4.5 Article

TM9SF1 knockdown decreases inflammation by enhancing autophagy in a mouse model of acute lung injury

期刊

HELIYON
卷 8, 期 12, 页码 -

出版社

CELL PRESS
DOI: 10.1016/j.heliyon.2022.e12092

关键词

TM9SF1; ALI; Autophagy; Inflammation

资金

  1. scientific and technological research projects of Hubei Education Department [D20202602]
  2. Subject fund of Hubei University of Arts and Science [2021kptd02]

向作者/读者索取更多资源

This study reveals the important role of TM9SF1 in LPS-induced acute lung injury (ALI). Knocking out TM9SF1 significantly alleviates LPS-induced ALI by regulating autophagy. This discovery may provide novel targets for the treatment of ALI.
TM9SF1 is a member of the TM9SF (Transmembrane 9 Superfamily Member) family, which usually has a long N -terminal extracellular region and nine transmembrane domains. TM9SF1???s biological function and mechanisms in inflammation are yet unknown. Tm9sf1 was shown to be upregulated in the lung tissues of mice suffering from LPS-induced acute lung injury (ALI). Tm9sf1 knockout mice were studied, and it was shown that Tm9sf1 knockout significantly alleviated LPS-induced ALI, as evidenced by higher survival rate, improved pulmonary vascular permeability, decreased inflammatory cell infiltration, and downregulated inflammatory cytokines. TM9SF1 was also demonstrated to be a negative regulator of autophagy in the LPS-induced ALI model in vitro and in vivo. The autophagy inhibitor 3-MA could counteract the beneficial effects of Tm9sf1 knockout on ALI. Therefore, we discover for the first time the role and mechanism of TM9SF1 in LPS-induced ALI and establish a relationship between TM9SF1 regulated autophagy and ALI progression, which may provide novel targets for the treatment of ALI.

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