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《STRUCTURE》杂志封面
  • 所属分类:首页 > SCI期刊 > 生物
  • 期刊名: STRUCTURE
  • 期刊名缩写:STRUCTURE
  • 期刊ISSN:0969-2126
  • E-ISSN:1878-4186
  • 2025年影响因子/JCR分区:4.3/Q1 查看近年IF趋势图
  • 5年平均影响因子:4.5
  • 学科分类与版本:BIOCHEMISTRY & MOLECULAR BIOLOGY - SCIE; BIOPHYSICS - SCIE; CELL BIOLOGY - SCIE
  • 出版周期:Monthly
  • 出版年份:1993
  • 出版国家或地区:ENGLAND
  • 出版商:CELL PRESS
  • 年文章数:查看近年文章发表趋势图
  • 论著文章占比:91.85% [论著 ÷(论著 + 综述)]
  • 是否OA开放访问:No
  • Gold OA文章占比:12.96%
  • 官方网站:www.cell.com/structure/home
  • 投稿网址:www.editorialmanager.com/STRUCTURE
  • 编辑部地址:CELL PRESS, 600 TECHNOLOGY SQUARE, 5TH FLOOR, CAMBRIDGE, USA, MA, 02139

《STRUCTURE》中科院JCR分区

  • 2025年3月升级版:
  • 大类小类学科Top综述期刊
    生物学 2区
    BIOPHYSICS
    生物物理
    1区
    BIOCHEMISTRY & MOLECULAR BIOLOGY
    生化与分子生物学
    2区
    CELL BIOLOGY
    细胞生物学
    3区

  • 2023年12月升级版:
  • 大类小类学科Top综述期刊
    生物学 2区
    BIOPHYSICS
    生物物理
    1区
    BIOCHEMISTRY & MOLECULAR BIOLOGY
    生化与分子生物学
    2区
    CELL BIOLOGY
    细胞生物学
    2区

    《STRUCTURE》期刊简介:

    Structure aims to publish papers of exceptional interest in the field of structural biology. The journal strives to be essential reading for structural biologists, as well as biologists and biochemists that are interested in macromolecular structure and function. Structure strongly encourages the submission of manuscripts that present structural and molecular insights into biological function and mechanism. Other reports that address fundamental questions in structural biology, such as structure-based examinations of protein evolution, folding, and/or design, will also be considered. We will consider the application of any method, experimental or computational, at high or low resolution, to conduct structural investigations, as long as the method is appropriate for the biological, functional, and mechanistic question(s) being addressed. Likewise, reports describing single-molecule analysis of biological mechanisms are welcome.

    In general, the editors encourage submission of experimental structural studies that are enriched by an analysis of structure-activity relationships and will not consider studies that solely report structural information unless the structure or analysis is of exceptional and broad interest. Studies reporting only homology models, de novo models, or molecular dynamics simulations are also discouraged unless the models are informed by or validated by novel experimental data; rationalization of a large body of existing experimental evidence and making testable predictions based on a model or simulation is often not considered sufficient.

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