NMR Structures and Dynamics in a Prohead RNA Loop that Binds Metal Ions.

Xiaobo Gu, Sun-Young Park, Marco Tonelli, Gabriel Cornilescu, Tianbing Xia, Dongping Zhong, Susan J Schroeder

Journal: The journal of physical chemistry letters 2018;7(19):3841-3846

PMID: 27631837

Abstract

Metal ions are critical for RNA structure and enzymatic activity. We present the structure of an asymmetric RNA loop that binds metal ions and has an essential function in a bacteriophage packaging motor. Prohead RNA is a noncoding RNA that is required for genome packaging activity in phi29-like bacteriophage. The loops in GA1 and phi29 bacteriophage share a conserved adenine that forms a base triple, although the structural context for the base triple differs. NMR relaxation studies and femtosecond time-resolved fluorescence spectroscopy reveal the dynamic behavior of the loop in the metal ion bound and unbound forms. The mechanism of metal ion binding appears to be an induced conformational change between two dynamic ensembles rather than a conformational capture mechanism. These results provide experimental benchmarks for computational models of RNA-metal ion interactions.

Address: Department of Chemistry & Biochemistry and Department of Microbiology & Plant Biology, University of Oklahoma , Norman, Oklahoma 73019, United States.; Department of Physics, Ohio State University , Columbus, Ohio 43210, United States.; NMRFAM, University of Wisconsin , Madison, Wisconsin 53706, United States.; Department of Molecular and Cell Biology, University of Texas , Dallas, Texas 75080, United States.

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