scholarly journals A possible role of cellulose-binding protein A (CBPA) in the adhesion of Eubacterium cellulosolvens 5 to cellulose

2003 ◽  
Vol 49 (4) ◽  
pp. 245-250 ◽  
Author(s):  
Atsushi Toyoda ◽  
Kazunori Takano ◽  
Hajime Minato
2018 ◽  
Vol 118 (07) ◽  
pp. 1230-1241 ◽  
Author(s):  
Jorien Claes ◽  
Bartosz Ditkowski ◽  
Laurens Liesenborghs ◽  
Tiago Veloso ◽  
Jose Entenza ◽  
...  

AbstractAdhesion of Staphylococcus aureus to endothelial cells (ECs) is paramount in infective endocarditis. Bacterial proteins such as clumping factor A (ClfA) and fibronectin binding protein A (FnbpA) mediate adhesion to EC surface molecules and (sub)endothelial matrix proteins including fibrinogen (Fg), fibrin, fibronectin (Fn) and von Willebrand factor (vWF). We studied the influence of shear flow and plasma on the binding of ClfA and FnbpA (including its sub-domains A, A16+, ABC, CD) to coverslip-coated vWF, Fg/fibrin, Fn or confluent ECs, making use of Lactococcus lactis, expressing these adhesins heterologously. Global adherence profiles were similar in static and flow conditions. In the absence of plasma, L. lactis-clfA binding to Fg increased with shear forces, whereas binding to fibrin did not. The degree of adhesion of L. lactis-fnbpA to EC-bound Fn and of L. lactis-clfA to EC-bound Fg, furthermore, was similar to that of L. lactis-clfA to coated vWF domain A1, in the presence of vWF-binding protein (vWbp). Yet, in plasma, L. lactis-clfA adherence to activated EC-vWF/vWbp dropped over 10 minutes by 80% due to vWF-hydrolysis by a disintegrin and metalloproteinase with thrombospondin type 1 motif, member 13 and that of L. lactis-fnbpA likewise by > 70% compared to the adhesion in absence of plasma. In contrast, plasma Fg supported high L. lactis-clfA binding to resting and activated ECs. Or, in plasma S. aureus adhesion to active endothelium occurs mainly via two complementary pathways: a rapid but short-lived vWF/vWbp pathway and a stable integrin-coupled Fg-pathway. Hence, the pharmacological inhibition of ClfA-Fg interactions may constitute a valuable additive treatment in infective endocarditis.


Blood ◽  
2007 ◽  
Vol 110 (7) ◽  
pp. 2390-2398 ◽  
Author(s):  
Rigu Gupta ◽  
Sudha Sharma ◽  
Joshua A. Sommers ◽  
Mark K. Kenny ◽  
Sharon B. Cantor ◽  
...  

The BRCA1 associated C-terminal helicase (BACH1, designated FANCJ) is implicated in the chromosomal instability genetic disorder Fanconi anemia (FA) and hereditary breast cancer. A critical role of FANCJ helicase may be to restart replication as a component of downstream events that occur during the repair of DNA cross-links or double-strand breaks. We investigated the potential interaction of FANCJ with replication protein A (RPA), a single-stranded DNA-binding protein implicated in both DNA replication and repair. FANCJ and RPA were shown to coimmunoprecipitate most likely through a direct interaction of FANCJ and the RPA70 subunit. Moreover, dependent on the presence of BRCA1, FANCJ colocalizes with RPA in nuclear foci after DNA damage. Our data are consistent with a model in which FANCJ associates with RPA in a DNA damage-inducible manner and through the protein interaction RPA stimulates FANCJ helicase to better unwind duplex DNA substrates. These findings identify RPA as the first regulatory partner of FANCJ. The FANCJ-RPA interaction is likely to be important for the role of the helicase to more efficiently unwind DNA repair intermediates to maintain genomic stability.


2009 ◽  
Vol 10 (11) ◽  
pp. 2301-2316 ◽  
Author(s):  
Lesley H. Greene ◽  
Evangelia D. Chrysina ◽  
Laurence I. Irons ◽  
Anastassios C. Papageorgiou ◽  
K. Ravi Acharya ◽  
...  

1993 ◽  
Vol 175 (18) ◽  
pp. 5762-5768 ◽  
Author(s):  
M A Goldstein ◽  
M Takagi ◽  
S Hashida ◽  
O Shoseyov ◽  
R H Doi ◽  
...  

2001 ◽  
Vol 359 (2) ◽  
pp. 255 ◽  
Author(s):  
Patrick PROVOST ◽  
Johanne DOUCET ◽  
Alexander STOCK ◽  
Günther GERISCH ◽  
Bengt SAMUELSSON ◽  
...  

2011 ◽  
Vol 60 (8) ◽  
pp. 1155-1161 ◽  
Author(s):  
Amira Barketi-Klai ◽  
Sandra Hoys ◽  
Sylvie Lambert-Bordes ◽  
Anne Collignon ◽  
Imad Kansau

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