Literature DB >> 32407086

How the Local Environment of Functional Sites Regulates Protein Function.

Karine Mazmanian1, Karen Sargsyan1, Carmay Lim1,2.   

Abstract

Proteins form complex biological machineries whose functions in the cell are highly regulated at both the cellular and molecular levels. Cellular regulation of protein functions involves differential gene expressions, post-translation modifications, and signaling cascades. Molecular regulation, on the other hand, involves tuning an optimal local protein environment for the functional site. Precisely how a protein achieves such an optimal environment around a given functional site is not well understood. Herein, by surveying the literature, we first summarize the various reported strategies used by certain proteins to ensure their correct functioning. We then formulate three key physicochemical factors for regulating a protein's functional site, namely, (i) its immediate interactions, (ii) its solvent accessibility, and (iii) its conformational flexibility. We illustrate how these factors are applied to regulate the functions of free/metal-bound Cys and Zn sites in proteins.

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Year:  2020        PMID: 32407086     DOI: 10.1021/jacs.0c02430

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  6 in total

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2.  Multiple Protein Subcellular Locations Prediction Based on Deep Convolutional Neural Networks with Self-Attention Mechanism.

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Review 4.  Repurposing metalloproteins as mimics of natural metalloenzymes for small-molecule activation.

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5.  Insights into the Role of the Discontinuous TM7 Helix of Human Ferroportin through the Prism of the Asp325 Residue.

Authors:  Marlène Le Tertre; Ahmad Elbahnsi; Chandran Ka; Isabelle Callebaut; Gérald Le Gac
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6.  Analysis of electrostatic coupling throughout the laboratory evolution of a designed retroaldolase.

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  6 in total

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