Target intelligence / Profile preview

Bacterial cytoplasmic membrane (Gram-positive) (BCM)

Target
BCM
Molecular classification
Lipid bilayer, Cellular structure, Biological membrane
01

Overview

The bacterial cytoplasmic membrane of Gram-positive bacteria is a vital phospholipid bilayer that serves as the primary barrier between the cytoplasm and the external environment (Epand et al., 2016). Unlike Gram-negative bacteria, Gram-positive organisms lack an outer membrane, making their cytoplasmic membrane directly accessible to various antimicrobial agents once they penetrate the thick peptidoglycan layer. This membrane is rich in anionic lipids, such as phosphatidylglycerol and cardiolipin, which provide a target for cationic lipopeptides and antimicrobial peptides (Yeaman & Yount, 2003). It plays a critical role in essential cellular processes, including the generation of the proton motive force for ATP production, nutrient transport, and the anchoring of enzymes involved in cell wall biosynthesis (Strahl & Hamoen, 2010). Therapeutic agents like daptomycin exploit the membrane's composition by inserting into the bilayer in a calcium-dependent manner, leading to oligomerization, pore formation, and rapid depolarization that halts bacterial metabolism (Silverman et al., 2003). Because the integrity of this membrane is fundamental to bacterial viability, it remains a high-priority target for treating multi-drug resistant infections, including methicillin-resistant Staphylococcus aureus (MRSA) and vancomycin-resistant Enterococci (VRE) (Heidary et al., 2018).

Other names
Bacterial plasma membraneGram-positive inner membraneProtoplast membraneCytoplasmic membrane
02

Mechanism of action

Antibiotics targeting the Gram-positive cytoplasmic membrane typically function by inducing rapid depolarization through ion leakage (e.g., potassium efflux), forming transmembrane pores, or binding to membrane-bound lipid intermediates like Lipid II to simultaneously disrupt membrane integrity and inhibit cell wall synthesis (Silverman et al., 2003; Ling et al., 2015).

03

Biological functions

Selective permeabilityEnergy transduction (ATP synthesis)Ion homeostasisCell wall biosynthesisProtein secretionSignal transduction
04

Disease associations

Bacterial infectionSepsisSkin and soft tissue infectionEndocarditisPneumonia
05

Safety considerations

Skeletal muscle toxicity (myopathy/rhabdomyolysis)NephrotoxicityHemolysisEosinophilic pneumoniaPotential cross-reactivity with host mitochondrial membranes
06

Interacting drugs

Daptomycin

9 more in the full profile.

07

Biomarkers

Bacterial membrane potentialExtracellular potassium levelsCreatine phosphokinase (safety monitoring for daptomycin)C-reactive protein (infection marker)

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