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Bioengineering coagulation factor Xa substrate specificity into Streptomyces griseus trypsin.

机译:生物工程凝血因子Xa底物特异性进入灰链霉菌胰蛋白酶。

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摘要

Extended substrate specificity is exhibited by a number of highly evolved members of the S1 peptidase family, such as the vertebrate blood coagulation proteases. Dissection of this substrate specificity has been hindered by the complexity and physiological requirements of these proteases. In order to understand the mechanisms of extended substrate specificity, a bacterial trypsin-like enzyme, Streptomyces griseus trypsin (SGT), was chosen as a scaffold for the introduction of extended substrate specificity through structure-based genetic engineering.; Recombinant and mutant SGT proteases were produced in a B. subtilis expression system, which constitutively secretes active protease into the extracellular medium at greater than 15 mg/L of culture. Comparison of the recombinant wild-type protease to the natively produced enzyme demonstrated near identity in enzymatic and structural properties. To begin construction of a high specificity protease, four mutants in the S 1 substrate binding pocket (T190A, T190S, T190V, and T190P) were produced and examined for differences in the Arg:Lys preference. Only the T190P mutant of SGT demonstrated a significant increase in P1 arginine to lysine preference---a three-fold improvement to 16:1---with only a minor reduction in catalytic activity (kcat reduction of 25%). The 1.91 A resolution crystal structure of T190P mutant of SGT in complex with the small molecule inhibitor benzamidine was subsequently determined. The model shows that the increased preference for Arg over Lys side chains in the S1 pocket is the result of the second shell residues of the S1 pocket, particularly by the N-terminal residue of the protease which does not conflict with the introduced proline ring.; Using the T190P mutant of SGT as a starting point, coagulation factor Xa (FXa) substrate specificity determinants were then introduced by additional site-directed mutagenesis. To aid in purification of the recombinant proteases a hexa-histidine tag was added to the C-terminus of the protein. Addition of the purification tag reduced the ability of the expression host to produce the enzyme (3 mg/L of culture) but simplified the purification of SGT from the culture medium. Various combinations of a two-residue loop and a number of point mutations at positions 99, 172, 174, 180, and 217 were constructed and characterized in SGT. The mutant bearing mutations at all positions except residue 217 demonstrated a moderate preference for FXa substrates as determined using chromogenic synthetic peptides. However, the kinetic properties of the mutant enzyme suggested that the 172-loop, a member of the S3/S4 substrate binding pocket, is not in a conformation similar to FXa. (Abstract shortened by UMI.)
机译:S1肽酶家族的许多高度进化成员,例如脊椎动物的血液凝固蛋白酶,表现出扩展的底物特异性。这些蛋白酶的复杂性和生理要求阻碍了这种底物特异性的分离。为了了解扩展底物特异性的机制,选择了一种细菌胰蛋白酶样酶灰链霉菌胰蛋白酶(SGT)作为通过基于结构的基因工程引入扩展底物特异性的支架。在枯草芽孢杆菌表达系统中产生重组SGT和突变SGT蛋白酶,该系统以大于15 mg / L的培养组成型将活性蛋白酶分泌到细胞外培养基中。重组野生型蛋白酶与天然产生的酶的比较表明在酶学和结构性质上几乎相同。为了开始构建高特异性蛋白酶,在S 1底物结合口袋中产生了四个突变体(T190A,T190S,T190V和T190P),并检查了Arg:Lys偏好的差异。只有SGT的T190P突变体显示P1精氨酸对赖氨酸的偏好性显着增加-与16:1-相比提高了三倍-催化活性仅有少量降低(kcat降低了25%)。随后确定了与小分子抑制剂苄am配合的SGT的T190P突变体的1.91 A解析晶体结构。该模型显示,S1口袋中Arg对Lys侧链的偏好增加是S1口袋中第二个壳残基的结果,尤其是蛋白酶的N端残基,该残基与引入的脯氨酸环不冲突。 ;然后使用SGT的T190P突变体作为起点,然后通过其他定点诱变引入凝血因子Xa(FXa)底物特异性决定簇。为了帮助纯化重组蛋白酶,将六组氨酸标签添加到蛋白质的C末端。添加纯化标签降低了表达宿主产生酶的能力(3 mg / L培养物),但简化了从培养基中SGT的纯化。在SGT中构建并表征了两个残基环和99、172、174、180和217位点突变的各种组合。如使用发色合成肽所确定的,在除残基217外的所有位置处均具有突变的突变体显示出对FXa底物的中等偏爱。但是,突变酶的动力学性质表明,S3 / S4底物结合口袋成员之一的172环与FXa的构象不同。 (摘要由UMI缩短。)

著录项

  • 作者

    Page, Michael J.;

  • 作者单位

    The University of British Columbia (Canada).;

  • 授予单位 The University of British Columbia (Canada).;
  • 学科 Biology Molecular.; Engineering Biomedical.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;生物医学工程;
  • 关键词

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