Methyl-accepting Chemotaxis Proteins

Methyl-accepting chemotaxis proteins (MCPs) are transmembrane chemoreceptors that help bacteria sense chemical gradients and navigate toward favorable conditions or away from harmful compounds. Their periplasmic sensing domains bind or respond to specific ligands, while cytoplasmic signaling regions interact with the CheA kinase and CheW, altering phosphorylation of the response regulator CheY and, consequently, flagellar rotation. Adaptation occurs as CheR methylates MCPs and CheB removes methyl groups, resetting receptor sensitivity and allowing cells to detect changes over time. Studying MCPs clarifies signal transduction, motility, and microbial behavior, with applications in understanding pathogenesis, environmental sensing, and engineered bacterial navigation.

Methyl-accepting Chemotaxis Proteins - Related Videos

Research

JoVE Journal - Biology
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Imaging G Protein-coupled Receptor-mediated Chemotaxis and its Signaling Events in Neutrophil-like HL60 Cells

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Cited by 7 •

2016

Visual chemotaxis assays are essential for a better understanding of how eukaryotic cells control chemoattractant-mediated directional cell migration. Here, we describe detailed methods for: 1) real-time, high-resolution monitoring of multiple chemotaxis assays, and 2) simultaneously visualizing the chemoattractant gradient and the spatiotemporal dynamics of signaling events in neutrophil-like HL60 cells.

Research

JoVE Journal - Biology

Imaging G-protein Coupled Receptor (GPCR)-mediated Signaling Events that Control Chemotaxis of Dictyostelium Discoideum

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Cited by 2 •

2011

Here, we describe detailed live cell imaging methods for investigating chemotaxis. We present fluorescence microscopic methods to monitor spatiotemporal dynamics of signaling events in migrating cells. Measurement of signaling events permits us to further understand how a GPCR-signaling network achieves gradient sensing of chemoattractants and controls directional migration of eukaryotic cells.

Education

JoVE Science Education - Basic Biology

C. elegans Chemotaxis Assay

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2023

Chemotaxis is a process in which cells or organisms move in response to a chemical stimulus. In nature, chemotaxis is important for organisms to sense and move toward food sources and move away from stimuli that may be toxic or harmful. Chemotaxis is also important at the cellular level. For example, chemotaxis is required for the movement of sperm toward an egg prior to fertilization. In the lab, chemotaxis is frequently examined in the nematode, C. elegans, which is known to migrate...

C. elegans Chemotaxis Assay

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Cited by 163 •

2013

A method of quantitatively evaluating the chemotactic response of Caenorhabditis elegans is described. A chemotactic index (CI) was employed as a way to precisely evaluate the response of worms to certain targets, and serve as a platform of comparison between strains and compounds of interest.

In vitro Methylation Assay to Study Protein Arginine Methylation

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Cited by 8 •

2014

Protein arginine methylation, catalyzed by a class of enzymes viz., protein arginine methyl transferases (PRMTs), is the process of enzymatic addition of methyl group(s) to arginines within proteins. The in vitro methylation assay is the most dependable tool for assessing the methylation status of known or novel PRMT substrates.

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