4.7 Article

Integrative approaches in cryogenic electron microscopy: Recent advances in structural biology and future perspectives

Journal

ISCIENCE
Volume 24, Issue 2, Pages -

Publisher

CELL PRESS
DOI: 10.1016/j.isci.2021.102044

Keywords

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Funding

  1. Science and Engineering Research Board (SERB), Department of Science & Technology (India) [SB/SO/BB-0025/2014, CRG/2019/001788]
  2. CSIR-Indian Institute of Chemical Biology, Kolkata, India
  3. Department of Biotechnology (DBT)
  4. Council of Scientific and Industrial Research (CSIR), India

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Cellular factories rely on complex molecular machines to perform key biological functions, with cryogenic electron microscopy playing a crucial role in understanding their mechanisms. By combining time-resolved or mass spectrometry techniques with cryo-EM, additional insights into biological processes can be obtained.
Cellular factories engage numerous highly complex molecular machines'' to perform pivotal biological functions. 3D structural visualization is an effective way to understand the functional mechanisms of these biomacromolecules. The resolution revolution'' has established cryogenic electron microscopy (cryo-EM) as a preferred structural biology tool. In parallel with the advances in cryo-EM methodologies aiming at atomic resolution, several innovative approaches have started emerging where other techniques are sensibly integrated with cryo-EM to obtain additional insights into the biological processes. For example, combining the time-resolved technique with high-resolution cryo-EM enables discerning structures of short-lived intermediates in the functional pathway of a biomolecule. Likewise, integrating mass spectrometry (MS) techniques with cryo-EM allows deciphering structural organizations of large molecular assemblies. Here, we discuss how the data generated upon combining either time resolve or MS techniques with cryo-EM supplement structural elucidations with in-depth understanding of the function of cellular macromolecules when they participate in fundamental biological processes.

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