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微重力环境下的蛋白质晶体生长。

Protein crystal growth in microgravity.

作者信息

Bi R C, Gui L L, Shi K, Wang Y P, Chen S Z, Han Q, Hu Y L, Shen F L, Niu X T, Hua Z Q

机构信息

Institute of Biophysics, Academia Sinica, Beijing, PRC.

出版信息

Sci China B. 1994 Oct;37(10):1185-91.

PMID:7865121
Abstract

Protein crystal growth is quite important for the determination of protein structures which are essential to the understanding of life at molecular level as well as to the development of molecular biotechnology. The microgravity environment of space is an ideal place to study the complicated protein crystallization and to grow good-quality protein crystals. A number of crystal-growth experiments of 10 different proteins were carried out in August, 1992 on the Chinese re-entry satellite FSW-2 in space using a tube crystallization equipment made in China. A total of 25 samples from 6 proteins produced crystals, and the effects of microgravity on protein crystal growth were observed, especially for an acidic phospholipase A2 and henegg-white lysozyme which gave better crystals in space than earth-grown crystals in ground control experiments. The results have shown that the microgravity in space favors the improvement of the size, perfection, morphology and internal order of the grown protein crystals.

摘要

蛋白质晶体生长对于确定蛋白质结构非常重要,而蛋白质结构对于在分子水平上理解生命以及分子生物技术的发展至关重要。太空的微重力环境是研究复杂蛋白质结晶和生长高质量蛋白质晶体的理想场所。1992年8月,利用中国制造的管式结晶设备,在中国返回式卫星FSW - 2上对10种不同的蛋白质进行了多项晶体生长实验。来自6种蛋白质的总共25个样品产生了晶体,观察到了微重力对蛋白质晶体生长的影响,特别是一种酸性磷脂酶A2和蛋清溶菌酶,在太空实验中它们形成的晶体比地面控制实验中在地球上生长的晶体更好。结果表明,太空微重力有利于提高所生长蛋白质晶体的尺寸、完整性、形态和内部有序性。

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