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Down-regulation of cell surface insulin receptor and insulin receptor substrate-1 phosphorylation by inhibitor of 90-kDa heat-shock protein family: endoplasmic reticulum retention of monomeric insulin receptor precursor with calnexin in adrenal chrom

机译:90 kDa热休克蛋白家族抑制剂对细胞表面胰岛素受体和胰岛素受体底物1磷酸化的下调:肾上腺铬中钙联蛋白对单体胰岛素受体前体的内质网保留

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Treatment (>/=6 h) of cultured bovine adrenal chromaffin cells with geldanamycin (GA) or herbimycin A (HA), an inhibitor of the 90-kDa heat-shock protein (Hsp90) family, decreased cell surface (125)I-insulin binding. The effect of GA was concentration (EC(50) = 84 nM)- and time (t(1/2) = 8.5 h)-dependent; GA (1 microM for 24 h) lowered the B(max) value of (125)I-insulin binding by 80%, without changing the K(d) value. Western blot analysis showed that GA (>/=3 h) lowered insulin receptor (IR) level by 83% (t(1/2) = 7.4 h; EC(50) = 74 nM), while raising IR precursor level by 100% (t(1/2) = 7.9 h; EC(50) = 300 nM). Pulse-label followed by reducing and nonreducing sodium dodecyl sulfate-polyacrylamide gel electrophoresis revealed that monomeric IR precursor (~190 kDa) developed into the homodimeric IR precursor (approximately 380 kDa) and the mature alpha(2)beta(2) IR (~410 kDa) in nontreated cells, but not in GA-treated cells; in GA-treated cells, the homodimerization-incompetent form of monomeric IR precursor was degraded via endoplasmic reticulum (ER)-associated protein degradation. Immunoprecipitation followed by immunoblot analysis showed that IR precursor was associated with calnexin (CNX) to a greater extent in GA-treated cells, compared with nontreated cells. GA had no effect on IR mRNA levels and internalization rate of cell surface IRs. In GA-treated cells, insulin-induced tyrosine phosphorylation of insulin receptor substrate-1 (IRS-1) was attenuated by 77%, with no change in IRS-1 level. Thus, inhibition of the Hsp90 family by GA or HA interrupts homodimerization of monomeric IR precursor in the ER and increases retention of monomeric IR precursor with CNX; this event retards cell surface expression of IR and attenuates insulin-induced activation of IRS-1.
机译:用90-kDa热休克蛋白(Hsp90)家族的抑制剂格尔德霉素(GA)或除草霉素A(HA)处理(> / = 6 h)培养的牛肾上腺嗜铬细胞,降低细胞表面(125)I-胰岛素结合。 GA的作用是浓度(EC(50)= 84 nM)-和时间(t(1/2)= 8.5 h)依赖性的; GA(1 microM,持续24 h)使(125)I-胰岛素结合的B(max)值降低了80%,而K(d)值不变。蛋白质印迹分析表明,GA(> / = 3 h)使胰岛素受体(IR)水平降低了83%(t(1/2)= 7.4 h; EC(50)= 74 nM),同时将IR前体水平提高了100 %(t(1/2)= 7.9 h; EC(50)= 300 nM)。脉冲标记后再还原和不还原十二烷基硫酸钠-聚丙烯酰胺凝胶电泳表明,单体IR前驱物(〜190 kDa)发展为同型二聚IR前驱物(约380 kDa)和成熟的alpha(2)beta(2)IR(〜 410 kDa)在未经处理的细胞中,但不在GA处理的细胞中;在经GA处理的细胞中,单体IR前体的同型二聚体功能不全通过内质网(ER)相关蛋白降解而降解。免疫沉淀和免疫印迹分析表明,与未处理的细胞相比,GA处理的细胞中IR前体与钙合蛋白(CNX)的关联程度更高。 GA对IR mRNA水平和细胞表面IR的内在化率没有影响。在经GA处理的细胞中,胰岛素诱导的胰岛素受体底物1(IRS-1)的酪氨酸磷酸化减弱了77%,而IRS-1水平没有变化。因此,通过GA或HA抑制Hsp90家族可中断ER中单体IR前体的均二聚,并增加CNX单体IR前体的保留。此事件可延缓IR的细胞表面表达,并减弱胰岛素诱导的IRS-1激活。

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