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Formation of protein crystals (orthorhombic lysozyme) in quasi-microgravity environment obtained by superconducting magnet

机译:超导磁体在准微重力环境中形成蛋白质晶体(斜方溶菌酶)

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摘要

As one of the best candidates for simulating the microgravity conditions in space, low gravity environments provided by applying an upward magnetic force have been considered to grow protein crystals. Since 2002, the stable and longtime durable microgravity generated by a superconducting magnet has been available for protein crystal growth. In this paper, for the first time, we grew protein crystals (orthorhombic lysozyme crystals) at quasi-microgravity. The present study showed that quasi-microgravity improves the crystal quality effectively and reproducibly. The application of strong magnetic field also improves the crystal quality. Furthermore, it is possible to know if microgravity is effective for the improvement of crystal quality or not by growing crystals in microgravity and hypergravity inside the superconducting magnet and comparing the crystal quality with each other. Such test will be useful to select promising proteins prior to the space experiments. (C) 2004 Elsevier B.V. All rights reserved.
机译:作为模拟空间中微重力条件的最佳候选者之一,已经考虑通过施加向上的磁力提供的低重力环境来生长蛋白质晶体。自2002年以来,由超导磁体产生的稳定且长期耐用的微重力可用于蛋白质晶体的生长。在本文中,我们首次在准微重力下生长了蛋白质晶体(斜方溶菌酶晶体)。本研究表明,准微重力可有效且可重复地改善晶体质量。强磁场的施加还改善了晶体质量。此外,通过使超导磁体内部的微重力和超重力中的晶体生长并且将晶体质量彼此进行比较,可以知道微重力对于提高晶体质量是否有效。这样的测试将有助于在太空实验之前选择有前途的蛋白质。 (C)2004 Elsevier B.V.保留所有权利。

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