首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Tri-domain Bifunctional Inhibitor of Metallocarboxypeptidases A and Serine Proteases Isolated from Marine Annelid Sabellastarte magnifica
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Tri-domain Bifunctional Inhibitor of Metallocarboxypeptidases A and Serine Proteases Isolated from Marine Annelid Sabellastarte magnifica

机译:从海洋Annelid Sabellastarte magnifica分离的金属羧基肽酶A和丝氨酸蛋白酶的三域双功能抑制剂。

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摘要

This study describes a novel bifunctional metallocarboxypeptidase and serine protease inhibitor (SmCI) isolated from the tentacle crown of the annelid Sabellastarte magnifica. SmCI is a 165-residue glycoprotein with a molecular mass of 19.69 kDa (mass spectrometry) and 18 cysteine residues forming nine disulfide bonds. Its cDNA was cloned and sequenced by RT-PCR and nested PCR using degenerated oligonucleotides. Employing this information along with data derived from automatic Edman degradation of peptide fragments, the SmCI sequence was fully characterized, indicating the presence of three bovine pancreatic trypsin inhibitor/Kunitz domains and its high homology with other Kunitz serine protease inhibitors. Enzyme kinetics and structural analyses revealed SmCI to be an inhibitor of human and bovine pancreatic metallocarboxypeptidases of the A-type (but not B-type), with nanomolar Ki values. SmCI is also capable of inhibiting bovine pancreatic trypsin, chymotrypsin, and porcine pancreatic elastase in varying measures. When the inhibitor and its nonglycosylated form (SmCI N23A mutant) were overproduced recombinantly in a Pichia pastoris system, they displayed the dual inhibitory properties of the natural form. Similarly, two bi-domain forms of the inhibitor (recombinant rSmCI D1-D2 and rSmCI D2-D3) as well as its C-terminal domain (rSmCI-D3) were also overproduced. Of these fragments, only the rSmCI D1-D2 bi-domain retained inhibition of metallocarboxypeptidase A but only partially, indicating that the whole tri-domain structure is required for such capability in full. SmCI is the first proteinaceous inhibitor of metallocarboxypeptidases able to act as well on another mechanistic class of proteases (serine-type) and is the first of this kind identified in nature.
机译:这项研究描述了一种新型的双功能金属羧肽酶和丝氨酸蛋白酶抑制剂(SmCI),其从无名氏无脊椎动物Sabellastarte magnifica的触手冠中分离出来。 SmCI是165个残基的糖蛋白,分子量为19.69 kDa(质谱),有18个半胱氨酸残基形成9个二硫键。使用简并的​​寡核苷酸通过RT-PCR和巢式PCR克隆并测序其cDNA。利用该信息以及来自肽片段自动Edman降解的数据,SmCI序列得到了充分表征,表明存在三个牛胰胰蛋白酶抑制剂/ Kunitz结构域,并且与其他Kunitz丝氨酸蛋白酶抑制剂具有高度同源性。酶动力学和结构分析表明,SmCI可以抑制人和牛的A型(而非B型)胰腺金属羧肽酶,其Kimol值为纳摩尔浓度。 SmCI还能够以不同的方式抑制牛胰胰蛋白酶,胰凝乳蛋白酶和猪胰弹性蛋白酶。当在巴斯德毕赤酵母系统中重组生产抑制剂及其非糖基化形式(SmCI N23A突变体)时,它们表现出天然形式的双重抑制特性。同样,抑制剂的两个双结构域形式(重组rSmCI D1-D2和rSmCI D2-D3)及其C端结构域(rSmCI-D3)也被过量生产。在这些片段中,只有rSmCI D1-D2双结构域保留了对金属羧肽酶A的抑制作用,但仅部分抑制了该结构,这表明完整的三结构域结构是完整实现这种能力所必需的。 SmCI是第一个能够同时作用于另一类蛋白酶(丝氨酸型)的金属羧肽酶的蛋白质抑制剂,也是自然界中首次发现的此类抑制剂。

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