4 results match your criteria: "Cittadella Univ. Monserrato[Affiliation]"
Proteomics
February 2024
Department of Life and Environmental Sciences, University of Cagliari, Cittadella Universitaria Monserrato, Monserrato, CA, Italy.
J Clin Immunol
February 2020
Department of Life and Environmental Sciences, University of Cagliari, Cittadella Univ. Monserrato, ss 554, 09042, Monserrato, CA, Italy.
Purpose: Present study is designed to discover potential salivary biomarkers associated with predominantly antibody deficiencies, which include a large spectrum of disorders sharing failure of antibody production, and B cell defects resulting in recurrent infections, autoimmune and inflammatory manifestations, and tumor susceptibility. Understanding and clinical classification of these syndromes is still challenging.
Methods: We carried out a study of human saliva based on liquid chromatography-mass spectrometry measurements of intact protein mass values.
J Proteome Res
January 2020
Department of Life and Environmental Sciences , University of Cagliari, Cittadella Univ. Monserrato, Monserrato, Cagliari 09042 , Italy.
Because of the distinctive features of the oral cavity, the determination of the proteins involved in the formation of the "oral protein pellicle" is demanding. The present study investigated the susceptibility of several human basic proline-rich peptides, named P-H, P-D, P-F, P-J, and II-2, as substrates of transglutaminase-2. The reactivity of the P-C peptide and statherin was also investigated.
View Article and Find Full Text PDFJ Proteome Res
September 2018
Department of Life and Environmental Sciences , University of Cagliari, Cittadella Univ. Monserrato, Monserrato 09042 , Cagliari , Italy.
Human basic proline-rich proteins and basic glycosylated proline-rich proteins, encoded by the polymorphic PRB1-4 genes and expressed only in parotid glands, are the most complex family of adult salivary proteins. The family includes 11 parent peptides/proteins and more than 6 parent glycosylated proteins, but a high number of proteoforms with rather similar structures derive from polymorphisms and post-translational modifications. 55 new components of the family were characterized by top-down liquid chromatography-mass spectrometry and tandem-mass platforms, bringing the total number of proteoforms to 109.
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