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Two-dimensional crystallization of streptavidin by nonspecific binding to a surface film: study with a scanning electron microscope.

机译:非特异性结合至表面膜的链霉亲和素的二维结晶:用扫描电子显微镜研究。

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摘要

A two-dimensional (2D) crystal of streptavidin has been obtained by a nonspecific binding method. The protein molecules were bound and formed a dense packing on the film of poly(1-benzyl-L-histidine) spread at the surface of protein solution. The surface film was moderately heated to stimulate crystallization of bound streptavidin. A potential of this method for obtaining 2D crystals of soluble proteins is demonstrated. The present 2D crystal structure of streptavidin resembles that previously obtained by specific binding to biotinylated lipid. We show in addition that the 2D array of protein with usual size approximately 50 A can be imaged using a high resolution scanning electron microscope (HR-SEM) and subject to structural analysis at low resolution. Various limitations in HR-SEM degrade considerably the image quality. However, the usability of a bulk plate as specimen support would make HR-SEM a convenient tool, when such a substrate must be considered in application of protein arrays, and if an intrinsic low resolution is acceptable.
机译:链霉亲和素的二维(2D)晶体已通过非特异性结合方法获得。蛋白质分子被结合并在分布于蛋白质溶液表面的聚(1-苄基-L-组氨酸)薄膜上形成致密堆积。适当加热表面膜以刺激结合的链霉亲和素的结晶。证明了这种方法获得可溶性蛋白质2D晶体的潜力。链霉亲和素的本发明2D晶体结构类似于先前通过与生物素化脂质的特异性结合而获得的。我们还显示,可以使用高分辨率扫描电子显微镜(HR-SEM)对通常尺寸约为50 A的蛋白质二维阵列进行成像,并对其进行低分辨率的结构分析。 HR-SEM中的各种限制会大大降低图像质量。但是,当在蛋白质阵列的应用中必须考虑使用这种基质时,并且如果固有的低分辨率是可以接受的,将块状板用作样品支架将使HR-SEM成为方便的工具。

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