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JAXA protein crystallization in space: ongoing improvements for growing high-quality crystals

机译:太空中的JAXA蛋白结晶:不断发展的高质量结晶生长

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摘要

The Japan Aerospace Exploration Agency (JAXA) started a high-quality protein crystal growth project, now called JAXA PCG, on the International Space Station (ISS) in 2002. Using the counter-diffusion technique, 14 sessions of experiments have been performed as of 2012 with 580 proteins crystallized in total. Over the course of these experiments, a user-friendly interface framework for high accessibility has been constructed and crystallization techniques improved; devices to maximize the use of the microgravity environment have been designed, resulting in some high-resolution crystal growth. If crystallization conditions were carefully fixed in ground-based experiments, high-quality protein crystals grew in microgravity in many experiments on the ISS, especially when a highly homogeneous protein sample and a viscous crystallization solution were employed. In this article, the current status of JAXA PCG is discussed, and a rational approach to high-quality protein crystal growth in microgravity based on numerical analyses is explained.
机译:日本航空航天局(JAXA)于2002年在国际空间站(ISS)上启动了一个高质量的蛋白质晶体生长项目,现称为JAXA PCG。使用反扩散技术,截止到2004年已进行了14次实验2012年共有580种蛋白质结晶。在这些实验的过程中,已经构建了用于高可访问性的用户友好界面框架,并且改进了结晶技术。已经设计出可以最大程度地利用微重力环境的器件,从而导致一些高分辨率的晶体生长。如果在地面实验中仔细确定结晶条件,则在ISS上的许多实验中,特别是当使用高度均一的蛋白质样品和粘性结晶溶液时,高质量的蛋白质晶体会在微重力下生长。本文讨论了JAXA PCG的现状,并解释了基于数值分析的高质量微重力下蛋白质晶体生长的合理方法。

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