首页> 美国卫生研究院文献>Biochemical Journal >The murine haemopexin receptor. Evidence that the haemopexin-binding site resides on a 20 kDa subunit and that receptor recycling is regulated by protein kinase C.
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The murine haemopexin receptor. Evidence that the haemopexin-binding site resides on a 20 kDa subunit and that receptor recycling is regulated by protein kinase C.

机译:鼠血表素受体。血凝素结合位点位于20 kDa亚基上并且受体循环受蛋白激酶C调节的证据。

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摘要

Haemopexin receptors from mouse hepatoma (Hepa) cells were affinity-labelled by cross-linking to haem-125I-haemopexin complexes using two homo-[disuccinimidyl suberate (DSS) and 3,3'-dithiobis(succinimidyl propionate) (DTSSP)] and one hetero-[sulphosuccinimidyl 4-(p-maleimidophenyl)butyrate (sulpho-SMPB)] bifunctional cross-linking agents. Analysis of the cross-linked products by SDS/PAGE in the absence of reducing agents revealed that 125I-haemopexin was cross-linked specifically to a protein of apparent molecular mass 85-90 kDa. Upon reduction, haemopexin remained cross-linked to a protein of 20 kDa, suggesting that the murine haemopexin receptor has a subunit structure. Two subunits were identified: alpha (p65) and beta (p20). Furthermore, because haemopexin was cross-linked by all three agents to p20, the shortest cross-linker arm being 1.1 nm (11 A), we propose that the haem-haemopexin-binding site resides on this subunit. In addition, a cysteine residue of p20 is located near the haemopexin-binding site, since haemopexin, which has no free thiol groups, is cross-linked to this subunit by the hetero-bifunctional agent sulpho-SMPB. Exposure of Hepa cells to the tumour-promoting phorbol ester 4 alpha-phorbol 12-myristate 13-acetate (PMA) causes a rapid redistribution of haemopexin receptors from the cell surface to the cell interior. Within 2-4 min of incubation with 100 nM-PMA, there was an approx. 50% decrease in cell-surface haemopexin receptors, as judged by ligand binding at 0 degrees C and affinity labelling of the receptor. This time- and dose-dependent down-regulation was fully reversible within 60-90 min after removal of PMA, and the affinity of the remaining receptors was unaltered by PMA. The specificity of PMA was demonstrated by comparison with the non-tumour-promoter 4 alpha-phorbol, which did not affect any of the parameters examined. The amine H-7, a specific inhibitor of protein kinase C, antagonised the receptor redistribution effect of PMA, suggesting that the down-regulation of haemopexin receptors on the cell surface was a consequence of protein kinase C activation. The PMA-induced decrease in surface haemopexin receptors was due to a 2-fold increase in the rate of internalization (from 0.73 min-1 to 1.32 min-1), whereas the rate of exocytosis (0.6 min-1) was unchanged. PMA treatment, like binding of the natural ligand, haem-haemopexin, results in a lower steady-state level of surface haemopexin receptors independent of receptor synthesis, and the receptors were not degraded but were recycled back to the cell surface.
机译:通过使用两个高-[辛二酸二琥珀酰亚胺基酯(DSS)和3,3'-二硫代双(琥珀酰亚胺基丙酸酯)(DTSSP)]与血红素125I-血凝素复合物交联来亲和标记小鼠肝癌(Hepa)细胞的血凝素受体一种杂-[磺基琥珀酰亚胺基4-(对-马来酰亚胺基苯基)丁酸酯(sulpho-SMPB)]双功能交联剂。在不存在还原剂的情况下,通过SDS / PAGE对交联产物的分析表明,125I-血凝素专门与表观分子量为85-90 kDa的蛋白质发生交联。还原后,血红素融合蛋白仍与20 kDa的蛋白质交联,表明鼠血红素融合蛋白受体具有亚基结构。确定了两个亚基:α(p65)和beta(p20)。此外,由于血红素融合蛋白被所有三种试剂交联到p20,最短的交联臂为1.1 nm(11 A),因此我们提出血红素-血红素结合蛋白结合位点位于该亚基上。另外,p20的半胱氨酸残基位于血红蛋白结合位点附近,因为不具有游离硫醇基团的血红蛋白通过异双功能剂磺基-SMPB与该亚基交联。肝细胞暴露于促肿瘤的佛波酸酯4α-佛波12-肉豆蔻酸酯13-乙酸酯(PMA)会引起血红素受体从细胞表面快速重新分布到细胞内部。在与100 nM-PMA孵育2-4分钟后,大约有通过在0摄氏度下的配体结合和受体的亲和标记,可以判断出细胞表面的血凝素受体减少了50%。在PMA去除后60-90分钟内,这种时间和剂量依赖性下调是完全可逆的,而PMA不会改变其余受体的亲和力。通过与非肿瘤促进剂4α-佛波醇比较证明了PMA的特异性,其不影响所检查的任何参数。胺H-7是蛋白激酶C的特异性抑制剂,拮抗PMA的受体再分配作用,表明细胞表面血红素受体的下调是蛋白激酶C活化的结果。 PMA诱导的表面血凝素受体减少是由于内化速率增加了2倍(从0.73 min-1到1.32 min-1),而胞吐速率(0.6 min-1)没有变化。 PMA处理与天然配体haem-heemopexin的结合一样,可导致较低水平的表面hapepexin受体的稳态水平,而与受体合成无关,并且该受体不会降解,但会循环回到细胞表面。

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