Metal effect on intein splicing: A review
Inteins are intervening polypeptides that interrupt the functional domains of several important proteins across the three domains of life. Inteins excise themselves from the precursor protein, ligating concomitant extein residues in a process called protein splicing. Post-translational auto-removal...
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Published in: | Biochimie Vol. 185; pp. 53 - 67 |
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Main Authors: | , , , , , |
Format: | Journal Article |
Language: | English |
Published: |
France
Elsevier B.V
01-06-2021
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Subjects: | |
Online Access: | Get full text |
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Summary: | Inteins are intervening polypeptides that interrupt the functional domains of several important proteins across the three domains of life. Inteins excise themselves from the precursor protein, ligating concomitant extein residues in a process called protein splicing. Post-translational auto-removal of inteins remain critical for the generation of active proteins. The perspective of inteins in science is a robust field of research, however fundamental studies centralized upon splicing regulatory mechanism are imperative for addressing more intricate issues. Controlled engineering of intein splicing has many applications; intein inhibition can facilitate novel drug design, while activation of intein splicing is exploited in protein purification. This paper provides a comprehensive review of the past and recent advances in the splicing regulation via metal-intein interaction. We compare the behavior of different metal ions on diverse intein systems. Though metals such as Zn, Cu, Pt, Cd, Co, Ni exhibit intein inhibitory effect heterogeneously on different inteins, divalent metal ions such as Ca and Mg fail to do so. The observed diversity in the metal-intein interaction arises mostly due to intein polymorphism and variations in atomic structure of metals. A mechanistic understanding of intein regulation by metals in native as well as synthetically engineered intein systems may yield potent intein inhibitors via direct or indirect approach.
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•Inteins interrupt the functional domains of essential proteins in microorganisms.•Intein splicing is critical for generation of active proteins in microorganisms.•Conserved catalytic and non-catalytic residues mediate metal-intein interaction.•Metal ions and compounds exhibit heterogenous effect on diverse intein systems.•Intein inhibition by metals may provide a novel approach for drug development. |
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Bibliography: | ObjectType-Article-2 SourceType-Scholarly Journals-1 ObjectType-Feature-3 content type line 23 ObjectType-Review-1 |
ISSN: | 0300-9084 1638-6183 |
DOI: | 10.1016/j.biochi.2021.03.006 |