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通过多维异核核磁共振光谱法测定钙饱和肌钙蛋白C单体的溶液二级结构。

Solution secondary structure of calcium-saturated troponin C monomer determined by multidimensional heteronuclear NMR spectroscopy.

作者信息

Slupsky C M, Reinach F C, Smillie L B, Sykes B D

机构信息

Department of Biochemistry, University of Alberta, Edmonton, Canada.

出版信息

Protein Sci. 1995 Jul;4(7):1279-90. doi: 10.1002/pro.5560040704.

Abstract

The solution secondary structure of calcium-saturated skeletal troponin C (TnC) in the presence of 15% (v/v) trifluoroethanol (TFE), which has been shown to exist predominantly as a monomer (Slupsky CM, Kay CM, Reinach FC, Smillie LB, Sykes BD, 1995, Biochemistry 34, forthcoming), has been investigated using multidimensional heteronuclear nuclear magnetic resonance spectroscopy. The 1H, 15N, and 13C NMR chemical shift values for TnC in the presence of TFE are very similar to values obtained for calcium-saturated NTnC (residues 1-90 of skeletal TnC), calmodulin, and synthetic peptide homodimers. Moreover, the secondary structure elements of TnC are virtually identical to those obtained for calcium-saturated NTnC, calmodulin, and the synthetic peptide homodimers, suggesting that 15% (v/v) TFE minimally perturbs the secondary and tertiary structure of this stably folded protein. Comparison of the solution structure of calcium-saturated TnC with the X-ray crystal structure of half-saturated TnC reveals differences in the phi/psi angles of residue Glu 41 and in the linker between the two domains. Glu 41 has irregular phi/psi angles in the crystal structure, producing a kink in the B helix, whereas in calcium-saturated TnC, Glu 41 has helical phi/psi angles, resulting in a straight B helix. The linker between the N and C domains of calcium-saturated TnC is flexible in the solution structure.

摘要

已使用多维异核核磁共振光谱法研究了在15%(v/v)三氟乙醇(TFE)存在下钙饱和骨骼肌肌钙蛋白C(TnC)的溶液二级结构,此前已证明其主要以单体形式存在(Slupsky CM、Kay CM、Reinach FC、Smillie LB、Sykes BD,1995年,《生物化学》34卷,即将发表)。在TFE存在下,TnC的1H、15N和13C NMR化学位移值与钙饱和NTnC(骨骼肌TnC的1-90位残基)、钙调蛋白和合成肽同二聚体获得的值非常相似。此外,TnC的二级结构元件与钙饱和NTnC、钙调蛋白和合成肽同二聚体获得的元件几乎相同,这表明15%(v/v)的TFE对这种稳定折叠蛋白的二级和三级结构的干扰最小。将钙饱和TnC的溶液结构与半饱和TnC的X射线晶体结构进行比较,发现残基Glu 41的φ/ψ角以及两个结构域之间的连接区存在差异。在晶体结构中,Glu 41具有不规则的φ/ψ角,在B螺旋中产生一个扭结,而在钙饱和TnC中,Glu 41具有螺旋状的φ/ψ角,导致B螺旋呈直线状。钙饱和TnC的N和C结构域之间的连接区在溶液结构中是灵活的。

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