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Recombinant expression, purification and PEGylation of DNA Ligases

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dc.contributor.author Zuma, LK
dc.contributor.author Gasa, NL
dc.contributor.author Mazibuko, X
dc.contributor.author Simelane, BC
dc.contributor.author Pillay, Priyen
dc.contributor.author Kwezi, Lusisizwe
dc.contributor.author Tsekoa, Tsepo L
dc.contributor.author Pooe, OJ
dc.date.accessioned 2022-11-21T08:29:51Z
dc.date.available 2022-11-21T08:29:51Z
dc.date.issued 2022-04
dc.identifier.citation Zuma, L., Gasa, N., Mazibuko, X., Simelane, B., Pillay, P., Kwezi, L., Tsekoa, T.L. & Pooe, O. et al. 2022. Recombinant expression, purification and PEGylation of DNA Ligases. <i>Protein and Peptide Letters.</i> http://hdl.handle.net/10204/12525 en_ZA
dc.identifier.issn 1875-5305
dc.identifier.issn 0929-8665
dc.identifier.uri Doi: 10.2174/0929866529666220426122432
dc.identifier.uri http://hdl.handle.net/10204/12525
dc.description.abstract Background: Reagent proteins such as DNA ligases play a central role in the global reagents market. DNA ligases are routinely used and are vital in academic and science research environments. Their major functions include sealing nicks by linking the 5'-phosphorylated end to a 3'-hydroxyl end on the phosphodiester backbone of DNA, utilizing ATP or NADP molecules as an energy source. Objective: The current study sought to investigate the role of PEGylation on the biological activity of purified recombinant DNA ligases. Method: We produced two recombinant DNA ligases (Ligsv081 and LigpET30) using E. coli expression system and subsequently purified using affinity chromatography. The produced proteins were conjugated to site specific PEGylation or non-specific PEGylation. FTIR and UV-VIS spectroscopy were used to analyze secondary structures of the PEG conjugated DNA ligases. Differential scanning fluorimetry was employed to assess the protein stability when subjected various PEGylation conditions. Results: In this study, both recombinant DNA ligases were successfully expressed and purified as homogenous proteins. Protein PEGylation enhanced ligation activity, increased transformation efficiency by 2-fold for plasmid ligations and reduced the formation of protein aggregates. Conclusion: Taken together, site-specific PEGylation can potentially be explored to enhance the biological activity and stability of reagent proteins such as ligases. en_US
dc.format Abstract en_US
dc.language.iso en en_US
dc.relation.uri https://pubmed.ncbi.nlm.nih.gov/35657285/ en_US
dc.relation.uri https://www.eurekaselect.com/article/122928 en_US
dc.source Protein and Peptide Letters en_US
dc.subject DNA ligases en_US
dc.subject PEG conjugation en_US
dc.subject Protein expression and purification en_US
dc.subject Protein PEGylation en_US
dc.subject Site-specific PEGylation en_US
dc.title Recombinant expression, purification and PEGylation of DNA Ligases en_US
dc.type Article en_US
dc.description.pages 9 en_US
dc.description.note © Bentham Science Publishers. Due to copyright restrictions, the attached PDF file contains the abstract of the full-text item. For access to the full-text item, please consult the publisher's website: https://www.eurekaselect.com/article/122928 en_US
dc.description.cluster Chemicals en_US
dc.description.impactarea BT: Technology Demonstration en_US
dc.identifier.apacitation Zuma, L., Gasa, N., Mazibuko, X., Simelane, B., Pillay, P., Kwezi, L., ... Pooe, O. (2022). Recombinant expression, purification and PEGylation of DNA Ligases. <i>Protein and Peptide Letters</i>, http://hdl.handle.net/10204/12525 en_ZA
dc.identifier.chicagocitation Zuma, LK, NL Gasa, X Mazibuko, BC Simelane, Priyen Pillay, Lusisizwe Kwezi, Tsepo L Tsekoa, and OJ Pooe "Recombinant expression, purification and PEGylation of DNA Ligases." <i>Protein and Peptide Letters</i> (2022) http://hdl.handle.net/10204/12525 en_ZA
dc.identifier.vancouvercitation Zuma L, Gasa N, Mazibuko X, Simelane B, Pillay P, Kwezi L, et al. Recombinant expression, purification and PEGylation of DNA Ligases. Protein and Peptide Letters. 2022; http://hdl.handle.net/10204/12525. en_ZA
dc.identifier.ris TY - Article AU - Zuma, LK AU - Gasa, NL AU - Mazibuko, X AU - Simelane, BC AU - Pillay, Priyen AU - Kwezi, Lusisizwe AU - Tsekoa, Tsepo L AU - Pooe, OJ AB - Background: Reagent proteins such as DNA ligases play a central role in the global reagents market. DNA ligases are routinely used and are vital in academic and science research environments. Their major functions include sealing nicks by linking the 5'-phosphorylated end to a 3'-hydroxyl end on the phosphodiester backbone of DNA, utilizing ATP or NADP molecules as an energy source. Objective: The current study sought to investigate the role of PEGylation on the biological activity of purified recombinant DNA ligases. Method: We produced two recombinant DNA ligases (Ligsv081 and LigpET30) using E. coli expression system and subsequently purified using affinity chromatography. The produced proteins were conjugated to site specific PEGylation or non-specific PEGylation. FTIR and UV-VIS spectroscopy were used to analyze secondary structures of the PEG conjugated DNA ligases. Differential scanning fluorimetry was employed to assess the protein stability when subjected various PEGylation conditions. Results: In this study, both recombinant DNA ligases were successfully expressed and purified as homogenous proteins. Protein PEGylation enhanced ligation activity, increased transformation efficiency by 2-fold for plasmid ligations and reduced the formation of protein aggregates. Conclusion: Taken together, site-specific PEGylation can potentially be explored to enhance the biological activity and stability of reagent proteins such as ligases. DA - 2022-04 DB - ResearchSpace DP - CSIR J1 - Protein and Peptide Letters KW - DNA ligases KW - PEG conjugation KW - Protein expression and purification KW - Protein PEGylation KW - Site-specific PEGylation LK - https://researchspace.csir.co.za PY - 2022 SM - 1875-5305 SM - 0929-8665 T1 - Recombinant expression, purification and PEGylation of DNA Ligases TI - Recombinant expression, purification and PEGylation of DNA Ligases UR - http://hdl.handle.net/10204/12525 ER - en_ZA
dc.identifier.worklist 25914 en_US


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