Patidar, Yogesh ; Athreya, Arunabh ; Sharma, Ravish ; Aravind, Penmatsa ; Sardesai, Abhijit A. (2025) Interaction of unphosphorylated PtsN with the K+/H+ antiporter YcgO inhibits its activity in Escherichia coli Journal of Biological Chemistry, 301 (2). p. 108153. ISSN 00219258
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Official URL: https://doi.org/10.1016/j.jbc.2024.108153
Related URL: http://dx.doi.org/10.1016/j.jbc.2024.108153
Abstract
Genetic studies in Escherichia coli have implicated the unphosphorylated version of PtsN (unphospho-PtsN), the terminal phospho-acceptor of the PtsP-PtsO-PtsN phosphorelay, as a negative regulator of potassium (K+) efflux mediated by YcgO. YcgO is a protein belonging to the CPA1 family of monovalent cation/proton antiporters. Here we show that in vivo, YcgO comprises an approximately 383 amino acid N-terminal transmembrane domain and a 195 amino acid C-terminal cytoplasmic region (CTR). Copurification studies show that unphospho-PtsN specifically interacts with YcgO, and phosphorylation of PtsN leads to marked attenuation of the interaction. Genetic and biochemical analyses of a class of mutations in YcgO that lead to constitutive activation of YcgO identify the CTR as the site of interaction between unphospho-PtsN and YcgO and indicate that the putative CorC domain in the CTR may serve as the site of interaction. Our studies are supportive of a model which postulates that the unphospho–PtsN:CorC interaction may inhibit the activation of YcgO by a putative RCK domain in the CTR, leading to the inhibition of the K+/H+ antiport activity of YcgO.
| Item Type: | Article |
|---|---|
| Source: | Copyright of this article belongs to American Society for Biochemistry and Molecular Biology. |
| Keywords: | Potassium transport; Protein-protein interaction; Membrane protein; Bacterial genetics; Bacterial metabolism; Potassium/proton antiport; Phosphorelay; Escherichia coli (E. coli)unphos; Phorylated-PtsN |
| ID Code: | 142733 |
| Deposited On: | 20 Mar 2026 09:55 |
| Last Modified: | 20 Mar 2026 09:55 |
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