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使用同步辐射进行的扩展圆二色性测量表明,网格蛋白衣被的组装不需要二级结构发生变化。

Extended circular dichroism measurements using synchrotron radiation show that the assembly of clathrin coats requires no change in secondary structure.

作者信息

Clarke D T, Jones G R

机构信息

Synchrotron Radiation Department, CLRC Daresbury Laboratory, Warrington, UK.

出版信息

Biochemistry. 1999 Aug 10;38(32):10457-62. doi: 10.1021/bi990604j.

Abstract

A number of models have been proposed for the assembly of clathrin triskelia into coats. However, little is known of the effects of assembly on triskelion structure. A more detailed knowledge of the way in which assembly affects triskelion structure would be valuable for assessing the relative merits of the proposed models. The development of a vacuum-ultraviolet circular dichroism (CD) instrument that uses synchrotron radiation as a light source has allowed us to extend the range of CD measurements to shorter wavelengths. This has greatly increased signal quality even for highly scattering samples. Also, we have improved CD data analysis to provide standard deviations for calculated secondary structure content. These developments have increased the precision of CD analysis beyond what has been thus far possible. Using these developments, we have determined the secondary structure content of all components of coat protein, under both assembly and dissociating conditions. The assembly of coats does not incur any change in secondary structure content, but a 10% loss of triskelion helical content accompanies assembly in the absence of AP-2. We conclude that coat assembly requires no detectable reorganization of triskelion structure. Our result indicates that AP-2 stabilizes helical structure in the triskelion, and we propose that this increases triskelion rigidity, restricting the range of coat sizes.

摘要

已经提出了许多关于网格蛋白三脚蛋白复合体组装成衣被的模型。然而,对于组装对三脚蛋白复合体结构的影响却知之甚少。更详细地了解组装影响三脚蛋白复合体结构的方式,对于评估所提出模型的相对优点将是有价值的。一种使用同步辐射作为光源的真空紫外圆二色性(CD)仪器的开发,使我们能够将CD测量范围扩展到更短的波长。即使对于高度散射的样品,这也大大提高了信号质量。此外,我们改进了CD数据分析,以提供计算出的二级结构含量的标准偏差。这些进展提高了CD分析的精度,超出了迄今为止可能达到的水平。利用这些进展,我们确定了在组装和解离条件下衣被蛋白所有组分的二级结构含量。衣被的组装不会引起二级结构含量的任何变化,但在没有AP - 2的情况下,组装会伴随着三脚蛋白复合体螺旋含量10%的损失。我们得出结论,衣被组装不需要三脚蛋白复合体结构进行可检测到的重组。我们的结果表明,AP - 2稳定了三脚蛋白复合体中的螺旋结构,并且我们提出这增加了三脚蛋白复合体的刚性,限制了衣被大小的范围。

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