bioRxiv Science⌕ Search

Biology subjects

Hor, L.

Publications and source records attributed to Hor, L..

2 recordsLinked to original sources

Heparins enhance C1 esterase inhibitor activity: a promising remedy for acute hereditary angioedema

RationaleHereditary angioedema (HAE) is a potentially life-threatening illness most commonly due to deficiency or dysfunction of C1-esterase inhibitor (C1-INH). While specific treatments are available to thwart acute exacerbations, they are extremely costly and some can be associated with rare but serious side effects. The heparins are long known to augment C1-INH activity and case reports / series have documented their efficacy in treating HAE. Objectiveto determine if unfractionated heparin and two low-molecular weight heparins (enoxaparin and nadroparin) can augment C1-INH activity ex vivo in the sera of patients with HAE and in an in vitro biochemical assay. MethodsC1-INH activity in the absence or presence of the heparin formulations were analyzed by two different methods. To measure C1-INH activity ex vivo, a commercially available assay was utilized with patient sera, excess amounts of C1s, and a substrate of C1s which, upon cleavage by C1s, produces a chromogenic product. To determine biochemically the C1-INH activity in vitro, a pharmacologic grade C1-INH, recombinant C1s (C1s-CCP12SP), and a peptide substrate of C1s were employed. Microscale thermophoresis was used to determine whether C1-INH binds to heparin. Main resultsin patient sera, nadroparin was superior to enoxaparin and unfractionated heparin in augmenting C1-INH activity, followed by enoxaparin and then unfractionated heparin. In the in vitro biochemical assay, all three heparins augmented C1-INH-C1s binding linearly in a dose-dependent fashion. Microscale thermophoresis assay demonstrated that nadroparin binds to C1-INH, providing a mechanism by which heparin facilitates the interaction between C1-INH and the proteases known to produce bradykinin, the mediator of HAE. Conclusionlow-molecular weight heparin augments C1-INH activity and should be studied as a potential treatment for acute HAE.

pharmacology and toxicology↗

Fine tuning the mechanism of Antigen 43 self-association to modulate aggregation levels of Escherichia coli pathogens

Bacterial aggregates and biofilms allow bacteria to colonise a diverse array of surfaces that can ultimately lead to infections, where the protection they afford permits bacteria to resist anti-microbials and host immune factors. Despite these advantages there is a trade-off, whereby bacterial spread is reduced. As such, biofilm development needs to be regulated appropriately to suit the required niche. Here we investigate members from one of largest groups of bacterial adhesins, the autotransporters, for their critical role in the formation of bacterial aggregates and biofilms. We describe the structural and functional characterisation of autotransporter Ag43 homologues from diverse pathogenic Escherichia strains. We reveal a common mode of trans-association that leads to cell clumping and show that subtle variations in these interactions governs their aggregation kinetics. Our in depth investigation reveals an underlying molecular basis for the tuning of bacterial aggregation.

biochemistry↗