Chang S C, Su M H, Lee Y H
Institute of Biochemistry, National Yang-Ming University, Taipei, Taiwan, Republic of China.
Biochem J. 1997 Jan 1;321 ( Pt 1)(Pt 1):29-37. doi: 10.1042/bj3210029.
The neutral metalloprotease (Npr) of Streptomyces cacaoi is synthesized as a prepro-Npr precursor form consisting of a secretory signal peptide, a propeptide and the mature metalloprotease. The maturation of Npr occurs extracellularly via an autoproteolytic processing of the secreted pro-Npr. The integrity of the propeptide is essential for the formation of mature active Npr but not for its secretion [Chang, Chang and Lee (1994) J. Biol. Chem. 269, 3548-3554]. In this study we investigated whether the secretion and maturation of Npr require the integrity of its signal peptide region and mature protease domain. Five signal peptide mutants were generated, including the substitution mutations at the positively charged region (mutant IR6LE), the central hydrophobic region (mutants GI19EL and G19N), the boundary of the hydrophobic core-cleavage region (mutant P30L) and at the residues adjacent to the signal peptidase cleavage site (mutant YA33SM). All these lesions delayed the export of Npr to the growth medium and also resulted in a 2-10-fold decrease in Npr export. The most severe effect was noted in mutants GI19EL and P30L. When these signal peptide mutations were fused separately with the propeptide lacking the Npr mature domain, the secretory defect on the propeptide was also observed, and this impairment was again more severely expressed in mutants GI19EL and P30L. Thus the Npr signal peptide seems to have more constraints on the hydrophobic core region and at the proline residue within the boundary of the hydrophobic core-cleavage site. Deletion mutations within the C-terminal mature protease domain that left its active site intact still blocked the proteolytic processing of mutant precursor forms of pro-Npr, although their secretions were unaffected. These results, together with our previous findings, strongly suggest that the signal peptide of Npr plays a pivotal role in the secretion of both Npr and the propeptide, but not in the maturation of Npr. On the contrary, the integrity of mature domain and propeptide is not critical for secretion of the Npr derivative but is essential for the formation of a functional Npr. Therefore the secretion and maturation of Npr are dependent on the integrity of the signal peptide, propeptide and mature protease domains, and the roles of these domains in this regard are functionally distinct.
可可链霉菌的中性金属蛋白酶(Npr)以一种前原Npr前体形式合成,该前体由一个分泌信号肽、一个前肽和成熟的金属蛋白酶组成。Npr的成熟通过分泌的前Npr的自蛋白水解加工在细胞外发生。前肽的完整性对于成熟活性Npr的形成至关重要,但对于其分泌并非必需[Chang、Chang和Lee(1994年)《生物化学杂志》269卷,3548 - 3554页]。在本研究中,我们研究了Npr的分泌和成熟是否需要其信号肽区域和成熟蛋白酶结构域的完整性。产生了五个信号肽突变体,包括在带正电荷区域的替换突变(突变体IR6LE)、中央疏水区域的突变(突变体GI19EL和G19N)、疏水核心 - 切割区域边界的突变(突变体P30L)以及信号肽酶切割位点相邻残基的突变(突变体YA33SM)。所有这些损伤都延迟了Npr向生长培养基的输出,并且还导致Npr输出量减少了2 - 10倍。在突变体GI19EL和P30L中观察到最严重的影响。当这些信号肽突变分别与缺乏Npr成熟结构域的前肽融合时,在前肽上也观察到了分泌缺陷,并且这种损伤在突变体GI19EL和P30L中再次更严重地表现出来。因此,Npr信号肽似乎在疏水核心区域以及疏水核心 - 切割位点边界内的脯氨酸残基上有更多限制。C末端成熟蛋白酶结构域内的缺失突变,其活性位点保持完整,尽管它们的分泌未受影响,但仍然阻止了前Npr突变体前体形式的蛋白水解加工。这些结果,连同我们之前的发现,强烈表明Npr的信号肽在Npr和前肽的分泌中起关键作用,但在Npr的成熟中并非如此。相反,成熟结构域和前肽的完整性对于Npr衍生物的分泌并不关键,但对于功能性Npr的形成是必不可少的。因此,Npr的分泌和成熟依赖于信号肽、前肽和成熟蛋白酶结构域的完整性,并且这些结构域在这方面的作用在功能上是不同的。