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Structural features discriminating hybrid histidine kinase Rec domains from response regulator homologs

Brüderlin, Mitchell and Böhm, Raphael and Fadel, Firas and Hiller, Sebastian and Schirmer, Tilman and Dubey, Badri N.. (2023) Structural features discriminating hybrid histidine kinase Rec domains from response regulator homologs. Nature communications, 14 (1). p. 1002.

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Abstract

In two-component systems, the information gathered by histidine kinases (HKs) are relayed to cognate response regulators (RRs). Thereby, the phosphoryl group of the auto-phosphorylated HK is transferred to the receiver (Rec) domain of the RR to allosterically activate its effector domain. In contrast, multi-step phosphorelays comprise at least one additional Rec (Rec; inter; ) domain that is typically part of the HK and acts as an intermediary for phosphoryl-shuttling. While RR Rec domains have been studied extensively, little is known about discriminating features of Rec; inter; domains. Here we study the Rec; inter; domain of the hybrid HK CckA by X-ray crystallography and NMR spectroscopy. Strikingly, all active site residues of the canonical Rec-fold are pre-arranged for phosphoryl-binding and BeF; 3; -; binding does not alter secondary or quaternary structure, indicating the absence of allosteric changes, the hallmark of RRs. Based on sequence-covariation and modeling, we analyze the intra-molecular DHp/Rec association in hybrid HKs.
Faculties and Departments:05 Faculty of Science > Departement Biozentrum > Former Organization Units Biozentrum > Structural Biology (Schirmer)
05 Faculty of Science > Departement Biozentrum > Structural Biology & Biophysics > Structural Biology (Hiller)
UniBasel Contributors:Schirmer, Tilman and Brüderlin, Mitchell and Böhm, Raphael and Fadel, Firas and Hiller, Sebastian and Dubey, Badri Nath
Item Type:Article, refereed
Article Subtype:Research Article
Publisher:Nature
e-ISSN:2041-1723
Note:Publication type according to Uni Basel Research Database: Journal article
Language:English
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Last Modified:25 Apr 2023 03:10
Deposited On:22 Mar 2023 15:12

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