Journal:MicroPubl Biol:000670

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The UCSF ChimeraX electrostatic potential tool showed this <scene name='94/945522/Cv/16'>crevice around the binding site was also highly positive for interaction with the negatively charged DNA backbone</scene>. {{Template:ColorKey_Charge_Anionic}} / {{Template:ColorKey_Charge_Cationic}} The conservation of predicted DNA binding residues, electrostatic surface potentials, structural similarity to recombinase DBDs, along with a predicted nuclear localization, support GhLSH4L-A0A1U8MC48 functioning as a transcription factor or a recruiter of chromatin remodeling that binds to DNA and alters gene expression, likely as an important step in early plant development.
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The UCSF ChimeraX electrostatic potential tool showed this <scene name='94/945522/Cv/16'>crevice around the binding site was also highly positive for interaction with the negatively charged DNA backbone</scene>({{Template:ColorKey_Charge_Anionic}} / {{Template:ColorKey_Charge_Cationic}}). The conservation of predicted DNA binding residues, electrostatic surface potentials, structural similarity to recombinase DBDs, along with a predicted nuclear localization, support GhLSH4L-A0A1U8MC48 functioning as a transcription factor or a recruiter of chromatin remodeling that binds to DNA and alters gene expression, likely as an important step in early plant development.
<b>References</b><br>
<b>References</b><br>

Revision as of 11:37, 17 January 2023

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