Structural insights into sodium transport by the oxaloacetate decarboxylase sodium pump.

Xu, Xin; Shi, Huigang; Gong, Xiaowen; Chen, Pu; Gao, Ying; Zhang, Xinzheng; Xiang, Song · Elife · 2020

basic_science · Level V

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Abstract

The oxaloacetate decarboxylase sodium pump (OAD) is a unique primary-active transporter that utilizes the free energy derived from oxaloacetate decarboxylation for sodium transport across the cell membrane. It is composed of 3 subunits: the α subunit catalyzes carboxyl-transfer from oxaloacetate to biotin, the membrane integrated β subunit catalyzes the subsequent carboxyl-biotin decarboxylation and the coupled sodium transport, the γ subunit interacts with the α and β subunits and stabilizes the OAD complex. We present here structure of the <i>Salmonella typhimurium</i> OAD βγ sub-complex. The structure revealed that the β and γ subunits form a β<sub>3</sub>γ<sub>3</sub> hetero-hexamer with extensive interactions between the subunits and shed light on the OAD holo-enzyme assembly. Structure-guided functional studies provided insights into the sodium binding sites in the β subunit and the coupling between carboxyl-biotin decarboxylation and sodium transport by the OAD β subunit.

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