Coates L C, Birch N P
Biochemistry and Molecular Biology Research Group, School of Biological Sciences, University of Auckland, New Zealand.
J Neurochem. 1997 Feb;68(2):828-36. doi: 10.1046/j.1471-4159.1997.68020828.x.
The subtilisin-like prohormone convertase SPC3 is likely to play a role in the biosynthesis of a variety of biologically active peptides. SPC3 undergoes a series of posttranslational processing events during its biosynthesis. Multiple forms have been identified that show varying degrees of truncation at the carboxyl terminus. In this study we show that the 86-kDa form of recombinant SPC3 with an intact carboxyl terminus can undergo rapid carboxyl-terminus truncation to produce a 64-kDa form. We have defined the optimal conditions for carboxyl-terminus truncation in vitro. The carboxyl-terminus truncation reaction was less calcium sensitive, active over a broader pH range, and showed differences in inhibitor sensitivity compared with the enzymatic activities of full-length and truncated forms of SPC3 toward a fluorescent peptide substrate. Increases in enzymatic activity of 86-kDa SPC3 were also measured over a time frame consistent with conversion to the 64-kDa form. However, similar specific activities for both forms of the enzyme suggest such activity increases may not be due to carboxyl-terminus truncation. The different enzymatic properties of the major molecular forms of SPC3 highlight the importance of understanding the molecular events regulating carboxyl-terminal processing of this endoprotease.
类枯草杆菌蛋白酶原激素转化酶SPC3可能在多种生物活性肽的生物合成中发挥作用。SPC3在其生物合成过程中经历一系列翻译后加工事件。已鉴定出多种形式,它们在羧基末端表现出不同程度的截短。在本研究中,我们表明具有完整羧基末端的86 kDa重组SPC3形式可经历快速的羧基末端截短,产生64 kDa形式。我们已经确定了体外羧基末端截短的最佳条件。与SPC3全长和截短形式对荧光肽底物的酶活性相比,羧基末端截短反应对钙的敏感性较低,在更宽的pH范围内具有活性,并且在抑制剂敏感性方面存在差异。在与转化为64 kDa形式一致的时间范围内,还测量了86 kDa SPC3酶活性的增加。然而,两种形式的酶具有相似的比活性,表明这种活性增加可能不是由于羧基末端截短。SPC3主要分子形式的不同酶学性质突出了理解调节这种内切蛋白酶羧基末端加工的分子事件的重要性。