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The KH domain facilitates the substrate specificity and unwinding processivity of DDX43 helicase

The K-homology (KH) domain is a nucleic acid–binding domain present in many proteins. Recently, we found that the DEAD-box helicase DDX43 contains a KH domain in its N-terminus; however, its function remains unknown. Here, we purified recombinant DDX43 KH domain protein and found that it prefers bin...

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Autores principales: Yadav, Manisha, Singh, Ravi Shankar, Hogan, Daniel, Vidhyasagar, Venkatasubramanian, Yang, Shizhuo, Chung, Ivy Yeuk Wah, Kusalik, Anthony, Dmitriev, Oleg Y., Cygler, Miroslaw, Wu, Yuliang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7949032/
https://www.ncbi.nlm.nih.gov/pubmed/33199368
http://dx.doi.org/10.1074/jbc.RA120.015824
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author Yadav, Manisha
Singh, Ravi Shankar
Hogan, Daniel
Vidhyasagar, Venkatasubramanian
Yang, Shizhuo
Chung, Ivy Yeuk Wah
Kusalik, Anthony
Dmitriev, Oleg Y.
Cygler, Miroslaw
Wu, Yuliang
author_facet Yadav, Manisha
Singh, Ravi Shankar
Hogan, Daniel
Vidhyasagar, Venkatasubramanian
Yang, Shizhuo
Chung, Ivy Yeuk Wah
Kusalik, Anthony
Dmitriev, Oleg Y.
Cygler, Miroslaw
Wu, Yuliang
author_sort Yadav, Manisha
collection PubMed
description The K-homology (KH) domain is a nucleic acid–binding domain present in many proteins. Recently, we found that the DEAD-box helicase DDX43 contains a KH domain in its N-terminus; however, its function remains unknown. Here, we purified recombinant DDX43 KH domain protein and found that it prefers binding ssDNA and ssRNA. Electrophoretic mobility shift assay and NMR revealed that the KH domain favors pyrimidines over purines. Mutational analysis showed that the GXXG loop in the KH domain is involved in pyrimidine binding. Moreover, we found that an alanine residue adjacent to the GXXG loop is critical for binding. Systematic evolution of ligands by exponential enrichment, chromatin immunoprecipitation–seq, and cross-linking immunoprecipitation–seq showed that the KH domain binds C-/T-rich DNA and U-rich RNA. Bioinformatics analysis suggested that the KH domain prefers to bind promoters. Using (15)N-heteronuclear single quantum coherence NMR, the optimal binding sequence was identified as TTGT. Finally, we found that the full-length DDX43 helicase prefers DNA or RNA substrates with TTGT or UUGU single-stranded tails and that the KH domain is critically important for sequence specificity and unwinding processivity. Collectively, our results demonstrated that the KH domain facilitates the substrate specificity and processivity of the DDX43 helicase.
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spelling pubmed-79490322021-03-19 The KH domain facilitates the substrate specificity and unwinding processivity of DDX43 helicase Yadav, Manisha Singh, Ravi Shankar Hogan, Daniel Vidhyasagar, Venkatasubramanian Yang, Shizhuo Chung, Ivy Yeuk Wah Kusalik, Anthony Dmitriev, Oleg Y. Cygler, Miroslaw Wu, Yuliang J Biol Chem Research Article The K-homology (KH) domain is a nucleic acid–binding domain present in many proteins. Recently, we found that the DEAD-box helicase DDX43 contains a KH domain in its N-terminus; however, its function remains unknown. Here, we purified recombinant DDX43 KH domain protein and found that it prefers binding ssDNA and ssRNA. Electrophoretic mobility shift assay and NMR revealed that the KH domain favors pyrimidines over purines. Mutational analysis showed that the GXXG loop in the KH domain is involved in pyrimidine binding. Moreover, we found that an alanine residue adjacent to the GXXG loop is critical for binding. Systematic evolution of ligands by exponential enrichment, chromatin immunoprecipitation–seq, and cross-linking immunoprecipitation–seq showed that the KH domain binds C-/T-rich DNA and U-rich RNA. Bioinformatics analysis suggested that the KH domain prefers to bind promoters. Using (15)N-heteronuclear single quantum coherence NMR, the optimal binding sequence was identified as TTGT. Finally, we found that the full-length DDX43 helicase prefers DNA or RNA substrates with TTGT or UUGU single-stranded tails and that the KH domain is critically important for sequence specificity and unwinding processivity. Collectively, our results demonstrated that the KH domain facilitates the substrate specificity and processivity of the DDX43 helicase. American Society for Biochemistry and Molecular Biology 2020-11-23 /pmc/articles/PMC7949032/ /pubmed/33199368 http://dx.doi.org/10.1074/jbc.RA120.015824 Text en © 2020 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Yadav, Manisha
Singh, Ravi Shankar
Hogan, Daniel
Vidhyasagar, Venkatasubramanian
Yang, Shizhuo
Chung, Ivy Yeuk Wah
Kusalik, Anthony
Dmitriev, Oleg Y.
Cygler, Miroslaw
Wu, Yuliang
The KH domain facilitates the substrate specificity and unwinding processivity of DDX43 helicase
title The KH domain facilitates the substrate specificity and unwinding processivity of DDX43 helicase
title_full The KH domain facilitates the substrate specificity and unwinding processivity of DDX43 helicase
title_fullStr The KH domain facilitates the substrate specificity and unwinding processivity of DDX43 helicase
title_full_unstemmed The KH domain facilitates the substrate specificity and unwinding processivity of DDX43 helicase
title_short The KH domain facilitates the substrate specificity and unwinding processivity of DDX43 helicase
title_sort kh domain facilitates the substrate specificity and unwinding processivity of ddx43 helicase
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7949032/
https://www.ncbi.nlm.nih.gov/pubmed/33199368
http://dx.doi.org/10.1074/jbc.RA120.015824
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