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中等大小烟草花叶病毒蛋白质聚合物的沉降平衡测量

Sedimentation equilibrium measurements of the intermediate-size tobacco mosaic virus protein polymers.

作者信息

Correia J J, Shire S, Yphantis D A, Schuster T M

出版信息

Biochemistry. 1985 Jun 18;24(13):3292-7. doi: 10.1021/bi00334a033.

Abstract

Short-column sedimentation equilibrium methods have been applied for the first time to tobacco mosaic virus (TMV) protein (0.1 M ionic strength orthophosphate) at pH 6.5 and at pH 7.0 to estimate molecular weights. Previous sedimentation velocity experiments at pH 6.5, 20 degrees C have led to the conclusion that the major boundary with an S0(20),w value of 24.4 +/- 0.1 S consists of a distribution of polymers which are mainly three-turn, 48-51-subunit helical rod aggregates. The directly measured z-average molecular weights together with sedimentation velocity data are entirely consistent with this assignment of a three-turn aggregate. Molecular weights have also been determined under two conditions where a large mass fraction of the protein sediments with an S0(20),w value of 20.3 +/- 0.2 S. At pH 6.5, 6-8 degrees C, the aggregates in this boundary are metastable and correspond to 50-60% of the preparation. At pH 7.0, 20 degrees C at equilibrium, 65-75% of the protein sediments at 20.3 S. The 20.3S boundary is very similar under both conditions and is interpreted as being composed of a distribution of protein aggregates centered about 39 +/- 2 subunits. This result is important in the interpretation of previous kinetic measurements of TMV self-assembly. The current view is that the 34-subunit structure of TMV protein, in the form of a cylindrical disk which is made up of two 17-subunit layers and has been characterized in single-crystal X-ray diffraction studies, plays a central role in the initial binding steps with RNA. The present results are not consistent with the view that there is a significant concentration of the TMV protein disk structure in solution under the usual conditions of TMV self-assembly.

摘要

短柱沉降平衡法首次应用于烟草花叶病毒(TMV)蛋白(离子强度为0.1M的正磷酸盐),在pH 6.5和pH 7.0条件下估算分子量。之前在pH 6.5、20℃下进行的沉降速度实验得出结论,S0(20),w值为24.4±0.1 S的主要边界由聚合物分布组成,这些聚合物主要是三圈、48 - 51亚基的螺旋杆聚集体。直接测量的z - 平均分子量与沉降速度数据完全符合这种三圈聚集体的归属。在两种条件下也测定了分子量,在这两种条件下,很大一部分蛋白质以S0(20),w值为20.3±0.2 S沉降。在pH 6.5、6 - 8℃时,该边界中的聚集体是亚稳的,占制剂的50 - 60%。在pH 7.0、20℃达到平衡时,65 - 75%的蛋白质在20.3 S沉降。在这两种条件下,20.3S边界非常相似,被解释为由以约39±2个亚基为中心的蛋白质聚集体分布组成。这一结果对于解释之前TMV自组装的动力学测量很重要。目前的观点是,TMV蛋白的34亚基结构,呈由两个17亚基层组成的圆柱形盘状,已在单晶X射线衍射研究中得到表征,在与RNA的初始结合步骤中起核心作用。目前的结果与在TMV自组装的通常条件下溶液中存在大量TMV蛋白盘状结构的观点不一致。

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