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Subunit conformation and dynamics in a heterodimeric protein: studies of the hybrid isozyme of creatine kinase

机译:异二聚体蛋白中的亚基构象和动力学:肌酸激酶杂合酶的研究

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摘要

Several physical properties of creatine kinase (EC 2.7.3.2) isozymes MM (CK-MM, muscle-type) and BB (CK-BB, braintype), both homodimers, and isozyme MB (CK-MB), a heterodimer, were compared to determine how formation of the hybrid modifies subunit conformation and dynamics. Circular dichroic spectra revealed additional α-helical content for the hybrid isozyme. Double-beam absorption difference spectra between CK-MB and a stoichiometric mixture of CK-MM and CK-BB revealed decreased exposure of intrinsic chromophores in the hybrid. The relative intensity of the intrinsic fluorescence of CK-MB was between the two homodimers, but was 16% closer to the less fluorescent CK-MM. Steady state anisotropy spectra and decay of the anisotropy of CK derivatized on a single subunit with the fluorescent sulfhydryl reagent 5-[2-(iodoacetyl)amino-ethyl]aminonaphthalene-1-sulfonate indicated that the derivatized sites are more flexible in the heterodimer. The slow component in the anisotropy decay suggests that hybridization results in a small increase in the packing density or contraction of overall conformation of the B-subunit. The K_M for MgATP with singly derivatized CK-MB was the same as the K_M for the native enzyme. However, derivatization of a single subunit caused the V_(max) to decrease by greater than 50%, which indicates that subunit-subunit interactions may modulate the activity of CK. A model for assembly of CK-MB is proposed which includes subunit characteristics more similar to those found in the muscle-type homodimer than in the brain-type homodimer and increased flexibility of the active site domain of both subunits.
机译:比较了肌酸激酶(EC 2.7.3.2)同功酶MM(CK-MM,肌肉型)和BB(同型二聚体)和同工酶MB(CK-MB)(异二聚体)的几种物理性质确定杂种的形成如何修饰亚基构象和动力学。圆二色光谱揭示了杂合同工酶的其他α-螺旋含量。 CK-MB与CK-MM和CK-BB的化学计量混合物之间的双束吸收差异光谱显示杂化体中固有发色团的暴露减少。 CK-MB固有荧光的相对强度在两种同二聚体之间,但与荧光较弱的CK-MM接近16%。荧光巯基试剂5- [2-(碘乙酰基)氨基-乙基]氨基萘-1-磺酸衍生的单个亚基上衍生的CK的稳态各向异性光谱和CK的各向异性衰减表明,衍生化的位点在异二聚体中更具柔性。各向异性衰减的缓慢成分表明,杂交导致B-亚基的堆积密度或总体构象收缩的少量增加。具有单独衍生的CK-MB的MgATP的K_M与天然酶的K_M相同。然而,单个亚基的衍生化导致V_(max)降低大于50%,这表明亚基-亚基相互作用可能调节CK的活性。提出了一种CK-MB的组装模型,该模型包括与在肌肉型同型二聚体中发现的亚基特征比在脑型同型二聚体中发现的亚基特征更相似,并且两个亚基的活性位点域具有更大的柔性。

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