MOTS-c modulates skeletal muscle function by directly binding and activating CK2
Hiroshi Kumagai(University of Southern California), Pinchas Cohen(University of Southern California), James A. Wohlschlegel(University of California, Los Angeles), Kevin Cao(University of Southern California), Yuichiro Nishida(Saga University), Koichiro Oka(Waseda University), Michi Emma Kumagai(University of Southern California), Hisashi Naito(Juntendo University), Toshinori Yoshihara(Juntendo University), Brendan Miller(Johns Hopkins University), Kelvin Yen(University of Southern California), Taishi Midorikawa(J. F. Oberlin University), Suguru Torii(Waseda University), Shin Hyung Lee(University of Southern California), Kumpei Tanisawa(National Institute of Biomedical Innovation, Health and Nutrition), Shohei Dobashi(Japan Society for the Promotion of Science), Naphada Leelaprachakul(University of Southern California), Noriyuki Fuku(Juntendo University), Eri Miyamoto‐Mikami(Juntendo University), Keitaro Tanaka(Saga University), Jihui Sha(University of California, Los Angeles), Mizuki Takaragawa(Juntendo University), Toshiharu Natsume(Tokai University), Yosuke Yamada(Tohoku University), Ryoko Kawakami(Meiji Yasuda Life Foundation of Health and Welfare), Mizuho Fuku(Juntendo University), Hirofumi Zempo(Ibaraki Prefectural University of Health Sciences), Chiharu Iwasaka(National Institute of Biomedical Innovation, Health and Nutrition), Yasuki Higaki(Fukuoka University), Su‐Jeong Kim(Gwangju Institute of Science and Technology), Ricardo Ramírez(University of Southern California), Hemal H. Mehta(University of Southern California), Tae Jung Oh(New Generation University College), Junxiang Wan(University of Southern California), Megumi Hara(Saga University)
Cited by 11
Related Papers
Inhibition of Eukaryotic DNA Replication by Geminin Binding to Cdt1
|Science|2000|692
Mitochondrial Genome Variation in Eastern Asia and the Peopling of Japan
|Genome Research|2004|528
Functional Proteomics Reveals the Biochemical Niche of C. elegans DCR-1 in Multiple Small-RNA-Mediated Pathways
|Cell|2006|410
Mammalian miRNA RISC Recruits CAF1 and PABP to Affect PABP-Dependent Deadenylation
|Molecular Cell|2009|385
Diagnosis, Genetics, and Therapy of Short Stature in Children: A Growth Hormone Research Society International Perspective
|Hormone Research in Paediatrics|2019|345