Cytosol Microenvironment

The cytosol microenvironment is the dynamic chemical and physical setting within a cell’s cytosol, where solutes, proteins, organelles, and cytoskeletal structures influence biochemical activity. Its composition, including pH, ionic strength, metabolites, redox state, and macromolecular crowding, regulates molecular diffusion, enzyme conformation, protein interactions, and reaction rates. These conditions can create local gradients and transient compartments, allowing signaling, metabolism, and translation to function differently from reactions in dilute laboratory solutions. Studying the cytosol microenvironment helps explain cellular homeostasis, stress responses, disease-associated dysfunction, and how experimental models can better reproduce conditions inside living cells.

Cytosol Microenvironment - Related Videos

Research

JoVE Journal - Immunology and Infection

Measurement of Cytosolic Ca2+ in Isolated Contractile Lymphatics

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Cited by 24 •

2011

We introduce an approach to evaluate the cytosolic Ca2+ concentration in isolated lymphatics to study Ca2+-dependent and Ca2+-sensitizing mechanisms of lymphatic smooth muscle contraction.

Measurement of Vacuolar and Cytosolic pH In Vivo in Yeast Cell Suspensions

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Cited by 40 •

2013

Vacuolar and cytosolic pH can be measured in live yeast (S. cerevisiae) cells using ratiometric fluorescent dyes localized to specific cellular compartments. We describe procedures for measuring vacuolar pH with BCECF-AM, which localizes to the vacuole in yeast, and cytosolic pH with a cytosolic ratiometric pH-sensitive GFP (yeast pHluorin).

Detection of Toxin Translocation into the Host Cytosol by Surface Plasmon Resonance

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Cited by 14 •

2012

In this report, we describe how surface plasmon resonance is used to detect toxin entry into the host cytosol. This highly sensitive method can provide quantitative data on the amount of cytosolic toxin, and it can be applied to a range of toxins.

Fabrication and Use of MicroEnvironment microArrays (MEArrays)

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Cited by 25 •

2012

A combinatorial functional screening method for gaining insights into the impacts of the molecular composition of microenvironments on cellular functions is described. The method takes advantage of existing microarray-based technologies to generate arrays of defined combinatorial microenvironments that support cell adhesion and functional analysis.

Quantification of Cytosolic vs. Vacuolar Salmonella in Primary Macrophages by Differential Permeabilization

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Cited by 19 •

2015

We describe the quantification of cytosolic and vacuolar Salmonella typhimurium in bone-marrow derived macrophages using differential digitonin permeabilization.

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