Conversion of the Sensor Kinase DcuS to the Fumarate Sensitive State by Interaction of the Bifunctional Transporter DctA at the TM2/PAS<sub>C</sub>-Linker Region
The membrane-bound C<sub>4</sub>-dicarboxylate (C4DC) sensor kinase DcuS of <i>Escherichia coli</i> typically forms a protein complex with the C4DC transporter DctA. The DctA × DcuS complex is able to respond to C4DCs, whereas DcuS without DctA is in the permanent ON state. I...
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doaj-f6b9bcae46b64609beaa22b4113caecd2021-07-23T13:55:06ZengMDPI AGMicroorganisms2076-26072021-06-0191397139710.3390/microorganisms9071397Conversion of the Sensor Kinase DcuS to the Fumarate Sensitive State by Interaction of the Bifunctional Transporter DctA at the TM2/PAS<sub>C</sub>-Linker RegionMarius Stopp0Christopher Schubert1Gottfried Unden2Institute for Molecular Physiology, Johannes Gutenberg-University, 55122 Mainz, GermanyInstitute for Molecular Physiology, Johannes Gutenberg-University, 55122 Mainz, GermanyInstitute for Molecular Physiology, Johannes Gutenberg-University, 55122 Mainz, GermanyThe membrane-bound C<sub>4</sub>-dicarboxylate (C4DC) sensor kinase DcuS of <i>Escherichia coli</i> typically forms a protein complex with the C4DC transporter DctA. The DctA × DcuS complex is able to respond to C4DCs, whereas DcuS without DctA is in the permanent ON state. In DctA, the C-terminal helix 8b (H8b) serves as the site for interaction with DcuS. Here the interaction site in DcuS and the related structural and functional adaptation in DcuS were determined. The Linker connecting transmembrane helix 2 (TM2) and the cytosolic PAS<sub>C</sub> (Per-ARNT-SIM) domain of DcuS, was identified as the major site for interaction with DctA-H8b by in vivo interaction studies. The Linker is known to convert the piston-type transmembrane signaling of TM2 to a tilting motion which relies on a resolution of the Linker-Linker’ homodimer in the presence of C4DCs. Absence of DctA caused decreased cross-linking in the Linker, as identified by oxidative Cys-cross-linking. This response resembled structurally and functionally that of fumarate activation in the DctA × DcuS complex. Overall, formation of the DctA × DcuS complex is based on the interaction of the DcuS Linker with DctA H8b; the interaction is required to set DcuS in the C4DC-responsive state by stabilizing the linker-linker’ homodimer in DcuS. This work identifies DctA as a structural co-regulator of DcuS sensor kinase.https://www.mdpi.com/2076-2607/9/7/1397sensor kinase DcuSbifunctional transporter DctAsensor complexstructural co-regulator |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Marius Stopp Christopher Schubert Gottfried Unden |
spellingShingle |
Marius Stopp Christopher Schubert Gottfried Unden Conversion of the Sensor Kinase DcuS to the Fumarate Sensitive State by Interaction of the Bifunctional Transporter DctA at the TM2/PAS<sub>C</sub>-Linker Region Microorganisms sensor kinase DcuS bifunctional transporter DctA sensor complex structural co-regulator |
author_facet |
Marius Stopp Christopher Schubert Gottfried Unden |
author_sort |
Marius Stopp |
title |
Conversion of the Sensor Kinase DcuS to the Fumarate Sensitive State by Interaction of the Bifunctional Transporter DctA at the TM2/PAS<sub>C</sub>-Linker Region |
title_short |
Conversion of the Sensor Kinase DcuS to the Fumarate Sensitive State by Interaction of the Bifunctional Transporter DctA at the TM2/PAS<sub>C</sub>-Linker Region |
title_full |
Conversion of the Sensor Kinase DcuS to the Fumarate Sensitive State by Interaction of the Bifunctional Transporter DctA at the TM2/PAS<sub>C</sub>-Linker Region |
title_fullStr |
Conversion of the Sensor Kinase DcuS to the Fumarate Sensitive State by Interaction of the Bifunctional Transporter DctA at the TM2/PAS<sub>C</sub>-Linker Region |
title_full_unstemmed |
Conversion of the Sensor Kinase DcuS to the Fumarate Sensitive State by Interaction of the Bifunctional Transporter DctA at the TM2/PAS<sub>C</sub>-Linker Region |
title_sort |
conversion of the sensor kinase dcus to the fumarate sensitive state by interaction of the bifunctional transporter dcta at the tm2/pas<sub>c</sub>-linker region |
publisher |
MDPI AG |
series |
Microorganisms |
issn |
2076-2607 |
publishDate |
2021-06-01 |
description |
The membrane-bound C<sub>4</sub>-dicarboxylate (C4DC) sensor kinase DcuS of <i>Escherichia coli</i> typically forms a protein complex with the C4DC transporter DctA. The DctA × DcuS complex is able to respond to C4DCs, whereas DcuS without DctA is in the permanent ON state. In DctA, the C-terminal helix 8b (H8b) serves as the site for interaction with DcuS. Here the interaction site in DcuS and the related structural and functional adaptation in DcuS were determined. The Linker connecting transmembrane helix 2 (TM2) and the cytosolic PAS<sub>C</sub> (Per-ARNT-SIM) domain of DcuS, was identified as the major site for interaction with DctA-H8b by in vivo interaction studies. The Linker is known to convert the piston-type transmembrane signaling of TM2 to a tilting motion which relies on a resolution of the Linker-Linker’ homodimer in the presence of C4DCs. Absence of DctA caused decreased cross-linking in the Linker, as identified by oxidative Cys-cross-linking. This response resembled structurally and functionally that of fumarate activation in the DctA × DcuS complex. Overall, formation of the DctA × DcuS complex is based on the interaction of the DcuS Linker with DctA H8b; the interaction is required to set DcuS in the C4DC-responsive state by stabilizing the linker-linker’ homodimer in DcuS. This work identifies DctA as a structural co-regulator of DcuS sensor kinase. |
topic |
sensor kinase DcuS bifunctional transporter DctA sensor complex structural co-regulator |
url |
https://www.mdpi.com/2076-2607/9/7/1397 |
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