Literature DB >> 26523681

Base Flipping by MTERF1 Can Accommodate Multiple Conformations and Occurs in a Stepwise Fashion.

James Byrnes1, Kevin Hauser2, Leah Norona1, Edison Mejia1, Carlos Simmerling3, Miguel Garcia-Diaz4.   

Abstract

Human mitochondrial transcription termination occurs within the leu-tRNA gene and is mediated by the DNA binding protein MTERF1. The crystal structure of MTERF1 bound to the canonical termination sequence reveals a rare base flipping event that involves the eversion of three nucleotides. These nucleotides are stabilized by stacking interactions with three MTERF1 residues, which are essential not only for base flipping but also for termination activity. To further understand the mechanism of base flipping, we examined each of the individual stacking interactions in structural, energetic and functional detail. Individual substitutions of Arg162, Tyr288 and Phe243 have revealed unequal contributions to overall termination activity. Furthermore, our work identifies an important role for Phe322 in the base flipping mechanism and we demonstrate how Phe322 and Phe243 are important for coupling base flipping between the heavy and light strand DNA chains. We propose a stepwise model for the base flipping process that recapitulates our observations. Finally, we show that MTERF1 has the ability to accommodate alternate active conformations. The adaptability of base flipping has implications for MTERF1 function and for the putative function of MTERF1 at alternative binding sites in human mitochondria.
Copyright © 2015 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  X-ray crystallography; base flipping; mitochondria; molecular dynamics; transcription termination

Mesh:

Substances:

Year:  2015        PMID: 26523681      PMCID: PMC4851923          DOI: 10.1016/j.jmb.2015.10.021

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


  49 in total

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4.  Termination of transcription in human mitochondria: identification and purification of a DNA binding protein factor that promotes termination.

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Authors:  Nikita A Kuznetsov; Christina Bergonzo; Arthur J Campbell; Haoquan Li; Grigory V Mechetin; Carlos de los Santos; Arthur P Grollman; Olga S Fedorova; Dmitry O Zharkov; Carlos Simmerling
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Review 8.  Human mitochondrial RNA polymerase: structure-function, mechanism and inhibition.

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9.  Search for differences in post-transcriptional modification patterns of mitochondrial DNA-encoded wild-type and mutant human tRNALys and tRNALeu(UUR).

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10.  MolProbity: all-atom structure validation for macromolecular crystallography.

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