Docosahexaenoic acid inhibits zymogen activation by suppressing vacuolar ATPase activation in cerulein-stimulated pancreatic acinar cells.

Yeeun Park, Leeyeon Ku, Joo Weon Lim, Hyeyoung Kim
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引用次数: 2

Abstract

Background: The premature activation of digestive enzyme zymogens within pancreatic acinar cells is an important early feature of acute pancreatitis. Supraphysiological concentrations of cholecystokinin (CCK) cause intrapancreatic zymogen activation and acute pancreatitis. Stimulation of vacuolar ATPase (vATPase) activity is required for zymogen activation in pancreatic acinar cells. Parkin, a multiprotein E3 ubiquitin ligase complex, promotes vATPase ubiquitination and degradation, which inhibits vATPase activity. Docosahexaenoic acid (DHA), an omega-3 fatty acid, exerts anti-inflammatory effects. It is reported to bind to G-protein coupled receptor 120 (GPR120) and GPR40. DHA induces the degradation of certain proteins by activating ubiquitin-proteasome system in various cells. This study aimed to investigate whether DHA induces Parkin and inhibits vATPase activity, resulting in zymogen inactivation in pancreatic acinar AR42J cells stimulated with cerulein, a CCK analog.

Results: Cerulein induced the translocation of the cytosolic V1 domain (E subunit) of vATPase to the membrane, which indicated vATPase activation, and zymogen activation in AR42J cells. DHA suppressed the association of the vATPase with membranes, and zymogen activation (increased trypsin activity and amylase release) induced by cerulein. Pretreatment with a GPR120 antagonist AH-7614, a GPR40 antagonist DC260126, or an ubiquitination inhibitor PYR-41 reduced the effect of DHA on cerulein-induced zymogen activation. Treatment with PYR-41 reversed the DHA-induced decrease in vATPase activation in cerulein-treated cells. Furthermore, DHA increased the level of Parkin in membranes of cerulein-treated cells.

Conclusions: DHA upregulates Parkin which inhibits vATPase-mediated zymogen activation, via GPR120 and GPR40, in cerulein-stimulated pancreatic acinar cells.

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二十二碳六烯酸通过抑制核蛋白刺激的胰腺腺泡细胞空泡atp酶的激活来抑制酶原的激活。
背景:胰腺腺泡细胞内消化酶酶原的过早激活是急性胰腺炎的一个重要早期特征。超生理浓度的胆囊收缩素(CCK)引起胰腺内酶原激活和急性胰腺炎。刺激液泡atp酶(vATPase)活性是激活胰腺腺泡细胞酶原所必需的。Parkin是一种多蛋白E3泛素连接酶复合物,可促进vATPase泛素化和降解,从而抑制vATPase活性。二十二碳六烯酸(DHA)是一种omega-3脂肪酸,具有抗炎作用。据报道,它与g蛋白偶联受体120 (GPR120)和GPR40结合。DHA通过激活各种细胞中的泛素-蛋白酶体系统,诱导某些蛋白质的降解。本研究旨在探讨DHA是否诱导Parkin并抑制vATPase活性,从而导致CCK类似物cerulein刺激的胰腺腺泡AR42J细胞酶原失活。结果:Cerulein诱导vATPase细胞质V1结构域(E亚基)向膜上易位,表明vATPase在AR42J细胞中激活,酶原激活。DHA抑制vATPase与细胞膜的关联,以及蛋白诱导的酶原激活(胰蛋白酶活性和淀粉酶释放增加)。预处理GPR120拮抗剂AH-7614、GPR40拮抗剂DC260126或泛素化抑制剂PYR-41可降低DHA对蛋白诱导的酶原激活的影响。PYR-41治疗逆转了dha诱导的酪蛋白处理细胞中vATPase激活的降低。此外,DHA增加了酪蛋白处理细胞膜中的Parkin水平。结论:DHA通过GPR120和GPR40上调Parkin抑制vatpase介导的胰腺腺泡细胞的酶原激活。
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