Author: Chenoll, Empar; Casinos, Beatriz; Bataller, Esther; Buesa, Javier; Ramón, Daniel; Genovés, Salvador; Fábrega, Joan; Rivero Urgell, Montserrat; Moreno Muñoz, José A.
Title: Identification of a Peptide Produced by Bifidobacterium longum CECT 7210 with Antirotaviral Activity Document date: 2016_5_4
ID: 0sxl6f1r_58
Snippet: In summary, the results presented here are the first to identify a naturally produced peptide, the 11-mer (MHQPHQPLPPT), as the molecule directly responsible for rotavirus inhibition demonstrated by the probiotic B. longum subsp. infantis CECT 7210. The data reported here point to a mechanism based on the MalE-type ABC sugar transport system periplasmic component, which is able to exert a protease activity and to hydrolyze β-casein to produce th.....
Document: In summary, the results presented here are the first to identify a naturally produced peptide, the 11-mer (MHQPHQPLPPT), as the molecule directly responsible for rotavirus inhibition demonstrated by the probiotic B. longum subsp. infantis CECT 7210. The data reported here point to a mechanism based on the MalE-type ABC sugar transport system periplasmic component, which is able to exert a protease activity and to hydrolyze β-casein to produce the functional 11-mer peptide.
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