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Use of paramagnetic 19F NMR to monitor domain movement in a glutamate transporter homolog.


ABSTRACT: In proteins where conformational changes are functionally important, the number of accessible states and their dynamics are often difficult to establish. Here we describe a novel 19F-NMR spectroscopy approach to probe dynamics of large membrane proteins. We labeled a glutamate transporter homolog with a 19F probe via cysteine chemistry and with a Ni2+ ion via chelation by a di-histidine motif. We used distance-dependent enhancement of the longitudinal relaxation of 19F nuclei by the paramagnetic metal to assign the observed resonances. We identified one inward- and two outward-facing states of the transporter, in which the substrate-binding site is near the extracellular and intracellular solutions, respectively. We then resolved the structure of the unanticipated second outward-facing state by cryo-EM. Finally, we showed that the rates of the conformational exchange are accessible from measurements of the metal-enhanced longitudinal relaxation of 19F nuclei.

SUBMITTER: Huang Y 

PROVIDER: S-EPMC7442671 | biostudies-literature | 2020 Sep

REPOSITORIES: biostudies-literature

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Use of paramagnetic <sup>19</sup>F NMR to monitor domain movement in a glutamate transporter homolog.

Huang Yun Y   Wang Xiaoyu X   Lv Guohua G   Razavi Asghar M AM   Huysmans Gerard H M GHM   Weinstein Harel H   Bracken Clay C   Eliezer David D   Boudker Olga O  

Nature chemical biology 20200608 9


In proteins where conformational changes are functionally important, the number of accessible states and their dynamics are often difficult to establish. Here we describe a novel <sup>19</sup>F-NMR spectroscopy approach to probe dynamics of large membrane proteins. We labeled a glutamate transporter homolog with a <sup>19</sup>F probe via cysteine chemistry and with a Ni<sup>2+</sup> ion via chelation by a di-histidine motif. We used distance-dependent enhancement of the longitudinal relaxation  ...[more]

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