Barbero P, Rovère C, De Bie I, Seidah N, Beaudet A, Kitabgi P
Institut de Pharmacologie Moléculaire et Cellulaire du CNRS, Université de Nice-Sophia Antipolis, Sophia Antipolis, 660 Route des Lucioles, 06560 Valbonne, France.
J Biol Chem. 1998 Sep 25;273(39):25339-46. doi: 10.1074/jbc.273.39.25339.
Among the members of the proprotein convertase (PC) family, PC1 and PC2 have well established roles as prohormone convertases. Another good candidate for this role is PC5-A that has been shown to be present in the regulated secretory pathway of certain neuroendocrine tissues, but evidence that it can process prohormones is lacking. To determine whether PC5-A could function as a prohormone convertase and to compare its cleavage specificity with that of PC1 and PC2, we stably transfected the rat pheochromocytoma PC12 cell line with PC5-A and analyzed the biosynthesis and subcellular localization of the enzyme, as well as its ability to process pro-neurotensin/neuromedin N (pro-NT/NN) into active peptides. Our data showed that in transfected PC12 cells, PC5-A was converted from its 126-kDa precursor form into a 117-kDa mature form and, to a lesser extent, into a C-terminally truncated 65-kDa form of the 117-kDa product. Metabolic and immunochemical studies showed that PC5-A was sorted to early compartments of the regulated secretory pathway where it colocalized with immunoreactive NT. Furthermore, pro-NT/NN was processed in these compartments according to a pattern that differed from that previously described in PC1- and PC2-transfected PC12 cells. This pattern resembled that previously reported for pro-NT/NN processing in the adrenal medulla, a tissue known to express high levels of PC5-A. Altogether, these data demonstrate for the first time the ability of PC5-A to function as a prohormone convertase in the regulated secretory pathway and suggest a role for this enzyme in the physiological processing of pro-NT/NN.
在前蛋白转化酶(PC)家族成员中,PC1和PC2作为激素原转化酶的作用已得到充分确立。该作用的另一个有力候选者是PC5-A,它已被证明存在于某些神经内分泌组织的调节性分泌途径中,但缺乏其能够加工激素原的证据。为了确定PC5-A是否能作为激素原转化酶发挥作用,并将其切割特异性与PC1和PC2进行比较,我们用PC5-A稳定转染大鼠嗜铬细胞瘤PC12细胞系,并分析了该酶的生物合成、亚细胞定位,以及其将神经降压素/神经介素N原(pro-NT/NN)加工成活性肽的能力。我们的数据表明,在转染的PC12细胞中,PC5-A从其126 kDa的前体形式转化为117 kDa的成熟形式,并在较小程度上转化为117 kDa产物的C末端截短的65 kDa形式。代谢和免疫化学研究表明,PC5-A被分选到调节性分泌途径的早期区室,在那里它与免疫反应性神经降压素共定位。此外,pro-NT/NN在这些区室中的加工模式与先前在PC1和PC2转染的PC12细胞中描述的模式不同。这种模式类似于先前报道的肾上腺髓质中pro-NT/NN的加工模式,肾上腺髓质是已知表达高水平PC5-A的组织。总之,这些数据首次证明了PC5-A在调节性分泌途径中作为激素原转化酶发挥作用的能力,并表明该酶在pro-NT/NN的生理加工中发挥作用。