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Structural Insights of the ssDNA Binding Site in the Multifunctional Endonuclease AtBFN2 from Arabidopsis thaliana

The multi S1/P1 nuclease AtBFN2 (EC 3.1.30.1) encoded by the Arabidopsis thaliana At1g68290 gene is a glycoprotein that digests RNA, ssDNA, and dsDNA. AtBFN2 depends on three zinc ions for cleaving DNA and RNA at 3′-OH to yield 5′-nucleotides. In addition, AtBFN2′s enzymatic activity is strongly gly...

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Autores principales: Yu, Tsung-Fu, Maestre-Reyna, Manuel, Ko, Chia-Yun, Ko, Tzu-Ping, Sun, Yuh-Ju, Lin, Tsai-Yun, Shaw, Jei-Fu, Wang, Andrew H.-J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4144908/
https://www.ncbi.nlm.nih.gov/pubmed/25157844
http://dx.doi.org/10.1371/journal.pone.0105821
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author Yu, Tsung-Fu
Maestre-Reyna, Manuel
Ko, Chia-Yun
Ko, Tzu-Ping
Sun, Yuh-Ju
Lin, Tsai-Yun
Shaw, Jei-Fu
Wang, Andrew H.-J.
author_facet Yu, Tsung-Fu
Maestre-Reyna, Manuel
Ko, Chia-Yun
Ko, Tzu-Ping
Sun, Yuh-Ju
Lin, Tsai-Yun
Shaw, Jei-Fu
Wang, Andrew H.-J.
author_sort Yu, Tsung-Fu
collection PubMed
description The multi S1/P1 nuclease AtBFN2 (EC 3.1.30.1) encoded by the Arabidopsis thaliana At1g68290 gene is a glycoprotein that digests RNA, ssDNA, and dsDNA. AtBFN2 depends on three zinc ions for cleaving DNA and RNA at 3′-OH to yield 5′-nucleotides. In addition, AtBFN2′s enzymatic activity is strongly glycan dependent. Plant Zn(2+)-dependent endonucleases present a unique fold, and belong to the Phospholipase C (PLC)/P1 nuclease superfamily. In this work, we present the first complete, ligand-free, AtBFN2 crystal structure, along with sulfate, phosphate and ssDNA co-crystal structures. With these, we were able to provide better insight into the glycan structure and possible enzymatic mechanism. In comparison with other nucleases, the AtBFN2/ligand-free and AtBFN2/PO(4) models suggest a similar, previously proposed, catalytic mechanism. Our data also confirm that the phosphate and vanadate can inhibit the enzyme activity by occupying the active site. More importantly, the AtBFN2/A(5)T structure reveals a novel and conserved secondary binding site, which seems to be important for plant Zn(2+)-dependent endonucleases. Based on these findings, we propose a rational ssDNA binding model, in which the ssDNA wraps itself around the protein and the attached surface glycan, in turn, reinforces the binding complex.
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spelling pubmed-41449082014-08-29 Structural Insights of the ssDNA Binding Site in the Multifunctional Endonuclease AtBFN2 from Arabidopsis thaliana Yu, Tsung-Fu Maestre-Reyna, Manuel Ko, Chia-Yun Ko, Tzu-Ping Sun, Yuh-Ju Lin, Tsai-Yun Shaw, Jei-Fu Wang, Andrew H.-J. PLoS One Research Article The multi S1/P1 nuclease AtBFN2 (EC 3.1.30.1) encoded by the Arabidopsis thaliana At1g68290 gene is a glycoprotein that digests RNA, ssDNA, and dsDNA. AtBFN2 depends on three zinc ions for cleaving DNA and RNA at 3′-OH to yield 5′-nucleotides. In addition, AtBFN2′s enzymatic activity is strongly glycan dependent. Plant Zn(2+)-dependent endonucleases present a unique fold, and belong to the Phospholipase C (PLC)/P1 nuclease superfamily. In this work, we present the first complete, ligand-free, AtBFN2 crystal structure, along with sulfate, phosphate and ssDNA co-crystal structures. With these, we were able to provide better insight into the glycan structure and possible enzymatic mechanism. In comparison with other nucleases, the AtBFN2/ligand-free and AtBFN2/PO(4) models suggest a similar, previously proposed, catalytic mechanism. Our data also confirm that the phosphate and vanadate can inhibit the enzyme activity by occupying the active site. More importantly, the AtBFN2/A(5)T structure reveals a novel and conserved secondary binding site, which seems to be important for plant Zn(2+)-dependent endonucleases. Based on these findings, we propose a rational ssDNA binding model, in which the ssDNA wraps itself around the protein and the attached surface glycan, in turn, reinforces the binding complex. Public Library of Science 2014-08-26 /pmc/articles/PMC4144908/ /pubmed/25157844 http://dx.doi.org/10.1371/journal.pone.0105821 Text en © 2014 Yu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Yu, Tsung-Fu
Maestre-Reyna, Manuel
Ko, Chia-Yun
Ko, Tzu-Ping
Sun, Yuh-Ju
Lin, Tsai-Yun
Shaw, Jei-Fu
Wang, Andrew H.-J.
Structural Insights of the ssDNA Binding Site in the Multifunctional Endonuclease AtBFN2 from Arabidopsis thaliana
title Structural Insights of the ssDNA Binding Site in the Multifunctional Endonuclease AtBFN2 from Arabidopsis thaliana
title_full Structural Insights of the ssDNA Binding Site in the Multifunctional Endonuclease AtBFN2 from Arabidopsis thaliana
title_fullStr Structural Insights of the ssDNA Binding Site in the Multifunctional Endonuclease AtBFN2 from Arabidopsis thaliana
title_full_unstemmed Structural Insights of the ssDNA Binding Site in the Multifunctional Endonuclease AtBFN2 from Arabidopsis thaliana
title_short Structural Insights of the ssDNA Binding Site in the Multifunctional Endonuclease AtBFN2 from Arabidopsis thaliana
title_sort structural insights of the ssdna binding site in the multifunctional endonuclease atbfn2 from arabidopsis thaliana
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4144908/
https://www.ncbi.nlm.nih.gov/pubmed/25157844
http://dx.doi.org/10.1371/journal.pone.0105821
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