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首页> 外文期刊>American Journal of Physiology >Effects of cholesterol on CCK-1 receptors and caveolin-3 proteins recycling in human gallbladder muscle
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Effects of cholesterol on CCK-1 receptors and caveolin-3 proteins recycling in human gallbladder muscle

机译:胆固醇对胆囊肌CCK-1受体和caveolin-3蛋白循环的影响

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The contraction of gallbladders (GBs) with cholesterol stones is impaired due to high cholesterol concentrations in caveolae compared with GBs with pigment stones. The reduced contraction is caused by a lower cholecystokinin (CCK)-8 binding to CCK-1 receptors (CCK-1R) due to caveolar sequestration of receptors. We aimed to examine the mechanism of cholesterol-induced sequestration of receptors. Muscle cells from human and guinea pig GBs were studied. Antibodies were used to examine CCK-1R, antigens of early and recycling endosomes, and total (CAV-3) and phosphorylated caveolar-3 protein (pCAV-3) by Western blots. Contraction was measured in muscle cells transfected with CAV-3 mRNA or clathrin heavy-chain small-interfering RNA (siRNA). CCK-1R returned back to the bulk plasma membrane (PM) 30 min after CCK-8 recycled by endosomes, peaking at 5 min in early endosomes and at 20 min in recycling endosomes. Pretreatment with cholesterol-rich liposomes inhibited the transfer of CCK-1R and of CAV-3 in the endosomes by blocking CAV-3 phosphorylation. 4-Amino-5-(4-chlorophenyl)-7-(t-butyl)pyrazolo[3,4-d]pyrimidine (inhibitor of tyrosine kinase) reproduced these effects by blocking pCAV-3 formation, increasing CAV-3 and CCK-1R sequestration in the caveolae and impairing CCK-8-induced contraction. CAV-3 siRNA reduced CAV-3 protein expression, decreased CCK-8-induced contraction, and accumulated CCK-1R in the caveolae. Abnormal concentrations of caveolar cholesterol had no effect on met-enkephalin that stimulates a δ-opioid receptor that internalizes through clathrin. We found that impaired muscle contraction in GBs with cholesterol stones is due to high caveolar levels of cholesterol that inhibits pCAV-3 generation. Caveolar cholesterol increases the caveolar sequestration of CAV-3 and CCK-1R caused by their reduced recycling to the PM.
机译:与带有色素结石的GBs相比,由于海绵体内胆固醇浓度高,胆固醇结石的胆囊(GBs)收缩受到损害。收缩减少是由于由于肾小球螯合受体而降低了与CCK-1受体(CCK-1R)结合的胆囊收缩素(CCK)-8引起的。我们旨在研究胆固醇诱导的螯合受体的机制。研究了来自人和豚鼠GBs的肌肉细胞。抗体用于通过Western印迹检查CCK-1R,早期和回收内体的抗原以及总蛋白(CAV-3)和磷酸化小窝蛋白3(pCAV-3)。在用CAV-3 mRNA或网格蛋白重链小干扰RNA(siRNA)转染的肌肉细胞中测量收缩。 CCK-1R在内体回收CCK-8后30分钟返回到大体质膜(PM),在早期内体中5分钟达到峰值,在内体回收20分钟时达到峰值。用富含胆固醇的脂质体进行预处理可通过阻止CAV-3磷酸化来抑制CCK-1R和CAV-3在内体中的转移。 4-氨基-5-(4-氯苯基)-7-(叔丁基)吡唑并[3,4-d]嘧啶(酪氨酸激酶抑制剂)通过阻止pCAV-3的形成,增加CAV-3和CCK来复制这些作用。 -1R螯合在小窝中并损害CCK-8诱导的收缩。 CAV-3 siRNA降低了CAV-3蛋白的表达,降低了CCK-8诱导的收缩,并在海绵体内积聚了CCK-1R。海绵状胆固醇的浓度异常对脑啡肽没有影响,后者会刺激通过网格蛋白内在化的δ阿片受体。我们发现胆固醇结石GBs中的肌肉收缩受损是由于胆固醇的高海绵体水平抑制了pCAV-3的产生。海绵状胆固醇增加了CAV-3和CCK-1R的海绵状螯合,这是由于它们减少了向PM的再循环。

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