Rapid Screening of Bacterial Chemoeffectors of Pseudomonas parafulva Using a CheA ATPase Activity‐Based Assay

Bacterial chemotaxis enables cells to move in gradients of environmental signals that are sensed by chemoreceptors. A major limitation in the field consists currently in the lacking information on the signal(s) or chemoeffectors recognized by the majority of chemoreceptors, which in turn hampers understanding of how the environment has shaped chemotactic capabilities. A number of different approaches for signal identification have been reported that are often labour-intensive. Here, we developed a straightforward NADH-coupled CheA ATPase assay to systematically screen potential chemoeffectors. Obtained results are complemented with differential scanning fluorimetry and isothermal titration calorimetry analyses, as well as structural protein modelling to study the chemoreceptors of Pseudomonas parafulva PSR09-11288. Using this integrated approach, we identified L-malate, citrate, L-glutamine, and L-asparagine as chemoattractants and revealed that chemoreceptor B2J77_03605 specifically recognizes L-malate and citrate, whereas chemoreceptor B2J77_13170 binds L-glutamine and L-asparagine. The universality of this approach is shown by the fact that both chemoreceptors belong to different families and possess sensor domains that belong to the HBM and dCache families, respectively. This pipeline is a scalable workflow for chemoeffector identification, permitting systematic exploration of bacterial chemotactic capabilities.

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Publication Details

Journal
Environmental Microbiology
Published
2026-09-01
DOI
https://doi.org/10.1111/1462-2920.70408
Primary Topic
Bacterial Genetics and Biotechnology
Type
article
Field-Weighted Citation Impact
0.00

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article

Rapid Screening of Bacterial Chemoeffectors of Pseudomonas parafulva Using a CheA ATPase Activity‐Based Assay

Tino Krell, De‐Feng Li, Rui Cui, Ni‐Ye You et al.
Environmental Microbiology
Bacterial Genetics and Biotechnology
article

Rapid Screening of Bacterial Chemoeffectors of Pseudomonas parafulva Using a CheA ATPase Activity‐Based Assay

Tino Krell, De‐Feng Li, Rui Cui, Ni‐Ye You, Jie Li
article en

Abstract

Bacterial chemotaxis enables cells to move in gradients of environmental signals that are sensed by chemoreceptors. A major limitation in the field consists currently in the lacking information on the signal(s) or chemoeffectors recognized by the majority of chemoreceptors, which in turn hampers understanding of how the environment has shaped chemotactic capabilities. A number of different approaches for signal identification have been reported that are often labour-intensive. Here, we developed a straightforward NADH-coupled CheA ATPase assay to systematically screen potential chemoeffectors. Obtained results are complemented with differential scanning fluorimetry and isothermal titration calorimetry analyses, as well as structural protein modelling to study the chemoreceptors of Pseudomonas parafulva PSR09-11288. Using this integrated approach, we identified L-malate, citrate, L-glutamine, and L-asparagine as chemoattractants and revealed that chemoreceptor B2J77_03605 specifically recognizes L-malate and citrate, whereas chemoreceptor B2J77_13170 binds L-glutamine and L-asparagine. The universality of this approach is shown by the fact that both chemoreceptors belong to different families and possess sensor domains that belong to the HBM and dCache families, respectively. This pipeline is a scalable workflow for chemoeffector identification, permitting systematic exploration of bacterial chemotactic capabilities.

Environmental MicrobiologyVol. 28(9)
Estación Experimental del Zaidín (ES), Institute of Mechanics (CN), University of Chinese Academy of Sciences (CN)
National Natural Science Foundation of China, Chinese Academy of Sciences, China Postdoctoral Science Foundation, Agencia Estatal de Investigación
Decent work and economic growth
Openalex Percentile: Top 11%
Bacterial Genetics and Biotechnology
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