Literature DB >> 29050852

Coop-Seq Analysis Demonstrates that Sox2 Evokes Latent Specificities in the DNA Recognition by Pax6.

Caizhen Hu1, Vikas Malik1, Yiming Kenny Chang2, Veeramohan Veerapandian1, Yogesh Srivastava1, Yong-Heng Huang1, Linlin Hou1, Vlad Cojocaru3, Gary D Stormo2, Ralf Jauch4.   

Abstract

Sox2 and Pax6 co-regulate genes in neural lineages and the lens by forming a ternary complex likely facilitated allosterically through DNA. We used the quantitative and scalable cooperativity-by-sequencing (Coop-seq) approach to interrogate Sox2/Pax6 dimerization on a DNA library where five positions of the Pax6 half-site were randomized yielding 1024 cooperativity factors. Consensus positions normally required for the high-affinity DNA binding by Pax6 need to be mutated for effective dimerization with Sox2. Out of the five randomized bases, a 5' thymidine is present in most of the top ranking elements. However, this thymidine maps to a region outside of the Pax half site and is not expected to directly interact with Pax6 in known binding modes suggesting structural reconfigurations. Re-analysis of ChIP-seq data identified several genomic regions where the cooperativity promoting sequence pattern is co-bound by Sox2 and Pax6. A highly conserved Sox2/Pax6 bound site near the Sprouty2 locus was verified to promote cooperative dimerization designating Sprouty2 as a potential target reliant on Sox2/Pax6 cooperativity in several neural cell types. Collectively, the functional interplay of Sox2 and Pax6 demands the relaxation of high-affinity binding sites and is enabled by alternative DNA sequences. We conclude that this binding mode evolved to warrant that a subset of target genes is only regulated in the presence of suitable partner factors.
Copyright © 2017 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Coop-seq; Pax6; Sox2; cooperativity; deep sequencing; gene regulation; transcription factors

Mesh:

Substances:

Year:  2017        PMID: 29050852     DOI: 10.1016/j.jmb.2017.10.013

Source DB:  PubMed          Journal:  J Mol Biol        ISSN: 0022-2836            Impact factor:   5.469


  3 in total

1.  FOXA1 Mutations Reveal Distinct Chromatin Profiles and Influence Therapeutic Response in Breast Cancer.

Authors:  Amaia Arruabarrena-Aristorena; Jesper L V Maag; Srushti Kittane; Yanyan Cai; Wouter R Karthaus; Erik Ladewig; Jane Park; Srinivasaraghavan Kannan; Lorenzo Ferrando; Emiliano Cocco; Sik Y Ho; Daisylyn S Tan; Mirna Sallaku; Fan Wu; Barbara Acevedo; Pier Selenica; Dara S Ross; Matthew Witkin; Charles L Sawyers; Jorge S Reis-Filho; Chandra S Verma; Ralf Jauch; Richard Koche; José Baselga; Pedram Razavi; Eneda Toska; Maurizio Scaltriti
Journal:  Cancer Cell       Date:  2020-09-03       Impact factor: 31.743

2.  Quantitative profiling of BATF family proteins/JUNB/IRF hetero-trimers using Spec-seq.

Authors:  Yiming K Chang; Zheng Zuo; Gary D Stormo
Journal:  BMC Mol Biol       Date:  2018-03-27       Impact factor: 2.946

Review 3.  The genetic architecture of aniridia and Gillespie syndrome.

Authors:  Hildegard Nikki Hall; Kathleen A Williamson; David R FitzPatrick
Journal:  Hum Genet       Date:  2018-09-22       Impact factor: 4.132

  3 in total

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