Koo Bon-Hun, Longpré Jean-Michel, Somerville Robert P T, Alexander J Preston, Leduc Richard, Apte Suneel S
Department of Biomedical Engineering and Orthopaedic Research Center, Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, Ohio 44195, USA.
J Biol Chem. 2007 Jun 1;282(22):16146-54. doi: 10.1074/jbc.M610161200. Epub 2007 Apr 2.
ADAMTS9 is a secreted, cell-surface-binding metalloprotease that cleaves the proteoglycans versican and aggrecan. Unlike most precursor proteins, the ADAMTS9 zymogen (pro-ADAMTS9) is resistant to intracellular processing. Instead, pro-ADAMTS9 is processed by furin at the cell surface. Here, we investigated the role of the ADAMTS9 propeptide in regulating its secretion and proteolytic activity. Removal of the propeptide abrogated secretion of the ADAMTS9 catalytic domain, and secretion was inefficiently restored by expression of the propeptide in trans. Substitution of Ala for Asn residues within each of three consensus N-linked glycosylation sites in the propeptide abrogated ADAMTS9 secretion. Thus, the propeptide is an intramolecular chaperone whose glycosylation is critical for secretion of the mature enzyme. In addition to two previously identified furin-processing sites (Arg74 downward arrow and Arg287 downward arrow) the ADAMTS9 propeptide was also furin-processed at Arg209. Substitution of Ala for Arg74, Arg209, and Arg287 resulted in secretion of an unprocessed zymogen. Unexpectedly, versican incubated with cells expressing this pro-ADAMTS9 was processed to a greater extent than when incubated with cells expressing wild-type, furin-processable ADAMTS9. Moreover, cells and medium treated with the proprotein convertase inhibitor decanoyl-Arg-Val-Lys-Arg-chloromethyl ketone had greater versican-cleaving activity than untreated cells. Following furin processing of pro-ADAMTS9, propeptide fragments maintained a non-covalent association with the catalytic domain. Collectively, these observations suggest that, unlike other metalloproteases, furin processing of the ADAMTS9 propeptide reduces its catalytic activity. Thus, the propeptide is a key functional domain of ADAMTS9, mediating an unusual regulatory mechanism that may have evolved to ensure maximal activity of this protease at the cell surface.
ADAMTS9是一种分泌型、细胞表面结合金属蛋白酶,可切割蛋白聚糖versican和聚集蛋白聚糖。与大多数前体蛋白不同,ADAMTS9酶原(pro-ADAMTS9)对细胞内加工具有抗性。相反,pro-ADAMTS9在细胞表面被弗林蛋白酶加工。在此,我们研究了ADAMTS9前肽在调节其分泌和蛋白水解活性中的作用。去除前肽可消除ADAMTS9催化结构域的分泌,并且通过反式表达前肽可低效恢复分泌。将前肽中三个共有N-连接糖基化位点中的每个位点的天冬酰胺残基替换为丙氨酸可消除ADAMTS9的分泌。因此,前肽是一种分子内伴侣,其糖基化对于成熟酶的分泌至关重要。除了两个先前确定的弗林蛋白酶加工位点(Arg74↓和Arg287↓)外,ADAMTS9前肽在Arg209处也被弗林蛋白酶加工。将Arg74、Arg209和Arg287替换为丙氨酸导致未加工酶原的分泌。出乎意料的是,与表达这种pro-ADAMTS9的细胞一起孵育的versican比与表达野生型、可被弗林蛋白酶加工的ADAMTS9的细胞一起孵育时被加工的程度更大。此外,用前体蛋白转化酶抑制剂癸酰-Arg-Val-Lys-Arg-氯甲基酮处理的细胞和培养基比未处理的细胞具有更高的versican切割活性。pro-ADAMTS9被弗林蛋白酶加工后,前肽片段与催化结构域保持非共价结合。总的来说,这些观察结果表明,与其他金属蛋白酶不同,ADAMTS9前肽的弗林蛋白酶加工降低了其催化活性。因此,前肽是ADAMTS9的关键功能结构域,介导一种不同寻常的调节机制,该机制可能已经进化以确保这种蛋白酶在细胞表面具有最大活性。