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首页> 外文期刊>The Biochemical Journal >Sheep mast-cell proteinases-1 and -3: cDNA cloning, primary structure and molecular modelling of the enzymes and further studies on substrate specificity.
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Sheep mast-cell proteinases-1 and -3: cDNA cloning, primary structure and molecular modelling of the enzymes and further studies on substrate specificity.

机译:绵羊肥大细胞蛋白酶-1和-3:酶的cDNA克隆,一级结构和分子模型以及对底物特异性的进一步研究。

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Sheep mast-cell proteinase-1 (sMCP-1) is a serine proteinase expressed predominantly by mucosal mast cells, with specificity for cleavage C-terminal to basic and hydrophobic amino acid residues. A cDNA encoding sMCP-1 has been cloned using reverse transcriptase (RT)-PCR. It appears to be translated as a pre-proenzyme with a 17-amino-acid signal peptide, a basic 2-amino-acid propeptide and a 226-amino-acid catalytic domain. A second cDNA, encoding a serine proteinase 90% identical with sMCP-1, was also cloned and named sMCP-3. Molecular models were constructed for both enzymes using coordinates for the refined X-ray structures of human cathepsin G, chymase and rat mast-cell proteinase-2. The model for sMCP-1 suggests that the acidic Asp-226 side chain extends into the substrate-binding pocket, hydrogen-bonding with Ser-190 on the opposite side and bisecting the pocket. The location of an acidic moiety in this position would favour interaction with basic substrate residues and binding of aromatic residues is rationalized by interaction of the positively charged equatorial plane with Asp-226. The balance between chymotryptic and tryptic activities of sMCP-1 was found to be sensitive to salt concentration, with increasing univalent cation concentration favouring chymotryptic activity relative to the tryptic. Using a peptide substrate representing residues 36-59 of the human thrombin receptor, increasing salt concentration favoured cleavage at Phe-43 rather than at Arg-41.
机译:绵羊肥大细胞蛋白酶-1(sMCP-1)是一种主要由粘膜肥大细胞表达的丝氨酸蛋白酶,对C端切割碱性和疏水性氨基酸残基具有特异性。已使用逆转录酶(RT)-PCR克隆了编码sMCP-1的cDNA。它似乎被翻译成具有17个氨基酸的信号肽,碱性的2个氨基酸的前肽和226个氨基酸的催化域的原酶。还克隆了第二个cDNA,其编码与sMCP-1 90%相同的丝氨酸蛋白酶,并命名为sMCP-3。使用人组织蛋白酶G,糜蛋白酶和大鼠肥大细胞蛋白酶2的精确X射线结构坐标,为这两种酶构建了分子模型。 sMCP-1的模型表明,酸性Asp-226侧链延伸到与底物结合的口袋中,与另一侧的Ser-190氢键结合,并平分口袋。酸性部分在该位置的位置将有利于与碱性底物残基相互作用,并且通过带正电的赤道面与Asp-226的相互作用使芳香族残基的结合合理化。发现sMCP-1的胰蛋白酶和胰蛋白酶活性之间的平衡对盐浓度敏感,相对于胰蛋白酶,单价阳离子浓度的增加有利于胰蛋白酶活性。使用代表人凝血酶受体残基36-59的肽底物,增加盐浓度有助于在Phe-43而不是在Arg-41处裂解。

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