Molinete M, Dupuis S, Brodsky F M, Halban P A
Louis-Jeantet Research Laboratories, University Medical Centre, Geneva 4, Switzerland.
J Cell Sci. 2001 Aug;114(Pt 16):3059-66. doi: 10.1242/jcs.114.16.3059.
The role of clathrin in the sorting of proinsulin to secretory granules, the formation of immature granules and their subsequent maturation is not known. To this end, primary rat pancreatic beta-cells were infected with a recombinant adenovirus co-expressing the Hub fragment, a dominant-negative peptide of the clathrin heavy chain and enhanced green fluorescent protein (EGFP as a marker of infected cells). A population of cells expressing the highest levels of EGFP (and thus Hub) was obtained using a fluorescence-activated cell sorter (FACS). Control cells were infected with an adenovirus expressing EGFP alone. By immunofluorescence, control cells showed intense staining for both clathrin light chain and proinsulin in a perinuclear region. In cells expressing high levels of Hub, the clathrin light-chain signal was faint and diffuse in keeping with its displacement from membranes. There was, however, no detectable effect of Hub expression on proinsulin staining or disposition within the cell. Proinsulin sorting and conversion, and the fate (release and/or degradation) of insulin and C-peptide, was studied by pulse-chase and quantitative reverse phase HPLC. In both Hub-expressing and control cells, >99% of all newly synthesized proinsulin was sorted to the regulated pathway and there was no effect of Hub on proinsulin conversion to insulin. In presence of Hub there was, however, a significant increase in the percentage of C-peptide truncated to des-(27-31)-C-peptide at early times of chase as well as more extensive degradation of C-peptide thereafter. It is concluded that clathrin is not implicated in the sorting or processing of proinsulin or in regulated exocytosis of secretory granules. These results confirm a role for clathrin in the removal of proteases from maturing granules, thus explaining the increased truncation and degradation of C-peptide in cells expressing Hub.
网格蛋白在胰岛素原分选至分泌颗粒、未成熟颗粒的形成及其后续成熟过程中的作用尚不清楚。为此,用一种共表达Hub片段(网格蛋白重链的显性负性肽)和增强型绿色荧光蛋白(EGFP作为感染细胞的标志物)的重组腺病毒感染原代大鼠胰腺β细胞。使用荧光激活细胞分选仪(FACS)获得了表达最高水平EGFP(从而表达Hub)的细胞群体。对照细胞用仅表达EGFP的腺病毒感染。通过免疫荧光,对照细胞在核周区域显示出网格蛋白轻链和胰岛素原的强烈染色。在高表达Hub的细胞中,网格蛋白轻链信号微弱且弥散,这与其从膜上移位一致。然而,Hub表达对胰岛素原染色或在细胞内的分布没有可检测到的影响。通过脉冲追踪和定量反相HPLC研究了胰岛素原的分选和转化以及胰岛素和C肽的命运(释放和/或降解)。在表达Hub的细胞和对照细胞中,所有新合成的胰岛素原>99%被分选至调节途径,并且Hub对胰岛素原转化为胰岛素没有影响。然而,在存在Hub的情况下,在追踪早期截短为去(27 - 31)-C肽的C肽百分比显著增加,并且此后C肽的降解更广泛。结论是网格蛋白与胰岛素原的分选或加工以及分泌颗粒的调节性胞吐作用无关。这些结果证实了网格蛋白在从成熟颗粒中去除蛋白酶方面的作用,从而解释了在表达Hub的细胞中C肽截短和降解增加的现象。