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Proteolytic activation of the human epithelial sodium channel by trypsin IV and trypsin I involves distinct cleavage sites
Proteolytic activation is a unique feature of the epithelial sodium channel (ENaC). However, the underlying molecular mechanisms and the physiologically relevant proteases remain to be identified. The serine protease trypsin I can activate ENaC in vitro but is unlikely to be the physiologically relevant activating protease in ENaC-expressing tissues in vivo. Herein, we investigated whether human t
Human encroachment, climate change and the loss of our archaeological organic cultural heritage : Accelerated bone deterioration at Ageröd, a revisited Scandinavian Mesolithic key-site in despair
Coupled water transport and heat flux in seasonally frozen soils : uncertainties identification in multi-site calibration
Quantifying archaeo-organic degradation – A multiproxy approach to understand the accelerated deterioration of the ancient organic cultural heritage at the Swedish Mesolithic site Ageröd
IEA-HIA Task 23 Small Scale Reformers for On-site Hydrogen Supply
The regulation of factor Va activity by activated protein C -Importance of the individual activated protein C cleavage sites in factor Va
Popular Abstract in Swedish Blodcirkulationen fungerar i kroppen som ett transport system för proteiner, syre och andra metaboliter. Blodet har den svåra uppgiften att vara flytande och samtidigt kunna koagulera på ställen där kärlet går sönder. Störning i denna balans leder till sjukdomar som hjärtinfarkt och blodpropp eller motsatsen svåra blödningar. Det protein som jag har studerat ingår vid
Developing A Proactive Safety Performance Measurement Tool (SPMT) For Construction Sites
Corruption and anti-corruption in Southeast Europe: Landscapes and sites
Immunohistochemical localization of the calcitonin gene-related peptide binding site in the primate trigeminovascular system using functional antagonist antibodies
Sustainable drainage system site assessment method using urban ecosystem services
Crystal structure of β-glucosidase 1A from Thermotoga neapolitana and comparison of active site mutants for hydrolysis of flavonoid glucosides
The β-glucosidase TnBgl1A catalyses hydrolysis of O-linked terminal β-glycosidic bonds at the nonreducing end of glycosides/oligosaccharides. Enzymes with this specificity have potential in lignocellulose conversion (degrading cellobiose to glucose) and conversion of bioactive flavonoids (modification of glycosylation results in modulation of bioavailability). Previous work has shown TnBgl1A to hy
Site-selective 13C labeling of proteins using erythrose
Siliceous Raw Material Exploitation at Hort de la Boquera Site (Margalef de Monsant, Tarragona, España) : First Results from La-Icp-Ms Analysis
Research on the sourcing of siliceous raw materials in Prehistory has taken a step forward with the addition of geochemical techniques and elemental analysis to the archaeopetrological method. Counter to the macroscopic techniques, which retain an elevated subjective percentage in their results, geochemical techniques and especially LA-ICP-MS analysis generate objective, quantifiable and usable da
Prevalence of avian haemosporidian parasites is positively related to the abundance of host species at multiple sites within a region
Site-specific photocoupling of pBpa mutated scFv antibodies for use in affinity proteomics
A regional perspective on present and future soil chemistry at 16 Swedish forest sites
Protein Kinase Cepsilon Actin-binding Site Is Important for Neurite Outgrowth during Neuronal Differentiation.
We have previously shown that protein kinase Cepsilon (PKCepsilon) induces neurite outgrowth via its regulatory domain and independently of its kinase activity. This study aimed at identifying mechanisms regulating PKCepsilon-mediated neurite induction. We show an increased association of PKCepsilon to the cytoskeleton during neuronal differentiation. Furthermore, neurite induction by overexpressi
Developing an empirical model of stand GPP with the LUE approach: analysis of eddy covariance data at five contrasting conifer sites in Europe
This paper develops a statistical model for daily gross primary production (GPP) in boreal and temperate coniferous forests. The model applies the light use efficiency (LUE) approach, which estimates the conversion efficiency of daily absorbed photosynthetically active radiation (APAR) into daily GPP as a product of potential LUE and modifying factors. The latter were derived from daily total APAR
