首页> 外文期刊>Archives of Biochemistry and Biophysics >cDNA cloning of brevinase, a heterogeneous two-chain fibrinolytic enzyme from Agkistrodon blomhoffii brevicaudus snake venom, by serial hybridization-polymerase chain reaction
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cDNA cloning of brevinase, a heterogeneous two-chain fibrinolytic enzyme from Agkistrodon blomhoffii brevicaudus snake venom, by serial hybridization-polymerase chain reaction

机译:通过连续杂交-聚合酶链反应从短吻蛇蛇毒中异源性双链纤溶酶brevinase的cDNA克隆

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Brevinase is a heterogeneous two-chain fibrinolytic enzyme, different from all of the known single-chain enzymes. A cDNA encoding brevinase was cloned from the venom gland of Agkistrodon blomhoffii brevicaudus by serial hybridization-PCR. Serial hybridization-PCR effectively amplified the complete cDNA of brevinase from the mixture of closely related transcripts. The cDNA sequence of 744 nucleotides was determined. The cDNA sequence included an open reading frame of 233 amino acids composed of an A chain (77 residues) and a B chain (156 residues). The deduced amino acid sequence included a potential N-glycosylation site (N-54-X-S-56), O-glycosylation site (Ser(179)), and RGD sequence. Brevinase included a unique Arg(77) residue at the C-terminus of the A chain, distinguishing it from all of the compared homologous single-chain proteases. It could be assumed that a posttranslational cleavage site is located between Arg(77) and Asn(78). Based on the sequence similarity to those of the venom proteases, we could deduce that the critical catalytic residues are His(40) Asn(78), Asp(85), and Ser(179) and that the six potential disulfide bonds are Cys(117)-Cys(185), Cys(149)-Cys(164) Cys(175)-Cys(200), Cys(117)-Cys(185), Cys(149)-Cys(164), and Cys(175)-Cys(200). Despite the conservation of critical sequences, the phylogenetic tree showed that two-chain brevinase might be evolved separately from the homologous single-chain proteases, (C) 2000 Academic Press. [References: 26]
机译:Brevinase是一种异质性的二链纤溶酶,与所有已知的单链酶不同。通过串行杂交-PCR从短吻线虫(Agkistrodon blomhoffii brevicaudus)的毒腺中克隆了编码brevinase的cDNA。序列杂交-PCR从紧密相关的转录本混合物中有效扩增了brevinase的完整cDNA。确定了744个核苷酸的cDNA序列。 cDNA序列包括由A链(77个残基)和B链(156个残基)组成的233个氨基酸的开放阅读框。推导的氨基酸序列包括潜在的N-糖基化位点(N-54-X-S-56),O-糖基化位点(Ser(179))和RGD序列。 Brevinase在A链的C末端包含一个独特的Arg(77)残基,使其与所有比较的同源单链蛋白酶区分开来。可以假定翻译后的切割位点位于Arg(77)和Asn(78)之间。基于与毒液蛋白酶的序列相似性,我们可以推断出关键的催化残基是His(40)Asn(78),Asp(85)和Ser(179),六个潜在的二硫键是Cys( 117)-Cys(185),Cys(149)-Cys(164)Cys(175)-Cys(200),Cys(117)-Cys(185),Cys(149)-Cys(164)和Cys( 175)-Cys(200)。尽管保留了关键序列,但系统进化树表明,双链brevinase可能与同源单链蛋白酶分开进化,(C)2000 Academic Press。 [参考:26]

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