Oda K, Ikeda M, Tsuji E, Sohda M, Takami N, Misumi Y, Ikehara Y
Department of Biochemistry, Fukuoka University School of Medicine, Japan.
Biochem Biophys Res Commun. 1991 Sep 30;179(3):1181-6. doi: 10.1016/0006-291x(91)91696-a.
When expressed in COS cells, human prorenin was secreted into the medium without being processed to an active renin. Co-expression of furin, a mammalian homologue of the yeast KEX2 gene product, did not affect proteolytic processing of prorenin. A mutant proreninR-4 constructed by site-directed mutagenesis of Pro (-4) to Arg was not cleaved by an endoprotease in the COS cell. However, proreninR-4 was detectably cleaved to yield the active renin upon co-transfection with furin DNA, indicating that Arg at position -4 is important for recognition and processing by furin in addition to the absolute requirement for paired basic amino acids. Another mutant precursor in which Leu (+1) of proreninR-4 was replaced with Ser was found to be much more efficiently processed than proreninR-4, regardless of co-expression of furin. The results suggest that not only a basic amino acid at position -4 but also Leu at position +1 significantly affect the processing of prorenin catalyzed by the COS cell endoprotease or furin.
当在COS细胞中表达时,人肾素原分泌到培养基中,而未被加工成活性肾素。酵母KEX2基因产物的哺乳动物同源物弗林蛋白酶的共表达并不影响肾素原的蛋白水解加工。通过将Pro(-4)定点突变为Arg构建的突变型肾素原R-4未被COS细胞中的一种内切蛋白酶切割。然而,与弗林蛋白酶DNA共转染后,肾素原R-4可被检测到切割产生活性肾素,这表明除了对成对碱性氨基酸的绝对需求外,-4位的Arg对于弗林蛋白酶的识别和加工也很重要。另一种突变前体,其中肾素原R-4的Leu(+1)被Ser取代,发现无论弗林蛋白酶的共表达如何,其加工效率都比肾素原R-4高得多。结果表明,不仅-4位的碱性氨基酸,而且+1位的Leu都显著影响COS细胞内切蛋白酶或弗林蛋白酶催化的肾素原加工。