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未来是混合的。

The future is hybrid.

作者信息

Steven Alasdair C, Baumeister Wolfgang

机构信息

Editorial Office, Journal of Structural Biology, 525 B St., Ste. 1900, San Diego, CA 92101, USA.

出版信息

J Struct Biol. 2008 Sep;163(3):186-95. doi: 10.1016/j.jsb.2008.06.002. Epub 2008 Jun 12.

Abstract

On the occasion of the 50th anniversary of the Journal of Structural Biology, we review some of the major advances that have taken place in molecular and cellular structural biology over this timeframe and consider some current trends, as well as promising new directions. While the primary experimental techniques of X-ray diffraction, electron microscopy and NMR spectroscopy continue to improve and other powerful new techniques have come on-line, it appears that the most comprehensive analyses of large, dynamic, macromolecular machines will rely on integrated combinations of different methodologies, viz. "hybrid approaches". The same prospect applies to the challenge of integrating observations of isolated macromolecules with data pertaining to their distributions and interaction networks in living cells. Looking ahead, computation in its diverse aspects may be expected to assume an increasingly important role in structural biology, as the prediction of molecular structures, the computation of dynamic properties, and quantitative time-resolved models of intracellular molecular populations (structural systems biology) move towards functional maturity.

摘要

值《结构生物学杂志》创刊50周年之际,我们回顾了在此期间分子与细胞结构生物学领域取得的一些重大进展,并探讨了当前的一些趋势以及有前景的新方向。尽管X射线衍射、电子显微镜和核磁共振光谱等主要实验技术不断改进,且其他强大的新技术也已上线,但对大型、动态的大分子机器进行最全面的分析似乎将依赖于不同方法的综合运用,即“混合方法”。同样的前景也适用于将分离的大分子观测结果与它们在活细胞中的分布及相互作用网络数据相结合的挑战。展望未来,随着分子结构预测、动态特性计算以及细胞内分子群体的定量时间分辨模型(结构系统生物学)走向功能成熟,计算在结构生物学的各个方面可能会发挥越来越重要的作用。

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