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1                LsbB is a class II leaderless lactococcal bacteriocin of 30 amino acids.
2        An inducible middle promoter from the lactococcal bacteriophage phi31 was isolated previously
3 ng phage resistance against three species of lactococcal bacteriophages.
4 nding to type I collagen when present on the lactococcal cell surface.
5  involved in the conjugative transfer of the lactococcal conjugative element pRS01 has revealed a bac
6                           Replacement of the lactococcal DpsA Lys residues 9, 15 and 16 by Glu did no
7 ative relaxase essential for transfer of the lactococcal element pRSO1.
8                                          The lactococcal group II intron Ll.ltrB interrupts the ltrB
9  Escherichia coli, retrotransposition of the lactococcal group II intron, Ll.LtrB, occurs preferentia
10                             Splicing of this lactococcal intron (designated Ll.ltrB) in vivo resulted
11                       Here, we show that the Lactococcal intron can be expressed and spliced efficien
12                                          The Lactococcal intron endonuclease can be obtained in large
13 ntrons, the DNA endonuclease activity of the Lactococcal intron is associated with RNP particles cont
14 drophobic cavity of the transcription factor Lactococcal multidrug resistance Regulator (LmrR) as a g
15   This result is in marked contrast with the lactococcal phage p2 situation, whose baseplate is known
16                  A spontaneous mutant of the lactococcal phage phi31 that is insensitive to the phage
17  host adsorption device (baseplate) from the lactococcal phage TP901-1 shows that the receptor-bindin
18                                              Lactococcal phages belong to a large family of Siphoviri
19 ave recently emerged as important taxa among lactococcal phages that disrupt dairy fermentations.
20                                              Lactococcal phages Tuc2009 and TP901-1 possess a conserv
21 practical use of nanobodies in circumventing lactococcal phages viral infection in dairy fermentation
22 nal changes or Ca(2+), which contrasts other lactococcal phages.
23 urthermore, subclones of the native parental lactococcal plasmid pKR223, which encode M.
24                                   The native lactococcal plasmid, pKR223, from Lactococcus lactis sub
25 as significant identity (45%) to that of the lactococcal PrtP proteinases.
26                                      We used lactococcal recombinant strains, a protein-protein inter
27                   Thus, we hypothesized that lactococcal SodA played a role in attenuating colitis.
28 eins (RBPs) promoting adhesion to a specific lactococcal strain.
29  assay with VAD membranes and a heterologous lactococcal system of expression, we identify 3 S. aureu
30 ino acid and DNA level homologies with other lactococcal temperate phage repressors suggest that evol
31 her evidence of the potential of recombinant lactococcal vaccines for inducing systemic and mucosal i
32 to both the dipeptidyl-peptidase IV/CD26 and lactococcal x-prolyl dipeptidyl-peptidase families.

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