瓶颈
相关性(法律)
蛋白质结晶
质量(理念)
结晶
任务(项目管理)
数据科学
计算机科学
结构基因组学
纳米技术
基因组学
工程类
化学
材料科学
政治学
蛋白质结构
系统工程
认识论
基因组
生物化学
哲学
嵌入式系统
化学工程
法学
基因
标识
DOI:10.1016/j.sbi.2004.08.002
摘要
Protein crystallisation has gained a new strategic and commercial relevance in the post-genomic era because of its pivotal role in structural genomics. Producing high-quality crystals has always been a bottleneck to structure determination and, with the advent of proteomics, this problem is becoming increasingly acute. The task of producing suitable crystals may be tackled using two approaches. The first relies on empirical techniques that are based mainly on trial and error, and what is perceived to be the 'art' of crystallisation. The second approach is aimed at gaining an understanding of the fundamental principles that govern crystallisation; this knowledge may be applied to design experimental methodology for producing high-quality crystals of medical and industrial interest.
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