首页> 外文期刊>Journal of Structural Biology >Tetrairidium, a four-atom cluster, is readily visible as a density label in three-dimensional cryo-EM maps of proteins at 10-25 A resolution.
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Tetrairidium, a four-atom cluster, is readily visible as a density label in three-dimensional cryo-EM maps of proteins at 10-25 A resolution.

机译:四铱簇(四原子簇)很容易在密度为10-25 A的蛋白质的3D低温EM图中作为密度标记可见。

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Heavy metal clusters derivatized to bind to designated chemical groups on proteins have great potential as density labels for cryo-electron microscopy. Smaller clusters offer higher resolution and penetrate more easily into sterically restricted sites, but are more difficult to detect. In this context, we have explored the potential of tetrairidium (Ir(4)) as a density label by attaching it via maleimide linkage to the C-terminus of the hepatitis B virus (HBV) capsid protein. Although the clusters are not visible in unprocessed cryo-electron micrographs, they are distinctly visible in three-dimensional density maps calculated from them, even at only partial occupancy. The Ir(4) label was clearly visualized in our maps at 11-14 A resolution of both size variants of the HBV capsid, thus confirming our previous localization of this site with undecagold (Zlotnick, A., Cheng, N., Stahl, S. J., Conway, J. F., Steven, A. C., and Wingfield, P. T., Proc. Natl. Acad. Sci. USA 94, 9556-9561, 1997). Ir(4) penetrated to the interior of intact capsids to label this site on their inner surface, unlike undecagold for which labelling was achieved only with dissociated dimers that were then reassembled into capsids. The Ir(4) cluster remained visible as the resolution of the maps was lowered progressively to approximately 25 A. Copyright 1999 Academic Press.
机译:衍生化以结合蛋白质上指定的化学基团的重金属簇具有巨大的潜力,可作为冷冻电子显微镜的密度标记。较小的星团可提供更高的分辨率,并且更容易渗透到空间受限的位置,但更难检测。在这种情况下,我们通过马来酰亚胺连接到乙肝病毒(HBV)衣壳蛋白的C末端,将四铱(Ir(4))作为密度标签的潜力进行了探索。尽管在未经处理的低温电子显微照片中看不到这些簇,但即使在部分占有的情况下,在从它们计算出的三维密度图中,它们也清晰可见。 Ir(4)标签在我们的地图上清晰可见,分别为11-14 A的两种大小的HBV衣壳变体,从而证实了我们以前使用未蜕皮的该部位的定位(Zlotnick,A.,Cheng,N.,Stahl, SJ,Conway,JF,Steven,AC,和Wingfield,PT,美国国家科学院院刊94,9556-9561,1997)。 Ir(4)渗透到完整衣壳的内部以在其内表面标记该位点,与undecagold不同,undecagold只能通过解离的二聚体进行标记,然后将其重组为衣壳。 Ir(4)群集仍然可见,因为地图的分辨率逐渐降低到大约25A。版权所有1999 Academic Press。

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