RRC ID 83671
Author Nozaki Y, Kobayashi M, Fukuoh T, Ishimatsu M, Narita T, Taki K, Hirao Y, Ayabe S, Yokoyama M, Otani Y, Mizunoe Y, Matsumoto M, Ohno N, Kaifu T, Okazaki S, Goitsuka R, Nakagawa Y, Shimano H, Iwakura Y, Higami Y.
Title Mipep deficiency in adipocytes impairs mitochondrial protein maturation and leads to systemic inflammation and metabolic dysfunctions.
Journal Sci Rep
Abstract Most mitochondrial proteins encoded in the nuclear genome are synthesized in the cytoplasm. These proteins subsequently undergo maturation through the cleavage of a signal sequence at the N-terminus by one or two mitochondrial signal peptidases, which is essential for their function within mitochondria. The present study demonstrates that adipocyte-specific knockout of one mitochondrial signal peptidase, mitochondrial intermediate peptidase (MIPEP), resulted in disordered mitochondrial proteostasis of MIPEP substrate proteins and their defective maturation. MIPEP deficiency in white and brown adipocytes suppressed the expression of adipocyte differentiation, lipid metabolism, and mitochondrial biogenesis genes. These alterations led to lipoatrophy in white adipose tissue and the whitening of brown adipose tissue. Additionally, it induced an atypical mitochondrial unfolded protein response and local inflammation in white and brown adipose tissue. Furthermore, it induced fatty liver and splenomegaly and caused systemic impairments in glucose metabolism and inflammation. These findings indicate that maturation defects of certain mitochondrial proteins and subsequent proteostasis disorders in white and brown adipocytes cause chronic and systemic inflammatory and metabolic dysfunctions.
Volume 15(1)
Pages 12839
Published 2025-4-14
DOI 10.1038/s41598-025-97307-6
PII 10.1038/s41598-025-97307-6
PMID 40229443
PMC PMC11997187
MeSH Adipocytes* / metabolism Adipocytes, Brown / metabolism Adipose Tissue, Brown / metabolism Adipose Tissue, White / metabolism Animals Inflammation* / genetics Inflammation* / metabolism Inflammation* / pathology Lipid Metabolism Male Metabolic Diseases* / metabolism Mice Mice, Knockout Mitochondria / metabolism Mitochondrial Proteins* / genetics Mitochondrial Proteins* / metabolism Unfolded Protein Response
IF 3.998
Resource
Mice RBRC01834