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Molecular dynamics simulations show altered secondary structure of clawless in binary complex with DNA providing insights into aristaless-clawless-DNA ternary complex formation.

DIR@IMTECH: CSIR-Institute of Microbial Technology

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Title Molecular dynamics simulations show altered secondary structure of clawless in binary complex with DNA providing insights into aristaless-clawless-DNA ternary complex formation.
 
Creator Kachhap, Sangita
Priyadarshini, Pragya
Singh, Balvinder
 
Subject QR Microbiology
 
Description Aristaless (Al) and clawless (Cll) homeodomains that are involved in leg development in Drosophila melanogaster are known to bind cooperatively to 5'-(T/C)TAATTAA(T/A)(T/A)G-3' DNA sequence, but the mechanism of their binding to DNA is unknown. Molecular dynamics (MD) studies have been carried out on binary, ternary, and reconstructed protein-DNA complexes involving Al, Cll, and DNA along with binding free energy analysis of these complexes. Analysis of MD trajectories of Cll-3A01, binary complex reveals that C-terminal end of helixIII of Cll, unwind in the absence of Al and remains so in reconstructed ternary complex, Cll-3A01-Al. In addition, this change in secondary structure of Cll does not allow it to form protein-protein interactions with Al in the ternary reconstructed complex. However, secondary structure of Cll and its interactions are maintained in other reconstructed ternary complex, Al-3A01-Cll where Cll binds to Al-3A01, binary complex to form ternary complex. These interactions as observed during MD simulations compare well with those observed in ternary crystal structure. Thus, this study highlights the role of helixIII of Cll and protein-protein interactions while proposing likely mechanism of recognition in ternary complex, Al-Cll-DNA.
 
Publisher Taylor & Francis
 
Date 2016-05-04
 
Type Article
PeerReviewed
 
Relation http://www.tandfonline.com/doi/abs/10.1080/07391102.2016.1175967?journalCode=tbsd20
http://crdd.osdd.net/open/1875/
 
Identifier Kachhap, Sangita and Priyadarshini, Pragya and Singh, Balvinder (2016) Molecular dynamics simulations show altered secondary structure of clawless in binary complex with DNA providing insights into aristaless-clawless-DNA ternary complex formation. Journal of biomolecular structure & dynamics. pp. 1-15. ISSN 1538-0254 (In Press)