Bonod-Bidaud Christelle, Beraud Mickaël, Vaganay Elisabeth, Delacoux Frédéric, Font Bernard, Hulmes David J S, Ruggiero Florence
Université de Lyon, Université Lyon 1, Lyon France.
Biochem J. 2007 Jul 15;405(2):299-306. doi: 10.1042/BJ20070051.
The proteolytic processing of procollagen V is complex and depends on the activity of several enzymes among which the BMP-1 (bone morphogenetic protein-1)/tolloid metalloproteinase and the furin-like proprotein convertases. Few of these processing interactions could have been predicted by analysing the presence of conserved consensus sequences in the proalpha1(V) chain. In the present study we opted for a cell approach that allows a straightforward identification of processing interactions. A construct encompassing the complete N-terminal end of the proalpha1(V) chain, referred to as Nalpha1, was recombinantly expressed to be used for enzymatic assays and for antibody production. Structural analysis showed that Nalpha1 is a monomer composed of a compact globule and an extended tail, which correspond respectively to the non-collagenous Nalpha1 subdomains, TSPN-1 (thrombospondin-1 N-terminal domain-like) and the variable region. Nalpha1 was efficiently cleaved by BMP-1 indicating that the triple helix is not required for enzyme activity. By mutating residues flanking the cleavage site, we showed that the aspartate residue at position P2' is essential for BMP-1 activity. BMP-1 activity at the C-terminal end of the procollagen V was assessed by generating a furin double mutant (R1584A/R1585A). We showed that, in absence of furin activity, BMP-1 is capable of processing the C-propeptide even though less efficiently than furin. Altogether, our results provide new relevant information on this complex and poorly understood mechanism of enzymatic processing in procollagen V function.
原胶原蛋白V的蛋白水解加工过程很复杂,依赖于几种酶的活性,其中包括骨形态发生蛋白-1(BMP-1)/类 tolloid 金属蛋白酶和弗林蛋白酶样前体蛋白转化酶。通过分析原α1(V)链中保守共有序列的存在情况,几乎无法预测这些加工相互作用中的少数几种。在本研究中,我们选择了一种细胞方法,该方法能够直接鉴定加工相互作用。构建了一个包含原α1(V)链完整N末端的结构,称为Nα1,通过重组表达用于酶活性测定和抗体生产。结构分析表明,Nα1是由一个紧密球体和一个延伸尾部组成的单体,分别对应于非胶原Nα1亚结构域、血小板反应蛋白-1 N末端结构域样(TSPN-1)和可变区。Nα1被BMP-1有效切割,表明酶活性不需要三螺旋结构。通过突变切割位点两侧的残基,我们发现P2'位置的天冬氨酸残基对BMP-1活性至关重要。通过构建弗林蛋白酶双突变体(R1584A/R1585A)评估了原胶原蛋白V C末端的BMP-1活性。我们发现,在没有弗林蛋白酶活性的情况下,BMP-1能够加工C-前肽,尽管效率低于弗林蛋白酶。总之,我们的结果为原胶原蛋白V功能中这种复杂且了解甚少的酶促加工机制提供了新的相关信息。