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通过胰蛋白酶催化水解和核磁共振光谱推导得出,南瓜胰蛋白酶抑制剂-V中Arg50和Arg52对结合环灵活性和稳定性的差异调节。

Differential modulation of binding loop flexibility and stability by Arg50 and Arg52 in Cucurbita maxima trypsin inhibitor-V deduced by trypsin-catalyzed hydrolysis and NMR spectroscopy.

作者信息

Cai M, Huang Y, Prakash O, Wen L, Dunkelbarger S P, Huang J K, Liu J, Krishnamoorthi R

机构信息

Departmemt of Biochemistry, Kansas State University, Manhattan, 66506, USA.

出版信息

Biochemistry. 1996 Apr 16;35(15):4784-94. doi: 10.1021/bi953038a.

Abstract

The side chains of Arg50 and Arg52 iin Cucurbita maxima trypsin inhibitor-V (CMTI-V) anchor the binding loop to the scaffold region [Cai, M., Gong, Y., Kao, J.L-F., & Krishnamoorthi, R. (1995) Biochemistry 34, 5201-5211]. The consequences of these hydrogen-bonding and electrostatic interactions on the conformational flexibility and stability of the binding loop were evaluated by trypsin-catalyzed hydrolysis of CMTI-V mutants, in which each of the arginines was individually replaced with Ala, Lys, or Gln by genetic engineering methods. All mutants exhibited significantly increased vulnerability to the protease attack at many sites, including the reactive-site (Lys44-Asp45 peptide bond), with the R50 mutants showing much more pronounced effects than the R52 counterparts. For CmTI-V and the mutants studied, a qualitative correlation was inferred between binding loop flexibility and retention time on a reverse-phase high-pressure liquid chromatography C-18 column. The R50 mutants were found to be more flexible than the corresponding R52 versions. These results demonstrate that Arg50 contributes more to the stability and function of CMTI-V. The differing strengths of the hydrogen bonds made by Arg50 and Arg52 were characterized by determining the internal dynamics of their side chains at pH 5.0 and 2.5: 15N NMR longitudinal and transverse relaxation rates and 15N-1H nuclear Overhauser effect (NOE) enhancements were measured for the main-chain and side-chain NH groups in 15N-labeled recombinant CMTI-V (rCMTI-V) and the model-free parameters [Lipari, G., & Szabo, A.(1982) J. Am. Chem. Soc. 104, 4546-59; 4559-4570] were calculated. At both pH 5.0 and 2.5, the arginines at positions 26, 47, 58 and 66 are found to be highly mobile, as the caluculated general order parameters, S2 values, of their NepsilonH groups fall in the range 0.03-0.18. The corresponding values for Arg50 amd Arg52 are 0.73 and 0.63, respectively, at pH 5.0, thus confirming that the two arginines are rigid and hydrogen bonded. At pH 2.5, these hydrogen bonds are still retained with Arg50 appearing to be more restrained (S2 = 0.71) than Arg52 (S2 = 0.56). This is consistent a greater contribution by Arg50 to the conformational stability of the reactive-site loop in CMTI-V. The results also indicate that the Arg50 and Arg52 side chains are not hydrogen-bonded to carboxylate groups, which would be protonated at pH 2.5 and, hence, unavailable for hydrogen-bonding interactions. The overall folding of rCMTI-V appears not to be significantly affected by the pH change, as indicated by comparisons of 1H and 15N chemical shifts, sequential NOE cross-peaks, and S2 values of the backbone atoms, and the conserved side-chain dynamics of Trp9 and Trp54--residues that are involved in hydrophobic and hydrogen-bonding interactions with others in the protein core and the binding loop, respectively.

摘要

南瓜胰蛋白酶抑制剂-V(CMTI-V)中Arg50和Arg52的侧链将结合环锚定到支架区域[Cai, M., Gong, Y., Kao, J.L-F., & Krishnamoorthi, R. (1995) Biochemistry 34, 5201-5211]。通过胰蛋白酶催化CMTI-V突变体的水解来评估这些氢键和静电相互作用对结合环构象灵活性和稳定性的影响,其中通过基因工程方法将每个精氨酸分别替换为丙氨酸、赖氨酸或谷氨酰胺。所有突变体在许多位点,包括活性位点(Lys44-Asp45肽键),对蛋白酶攻击的敏感性都显著增加,R50突变体的影响比R52突变体更明显。对于CmTI-V和所研究的突变体,在反相高压液相色谱C-18柱上推断出结合环灵活性与保留时间之间存在定性相关性。发现R50突变体比相应的R52变体更灵活。这些结果表明,Arg50对CMTI-V的稳定性和功能贡献更大。通过测定其在pH 5.0和2.5时侧链的内部动力学来表征Arg50和Arg52形成的氢键强度差异:测量了15N标记的重组CMTI-V(rCMTI-V)中主链和侧链NH基团的15N NMR纵向和横向弛豫率以及15N-1H核Overhauser效应(NOE)增强,并计算了无模型参数[Lipari, G., & Szabo, A.(1982) J. Am. Chem. Soc. 104, 4546-59; 4559-4570]。在pH 5.0和2.5时,发现26、47、58和66位的精氨酸高度可移动,因为其NεH基团的计算广义序参数S2值落在0.03-0.18范围内。在pH 5.0时,Arg50和Arg52的相应值分别为0.73和0.63,从而证实这两个精氨酸是刚性的且形成了氢键。在pH 2.5时,这些氢键仍然保留,Arg50似乎比Arg52更受限制(S2 = 0.71)(S2 =

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