelankin Andrey V.ORCID,Tobina Takuro,Shiose KeisukeORCID,Kakigi Ryo,Tsuzuki Takamasa,Ichinoseki-Sekine Noriko,Kobayashi Hiroyuki,Naito HisashiORCID,Burniston JatinORCID,Generozov Edward V.ORCID,Fuku NoriyukiORCID,Ahmetov Ildus I.ORCID

Abstract

Muscle fiber composition is associated with physical performance, with endurance athletes having a high proportion of slow-twitch muscle fibers compared to power athletes. Approximately 45% of muscle fiber composition is heritable, however, single nucleotide polymorphisms (SNP) underlying inter-individual differences in muscle fiber types remain largely unknown. Based on three whole genome SNP datasets, we have shown that the rs236448 A allele located near the cyclin-dependent kinase inhibitor 1A (CDKN1A) gene was associated with an increased proportion of slow-twitch muscle fibers in Russian (n = 151; p = 0.039), Finnish (n = 287; p = 0.03), and Japanese (n = 207; p = 0.008) cohorts (meta-analysis: p = 7.9 × 10−5. Furthermore, the frequency of the rs236448 A allele was significantly higher in Russian (p = 0.045) and Japanese (p = 0.038) elite endurance athletes compared to ethnically matched power athletes. On the contrary, the C allele was associated with a greater proportion of fast-twitch muscle fibers and a predisposition to power sports. CDKN1A participates in cell cycle regulation and is suppressed by the miR-208b, which has a prominent role in the activation of the slow myofiber gene program. Bioinformatic analysis revealed that the rs236448 C allele was associated with increased CDKN1A expression in whole blood (p = 8.5 × 10−15) and with greater appendicular lean mass (p = 1.2 × 10−5), whereas the A allele was associated with longer durations of exercise (p = 0.044) reported amongst the UK Biobank cohort. Furthermore, the expression of CDKN1A increased in response to strength (p < 0.0001) or sprint (p = 0.00035) training. Accordingly, we found that CDKN1A expression is significantly (p = 0.002) higher in the m. vastus lateralis of strength athletes compared to endurance athletes and is positively correlated with the percentage of fast-twitch muscle fibers (p = 0.018). In conclusion, our data suggest that the CDKN1A rs236448 SNP may be implicated in the determination of muscle fiber composition and may affect athletic performance.

Funder

Russian Science Foundation

JSPS KAKENHI

Juntendo University

Fukuoka University

Institute of Health and Sports Science and Medicine

NHGRI

NIDDK

American Diabetes Association Pathway to Stop Diabetes

Academy of Finland

Publisher

MDPI AG

Subject

General Medicine

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