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volume 13 issue 1 publication number 14639

Tmem161a regulates bone formation and bone strength through the P38 MAPK pathway

Takuya Nagai 1
Tomohisa Sekimoto 1
Syuji Kurogi 1
TOMOMI OHTA 1
Shihoko Miyazaki 1
Yoichiro Yamaguchi 1
Takuya Tajima 1
Etsuo Chosa 1
Mai Imasaka 2
Kumiko YOSHINOBU 3
Kimi Araki 3
Masatake Araki 3
Narantsog Choijookhuu 4
Katsuaki SATO 5
Yoshitaka Hishikawa 4
Taro Funamoto 1
Publication typeJournal Article
Publication date2023-09-05
scimago Q1
wos Q1
SJR0.874
CiteScore6.7
Impact factor3.9
ISSN20452322
Multidisciplinary
Abstract

Bone remodeling is an extraordinarily complex process involving a variety of factors, such as genetic, metabolic, and environmental components. Although genetic factors play a particularly important role, many have not been identified. In this study, we investigated the role of transmembrane 161a (Tmem161a) in bone structure and function using wild-type (WT) and Tmem161a-depleted (Tmem161aGT/GT) mice. Mice femurs were examined by histological, morphological, and bone strength analyses. Osteoblast differentiation and mineral deposition were examined in Tmem161a-overexpressed, -knockdown and -knockout MC3T3-e1 cells. In WT mice, Tmem161a was expressed in osteoblasts of femurs; however, it was depleted in Tmem161aGT/GT mice. Cortical bone mineral density, thickness, and bone strength were significantly increased in Tmem161aGT/GT mice femurs. In MC3T3-e1 cells, decreased expression of alkaline phosphatase (ALP) and Osterix were found in Tmem161a overexpression, and these findings were reversed in Tmem161a-knockdown or -knockout cells. Microarray and western blot analyses revealed upregulation of the P38 MAPK pathway in Tmem161a-knockout cells, which referred as stress-activated protein kinases. ALP and flow cytometry analyses revealed that Tmem161a-knockout cells were resistant to oxidative stress. In summary, Tmem161a is an important regulator of P38 MAPK signaling, and depletion of Tmem161a induces thicker and stronger bones in mice.

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Nagai T. et al. Tmem161a regulates bone formation and bone strength through the P38 MAPK pathway // Scientific Reports. 2023. Vol. 13. No. 1. 14639
GOST all authors (up to 50) Copy
Nagai T., Sekimoto T., Kurogi S., OHTA T., Miyazaki S., Yamaguchi Y., Tajima T., Chosa E., Imasaka M., YOSHINOBU K., Araki K., Araki M., Choijookhuu N., SATO K., Hishikawa Y., Funamoto T. Tmem161a regulates bone formation and bone strength through the P38 MAPK pathway // Scientific Reports. 2023. Vol. 13. No. 1. 14639
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.1038/s41598-023-41837-4
UR - https://doi.org/10.1038/s41598-023-41837-4
TI - Tmem161a regulates bone formation and bone strength through the P38 MAPK pathway
T2 - Scientific Reports
AU - Nagai, Takuya
AU - Sekimoto, Tomohisa
AU - Kurogi, Syuji
AU - OHTA, TOMOMI
AU - Miyazaki, Shihoko
AU - Yamaguchi, Yoichiro
AU - Tajima, Takuya
AU - Chosa, Etsuo
AU - Imasaka, Mai
AU - YOSHINOBU, Kumiko
AU - Araki, Kimi
AU - Araki, Masatake
AU - Choijookhuu, Narantsog
AU - SATO, Katsuaki
AU - Hishikawa, Yoshitaka
AU - Funamoto, Taro
PY - 2023
DA - 2023/09/05
PB - Springer Nature
IS - 1
VL - 13
PMID - 37670024
SN - 2045-2322
ER -
BibTex
Cite this
BibTex (up to 50 authors) Copy
@article{2023_Nagai,
author = {Takuya Nagai and Tomohisa Sekimoto and Syuji Kurogi and TOMOMI OHTA and Shihoko Miyazaki and Yoichiro Yamaguchi and Takuya Tajima and Etsuo Chosa and Mai Imasaka and Kumiko YOSHINOBU and Kimi Araki and Masatake Araki and Narantsog Choijookhuu and Katsuaki SATO and Yoshitaka Hishikawa and Taro Funamoto},
title = {Tmem161a regulates bone formation and bone strength through the P38 MAPK pathway},
journal = {Scientific Reports},
year = {2023},
volume = {13},
publisher = {Springer Nature},
month = {sep},
url = {https://doi.org/10.1038/s41598-023-41837-4},
number = {1},
pages = {14639},
doi = {10.1038/s41598-023-41837-4}
}