X-ray crystallography of chemical compounds

被引:25
|
作者
Deschamps, Jeffrey R. [1 ]
机构
[1] USN, Res Lab, Washington, DC 20375 USA
关键词
X-ray crystallography; Drug design; Absolute configuration; DRUG DESIGN;
D O I
10.1016/j.lfs.2009.02.028
中图分类号
R-3 [医学研究方法]; R3 [基础医学];
学科分类号
1001 ;
摘要
Aims: Accurate knowledge of molecular structure is a prerequisite for rational drug design. This review examines the role of X-ray crystallography in providing the required structural information and advances in the field of X-ray crystallography that enhance or expand its role. Main methods: X-ray crystallography of new drugs candidates and intermediates can provide valuable information of new syntheses and parameters for quantitative structure activity relationships (QSAR). Key findings: Crystallographic studies play a vital role in many disciplines including materials science, chemistry, pharmacology, and molecular biology. X-ray crystallography is the most comprehensive technique available to determine molecular structure. A requirement for the high accuracy of crystallographic structures is that a 'good crystal' must be found, and this is often the rate-limiting step. In the past three decades developments in detectors, increases in computer power, and powerful graphics capabilities have contributed to a dramatic increase in the number of materials characterized by X-ray crystallography. More recently the advent of high-throughput crystallization techniques has enhanced our ability to produce that one good crystal required for crystallographic analysis. Significance: Continuing advances in all phases of a crystallographic study have expanded the ranges of samples which can be analyzes by X-ray crystallography to include larger molecules, smaller or weakly diffracting crystals, and twinned crystals. Published by Elsevier Inc.
引用
收藏
页码:585 / 589
页数:5
相关论文
共 50 条
  • [1] Chemical Crystallography before X-ray Diffraction
    Molcanov, Kresimir
    Stilinovic, Vladimir
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2014, 53 (03) : 638 - 652
  • [2] Chemical crystallography by serial femtosecond X-ray diffraction
    Schriber, Elyse A.
    Paley, Daniel W.
    Bolotovsky, Robert
    Rosenberg, Daniel J.
    Sierra, Raymond G.
    Aquila, Andrew
    Mendez, Derek
    Poitevin, Frederic
    Blaschke, Johannes P.
    Bhowmick, Asmit
    Kelly, Ryan P.
    Hunter, Mark
    Hayes, Brandon
    Popple, Derek C.
    Yeung, Matthew
    Pareja-Rivera, Carina
    Lisova, Stella
    Tono, Kensuke
    Sugahara, Michihiro
    Owada, Shigeki
    Kuykendall, Tevye
    Yao, Kaiyuan
    Schuck, P. James
    Solis-Ibarra, Diego
    Sauter, Nicholas K.
    Brewster, Aaron S.
    Hohman, J. Nathan
    NATURE, 2022, 601 (7893) : 360 - +
  • [3] Chemical crystallography by serial femtosecond X-ray diffraction
    Elyse A. Schriber
    Daniel W. Paley
    Robert Bolotovsky
    Daniel J. Rosenberg
    Raymond G. Sierra
    Andrew Aquila
    Derek Mendez
    Frédéric Poitevin
    Johannes P. Blaschke
    Asmit Bhowmick
    Ryan P. Kelly
    Mark Hunter
    Brandon Hayes
    Derek C. Popple
    Matthew Yeung
    Carina Pareja-Rivera
    Stella Lisova
    Kensuke Tono
    Michihiro Sugahara
    Shigeki Owada
    Tevye Kuykendall
    Kaiyuan Yao
    P. James Schuck
    Diego Solis-Ibarra
    Nicholas K. Sauter
    Aaron S. Brewster
    J. Nathan Hohman
    Nature, 2022, 601 : 360 - 365
  • [4] X-RAY CRYSTALLOGRAPHY
    BRAGG, L
    SCIENTIFIC AMERICAN, 1968, 219 (01) : 58 - &
  • [5] X-RAY CRYSTALLOGRAPHY
    KILBOURN, BT
    CHEMISTRY & INDUSTRY, 1970, (03) : 75 - &
  • [6] X-ray crystallography
    Bombicz, Petra
    CRYSTALLOGRAPHY REVIEWS, 2016, 22 (01) : 79 - 81
  • [7] X-RAY CRYSTALLOGRAPHY
    DOUGLAS, AMB
    KELLAR, JN
    NATURE, 1947, 160 (4053) : 29 - 31
  • [8] X-ray crystallography
    不详
    IEEE INTELLIGENT SYSTEMS, 2005, 20 (06) : 62 - 62
  • [9] X-RAY CRYSTALLOGRAPHY
    HUGHES, EW
    PHYSICS TODAY, 1958, 11 (10) : 18 - 18
  • [10] X-Ray Crystallography
    Nespolo, Massimo
    ACTA CRYSTALLOGRAPHICA A-FOUNDATION AND ADVANCES, 2016, 72 : 168 - 170