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Updated: May 24, 2025

4D Imaging of Protein Aggregation in Live Cells
Published on: April 5, 2013
Quest for space: Tenacity of DNA, Protein, and Lipid macromolecules in intracellular crowded environment
Priyanka Phogat1, Aparna Bansal1,2, Nishu Nain1,3
1Nucleic Acids Research Lab, Department of Chemistry, University of Delhi, Delhi 110007, India.
Abstract:
The biochemical processes in the cellular milieu involving biomacromolecular interaction usually occur in crowded and heterogeneous environments, impacting their structure, stability, and reactivity. The crowded environment in vivo is typically ignored for experimental investigations since the studies get complex due to intracellular biophysical interactions between nucleic acids, proteins, cellular membranes, and various cations/anions present in the cell. Thus, being a ubiquitous property of all cells, studying those biophysical aspects affecting biochemical processes under realistically crowded conditions is of prime importance. Crowders or crowding agents are usually exploited to mimic the in vivo conditions on interacting with such genomic species, revealing structural and functional changes resulting from excluded volume and soft interactions. In the last few years, studies including crowders of varied sizes have gained attention concerning the consequences of crowding agents on biomolecular structural transitions and stability. This review comprehensively summarizes macromolecular crowding, emphasizing the biophysical effects and contribution of soft interactions in the heterogeneous cellular environment.
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