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Side-chain mobility and the calculation of tyrosyl circular dichroism of proteins. Implications of a test with insulin and des-B1-phenylalanine insulin.

机译:蛋白质的侧链迁移率和酪氨酰圆二色性的计算。胰岛素和des-B1-苯丙氨酸胰岛素测试的意义。

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摘要

Previous calculations using crystal structure coordinates (Strickland and Mercola [1976], Biochemistry. 15: 3857) have predicted that about 40 percent of the calculated tyrosyl circular dichroism of hexameric insulin is due to one of the four tyrosine residues: viz. the A14-tyrosine interacting with the nearby B1-phenylalanine ring group. We have tested this prediction by measuring the tyrosyl circular dichroism of an isomorphous analogue of insulin, des-B1-phenylalanine-insulin. Contrary to expectation, the resulting circular dichroism was the same as that of insulin. It is concluded that the B1-phenylalanine residue does not in fact make a large contribution to the circular dichroism of A14-tyrosine. This result is probably due to the thermal motion of the B1 and A14 ring groups not taken into account by the calculations. An example of the effects of thermal motion on the calculated circular dichroism is given and improvements that do take into account thermal motion are discussed.
机译:先前使用晶体结构坐标进行的计算(Strickland and Mercola [1976],Biochemistry。15:3857)已经预测,六聚体胰岛素的约40%的酪氨酰圆二色性的计算是由于四个酪氨酸残基之一。 A14酪氨酸与附近的B1-苯丙氨酸环基相互作用。我们已经通过测量胰岛素同构类似物des-B1-苯丙氨酸-胰岛素的酪氨酰圆二色性来检验了这一预测。与预期相反,产生的圆二色性与胰岛素相同。结论是,B1-苯丙氨酸残基实际上对A14-酪氨酸的圆二色性没有很大贡献。该结果可能是由于计算中未考虑B1和A14环组的热运动。给出了热运动对计算的圆二色性影响的示例,并讨论了考虑到热运动的改进。

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