TY - JOUR
T1 - Calpain-mediated proteolytic production of free amino acids in vascular endothelial cells augments obesity-induced hepatic steatosis
AU - Akasu, Risako
AU - Miyazaki, Takuro
AU - Elhussiny, Mohamed Z.
AU - Sugiura, Yuki
AU - Tomitsuka, Yuki
AU - Haraguchi, Shogo
AU - Otsu, Kinya
AU - Chowdhury, Vishwajit S.
AU - Miyazaki, Akira
N1 - Funding Information:
Funding and additional information—This study was supported in part by the Japan Society for the Promotion of Science KAKENHI grant (grant nos.: JP21K08585 [to A. M.], JP19K08590 [to T. M.], JP22H03520 [to T. M.], and JP19H03110 [to V. S. C.]), research grant from Bristol-Myers Squibb (to T. M.), personal chair grant from the British Heart Foundation (grant nos.: CH/11/3/29051 and RG/16/15/32294 [to K. O.]), research grant from the Suzuken Memorial Foundation (to T. M.), and research grant from the Mochida Memorial Foundation for Medical and Pharmaceutical Research (to T. M.), and a research grant from the Naito Memorial Foundation (to T. M.).
Publisher Copyright:
© 2022 THE AUTHORS.
PY - 2022/6/1
Y1 - 2022/6/1
N2 - Free amino acids that accumulate in the plasma of patients with diabetes and obesity influence lipid metabolism and protein synthesis in the liver. The stress-inducible intracellular protease calpain proteolyzes various substrates in vascular endothelial cells (ECs), although its contribution to the supply of free amino acids in the liver microenvironment remains enigmatic. In the present study, we showed that calpains are associated with free amino acid production in cultured ECs. Furthermore, conditioned media derived from calpain-activated ECs facilitated the phosphorylation of ribosomal protein S6 kinase (S6K) and de novo lipogenesis in hepatocytes, which were abolished by the amino acid transporter inhibitor, JPH203, and the mammalian target of rapamycin complex 1 inhibitor, rapamycin. Meanwhile, calpain-overexpressing capillary-like ECs were observed in the livers of high-fat diet–fed mice. Conditional KO of EC/hematopoietic Capns1, which encodes a calpain regulatory subunit, diminished levels of branched-chain amino acids in the hepatic microenvironment without altering plasma amino acid levels. Concomitantly, conditional KO of Capns1 mitigated hepatic steatosis without normalizing body weight and the plasma lipoprotein profile in an amino acid transporter–dependent manner. Mice with targeted Capns1 KO exhibited reduced phosphorylation of S6K and maturation of lipogenic factor sterol regulatory element–binding protein 1 in hepatocytes. Finally, we show that bone marrow transplantation negated the contribution of hematopoietic calpain systems. We conclude that overactivation of calpain systems may be responsible for the production of free amino acids in ECs, which may be sufficient to potentiate S6K/ sterol regulatory element–binding protein 1–induced lipogenesis in surrounding hepatocytes.
AB - Free amino acids that accumulate in the plasma of patients with diabetes and obesity influence lipid metabolism and protein synthesis in the liver. The stress-inducible intracellular protease calpain proteolyzes various substrates in vascular endothelial cells (ECs), although its contribution to the supply of free amino acids in the liver microenvironment remains enigmatic. In the present study, we showed that calpains are associated with free amino acid production in cultured ECs. Furthermore, conditioned media derived from calpain-activated ECs facilitated the phosphorylation of ribosomal protein S6 kinase (S6K) and de novo lipogenesis in hepatocytes, which were abolished by the amino acid transporter inhibitor, JPH203, and the mammalian target of rapamycin complex 1 inhibitor, rapamycin. Meanwhile, calpain-overexpressing capillary-like ECs were observed in the livers of high-fat diet–fed mice. Conditional KO of EC/hematopoietic Capns1, which encodes a calpain regulatory subunit, diminished levels of branched-chain amino acids in the hepatic microenvironment without altering plasma amino acid levels. Concomitantly, conditional KO of Capns1 mitigated hepatic steatosis without normalizing body weight and the plasma lipoprotein profile in an amino acid transporter–dependent manner. Mice with targeted Capns1 KO exhibited reduced phosphorylation of S6K and maturation of lipogenic factor sterol regulatory element–binding protein 1 in hepatocytes. Finally, we show that bone marrow transplantation negated the contribution of hematopoietic calpain systems. We conclude that overactivation of calpain systems may be responsible for the production of free amino acids in ECs, which may be sufficient to potentiate S6K/ sterol regulatory element–binding protein 1–induced lipogenesis in surrounding hepatocytes.
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U2 - 10.1016/j.jbc.2022.101953
DO - 10.1016/j.jbc.2022.101953
M3 - Article
C2 - 35447117
AN - SCOPUS:85130616094
SN - 0021-9258
VL - 298
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 6
M1 - 101953
ER -