Temperature-Resolved Cryo-EM Uncovers Structural Bases of Temperature-Dependent Enzyme Functions.

Chin-Yu Chen, Yuan-Chih Chang, Bo-Lin Lin, Chun-Hsiang Huang, Ming-Daw Tsai

Journal: Journal of the American Chemical Society 2020;141(51):19983-19987

PMID: 31829582

Abstract

Protein functions are temperature-dependent, but protein structures are usually solved at a single (often low) temperature because of limitations on the conditions of crystal growth or protein vitrification. Here we demonstrate the feasibility of solving cryo-EM structures of proteins vitrified at high temperatures, solve 12 structures of an archaeal ketol-acid reductoisomerase (KARI) vitrified at 4-70 °C, and show that structures of both the Mg form (KARI:2Mg) and its ternary complex (KARI:2Mg:NADH:inhibitor) are temperature-dependent in correlation with the temperature dependence of enzyme activity. Furthermore, structural analyses led to dissection of the induced-fit mechanism into ligand-induced and temperature-induced effects and to capture of temperature-resolved intermediates of the temperature-induced conformational change. The results also suggest that it is preferable to solve cryo-EM structures of protein complexes at functional temperatures. These studies should greatly expand the landscapes of protein structure-function relationships and enhance the mechanistic analysis of enzymatic functions.

Address: Department of Life Sciences , National Central University , Taoyuan 32001 , Taiwan.; Experimental Facility Division , National Synchrotron Radiation Research Center , Hsinchu 30076 , Taiwan.; Institute of Biochemical Sciences , National Taiwan University , Taipei 106 , Taiwan.

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