Cargando…

Allosteric autoregulation of DNA binding via a DNA-mimicking protein domain: a biophysical study of ZNF410–DNA interaction using small angle X-ray scattering

ZNF410 is a highly-conserved transcription factor, remarkable in that it recognizes a 15-base pair DNA element but has just a single responsive target gene in mammalian erythroid cells. ZNF410 includes a tandem array of five zinc-fingers (ZFs), surrounded by uncharacterized N- and C-terminal regions...

Descripción completa

Detalles Bibliográficos
Autores principales: Kaur, Gundeep, Ren, Ren, Hammel, Michal, Horton, John R, Yang, Jie, Cao, Yu, He, Chenxi, Lan, Fei, Lan, Xianjiang, Blobel, Gerd A, Blumenthal, Robert M, Zhang, Xing, Cheng, Xiaodong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9976917/
https://www.ncbi.nlm.nih.gov/pubmed/36660822
http://dx.doi.org/10.1093/nar/gkac1274
_version_ 1784899180489080832
author Kaur, Gundeep
Ren, Ren
Hammel, Michal
Horton, John R
Yang, Jie
Cao, Yu
He, Chenxi
Lan, Fei
Lan, Xianjiang
Blobel, Gerd A
Blumenthal, Robert M
Zhang, Xing
Cheng, Xiaodong
author_facet Kaur, Gundeep
Ren, Ren
Hammel, Michal
Horton, John R
Yang, Jie
Cao, Yu
He, Chenxi
Lan, Fei
Lan, Xianjiang
Blobel, Gerd A
Blumenthal, Robert M
Zhang, Xing
Cheng, Xiaodong
author_sort Kaur, Gundeep
collection PubMed
description ZNF410 is a highly-conserved transcription factor, remarkable in that it recognizes a 15-base pair DNA element but has just a single responsive target gene in mammalian erythroid cells. ZNF410 includes a tandem array of five zinc-fingers (ZFs), surrounded by uncharacterized N- and C-terminal regions. Unexpectedly, full-length ZNF410 has reduced DNA binding affinity, compared to that of the isolated DNA binding ZF array, both in vitro and in cells. AlphaFold predicts a partially-folded N-terminal subdomain that includes a 30-residue long helix, preceded by a hairpin loop rich in acidic (aspartate/glutamate) and serine/threonine residues. This hairpin loop is predicted by AlphaFold to lie against the DNA binding interface of the ZF array. In solution, ZNF410 is a monomer and binds to DNA with 1:1 stoichiometry. Surprisingly, the single best-fit model for the experimental small angle X-ray scattering profile, in the absence of DNA, is the original AlphaFold model with the N-terminal long-helix and the hairpin loop occupying the ZF DNA binding surface. For DNA binding, the hairpin loop presumably must be displaced. After combining biophysical, biochemical, bioinformatic and artificial intelligence-based AlphaFold analyses, we suggest that the hairpin loop mimics the structure and electrostatics of DNA, and provides an additional mechanism, supplementary to sequence specificity, of regulating ZNF410 DNA binding.
format Online
Article
Text
id pubmed-9976917
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-99769172023-03-02 Allosteric autoregulation of DNA binding via a DNA-mimicking protein domain: a biophysical study of ZNF410–DNA interaction using small angle X-ray scattering Kaur, Gundeep Ren, Ren Hammel, Michal Horton, John R Yang, Jie Cao, Yu He, Chenxi Lan, Fei Lan, Xianjiang Blobel, Gerd A Blumenthal, Robert M Zhang, Xing Cheng, Xiaodong Nucleic Acids Res Gene regulation, Chromatin and Epigenetics ZNF410 is a highly-conserved transcription factor, remarkable in that it recognizes a 15-base pair DNA element but has just a single responsive target gene in mammalian erythroid cells. ZNF410 includes a tandem array of five zinc-fingers (ZFs), surrounded by uncharacterized N- and C-terminal regions. Unexpectedly, full-length ZNF410 has reduced DNA binding affinity, compared to that of the isolated DNA binding ZF array, both in vitro and in cells. AlphaFold predicts a partially-folded N-terminal subdomain that includes a 30-residue long helix, preceded by a hairpin loop rich in acidic (aspartate/glutamate) and serine/threonine residues. This hairpin loop is predicted by AlphaFold to lie against the DNA binding interface of the ZF array. In solution, ZNF410 is a monomer and binds to DNA with 1:1 stoichiometry. Surprisingly, the single best-fit model for the experimental small angle X-ray scattering profile, in the absence of DNA, is the original AlphaFold model with the N-terminal long-helix and the hairpin loop occupying the ZF DNA binding surface. For DNA binding, the hairpin loop presumably must be displaced. After combining biophysical, biochemical, bioinformatic and artificial intelligence-based AlphaFold analyses, we suggest that the hairpin loop mimics the structure and electrostatics of DNA, and provides an additional mechanism, supplementary to sequence specificity, of regulating ZNF410 DNA binding. Oxford University Press 2023-01-20 /pmc/articles/PMC9976917/ /pubmed/36660822 http://dx.doi.org/10.1093/nar/gkac1274 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of Nucleic Acids Research. https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial License (https://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Gene regulation, Chromatin and Epigenetics
Kaur, Gundeep
Ren, Ren
Hammel, Michal
Horton, John R
Yang, Jie
Cao, Yu
He, Chenxi
Lan, Fei
Lan, Xianjiang
Blobel, Gerd A
Blumenthal, Robert M
Zhang, Xing
Cheng, Xiaodong
Allosteric autoregulation of DNA binding via a DNA-mimicking protein domain: a biophysical study of ZNF410–DNA interaction using small angle X-ray scattering
title Allosteric autoregulation of DNA binding via a DNA-mimicking protein domain: a biophysical study of ZNF410–DNA interaction using small angle X-ray scattering
title_full Allosteric autoregulation of DNA binding via a DNA-mimicking protein domain: a biophysical study of ZNF410–DNA interaction using small angle X-ray scattering
title_fullStr Allosteric autoregulation of DNA binding via a DNA-mimicking protein domain: a biophysical study of ZNF410–DNA interaction using small angle X-ray scattering
title_full_unstemmed Allosteric autoregulation of DNA binding via a DNA-mimicking protein domain: a biophysical study of ZNF410–DNA interaction using small angle X-ray scattering
title_short Allosteric autoregulation of DNA binding via a DNA-mimicking protein domain: a biophysical study of ZNF410–DNA interaction using small angle X-ray scattering
title_sort allosteric autoregulation of dna binding via a dna-mimicking protein domain: a biophysical study of znf410–dna interaction using small angle x-ray scattering
topic Gene regulation, Chromatin and Epigenetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9976917/
https://www.ncbi.nlm.nih.gov/pubmed/36660822
http://dx.doi.org/10.1093/nar/gkac1274
work_keys_str_mv AT kaurgundeep allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT renren allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT hammelmichal allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT hortonjohnr allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT yangjie allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT caoyu allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT hechenxi allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT lanfei allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT lanxianjiang allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT blobelgerda allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT blumenthalrobertm allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT zhangxing allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering
AT chengxiaodong allostericautoregulationofdnabindingviaadnamimickingproteindomainabiophysicalstudyofznf410dnainteractionusingsmallanglexrayscattering