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2.
Cell Death Discov ; 1: 15005, 2015.
Article in English | MEDLINE | ID: mdl-27551441

ABSTRACT

Here, we present evidence for the positive allosteric modulation of the P2X7 receptor through glycosaminoglycans (GAGs) in CHO (cell line derived from the ovary of the Chinese hamster) cells. The marked potentiation of P2X7 activity through GAGs in the presence of non-saturating agonists concentrations was evident with the endogenous expression of the receptor in CHO cells. The presence of GAGs on the surface of CHO cells greatly increased the sensitivity to adenosine 5'-triphosphate and changed the main P2X7 receptor kinetic parameters EC50, Hill coefficient and E max. GAGs decreased the allosteric inhibition of P2X7 receptor through Mg(2+). GAGs activated P2X7 receptor-mediated cytoplasmic Ca(2+) influx and pore formation. Consequently, wild-type CHO-K1 cells were 2.5-fold more sensitive to cell death induced through P2X7 agonists than mutant CHO-745 cells defective in GAGs biosynthesis. In the present study, we provide the first evidence that the P2X7 receptor interacts with CD44 on the CHO-K1 cell surface. Thus, these data demonstrated that GAGs positively modulate the P2X7 receptor, and sCD44 is a part of a regulatory positive feedback loop linking P2X7 receptor activation for the intracellular response mediated through P2X7 receptor stimulation.

3.
J Dent Res ; 91(4): 420-5, 2012 Apr.
Article in English | MEDLINE | ID: mdl-22266526

ABSTRACT

The co-expression of MMPs and cysteine cathepsins in the human dentin-pulp complex indicates that both classes of enzymes can contribute to the endogenous proteolytic activity of dentin. Chlorhexidine (CHX) is an efficient inhibitor of MMP activity. This study investigated whether CHX could also inhibit cysteine cathepsins present in dentin. The inhibitory profile of CHX on the activity of dentin-extracted and recombinant cysteine cathepsins (B, K, and L) was monitored in fluorogenic substrates. The rate of substrate hydrolysis was spectrofluorimetrically measured, and inhibitory constants were calculated. Molecular docking was performed to predict the binding affinity between CHX and cysteine cathepsins. The results showed that CHX inhibited the proteolytic activity of dentin-extracted cysteine cathepsins in a dose-dependent manner. The proteolytic activity of human recombinant cathepsins was also inhibited by CHX. Molecular docking analysis suggested that CHX strongly interacts with the subsites S2 to S2' of cysteine cathepsins B, K, and L in a very similar manner. Taken together, these results clearly showed that CHX is a potent inhibitor of the cysteine cathepsins-proteolytic enzymes present in the dentin-pulp complex.


Subject(s)
Cathepsins/antagonists & inhibitors , Chlorhexidine/analogs & derivatives , Dentin/enzymology , Enzyme Inhibitors/pharmacology , Adult , Cathepsin B/antagonists & inhibitors , Cathepsin K/antagonists & inhibitors , Cathepsin L/antagonists & inhibitors , Chlorhexidine/pharmacology , Coumarins , Cysteine Proteinase Inhibitors/pharmacology , Dipeptides , Dose-Response Relationship, Drug , Fluorescent Dyes , Humans , Hydrolysis , Leucine/analogs & derivatives , Leucine/pharmacology , Matrix Metalloproteinase Inhibitors , Models, Molecular , Protein Binding , Protein Conformation , Recombinant Proteins , Spectrometry, Fluorescence , Young Adult
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