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Secondly, consistent with its function as a DNA binding protein, extracelullar HMGB1 has a natural propensity to bind to negatively charged molecules such as DNA, RNA, nucleosomes and pathogen associated molecules like LPS (an endotoxin) or immune activating cytokines like interleukin-1 (IL-1) (Bianchi, 2009).
Chitosan could then bind to negatively charged bacterial surface, facilitating its antibacterial activity.
A positive surface charge is also required for the complex to be able to bind to negatively charged cell surfaces and facilitate cellular uptake.
Despite high sequence diversity between the different genera, most parvoviruses bind to negatively charged glycans, such as sialic acid and heparan sulfate, abundant on cell surface membranes.
MPO activity can vary even if levels of MPO are similar both due to genetic differences and the ability of MPO to bind to negatively charged surfaces (like albumin) [15, 16].
QR presenting positive zeta potential bind to negatively charged membrane lipids, and stimulate endocytosis processes.
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We show that BLA preferentially binds to negatively charged membranes at acidic pH with higher binding affinity.
Our results show that BLA exhibits a molten globule conformation when bound to negatively charged membranes.
The peptide also binds to negatively charged POPC/POPG (3:1) lipid vesicles but fails to insert deep into the membrane interior.
Studies on polystyrene NPs demonstrated that proteins with isoelectric points (PI) of less than 5.5 like albumin adsorbed on positively charged particles whereas proteins with isoelectric points of higher than 5.5 like IgG bound to negatively charged particles.
TBO is a cationic dye that binds to negatively charged groups in cells and gives two main spectra of reaction, i.e. pinkish purple for carboxylated polysaccharides such as pectin and greenish blue for aromatic substances such as lignin (Pradhan Mitra and Loqué 2014).
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