Daniela Pinto
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Divergent evolution and horizontal gene transfer in the extracytoplasmic function sigma factor protein family
Open Date: 2018-07-01
Close Date: 2018-09-01
Grant: Close
Extracytoplasmic Function (ECF) Sigma Factors: From Regulatory Specificity to Synthetic Switches
Open Date: 2014-01-01
Close Date: 2016-01-01
Grant: Close
Understanding the resuscitation process of viable but nonculturable cells of two foodborne pathogens: Escherichia coli and Listeria monocytogenes.
Open Date: 2009-01-01
Close Date: 2013-01-01
Articles (11)
Cellular and Enzymatic Determinants Impacting the Exolytic Action of an Anti-Staphylococcal Enzybiotic
Bacteriophage endolysins are bacteriolytic enzymes that have been explored as potential weapons to fight antibiotic-resistant bacteria. Despite several studies support the application of endolysins as enzybiotics, detailed knowledge on cellular and enzymatic factors affecting their lytic activity is still missing. The bacterial membrane proton motive force (PMF) and certain cell wall glycopolymers of Gram-positive bacteria have been implicated in some tolerance to endolysins. Here, we studied how the anti-staphylococcal endolysin Lys11, a modular enzyme with two catalytic domains (peptidase and amidase) and a cell binding domain (CBD11), responded to changes in the chemical and/or electric gradients of the PMF (ΔpH and Δψ, respectively). We show that simultaneous dissipation of both gradients enhances endolysin binding to cells and lytic activity. The collapse of ΔpH is preponderant in the stimulation of Lys11 lytic action, while the dissipation of Δψ is mainly associated with higher endolysin binding. Interestingly, this binding depends on the amidase domain. The peptidase domain is responsible for most of the Lys11 bacteriolytic activity. Wall teichoic acids (WTAs) are confirmed as major determinants of endolysin tolerance, in part by severely hindering CBD11 binding activity. In conclusion, the PMF and WTA interfere differently with the endolysin functional domains, affecting both the binding and catalytic efficiencies.
Year:
2023
Collaborators (10)
Rute da Fonseca
Associate Professor
University of Copenhagen
Marta Sousa Silva
Assistant Professor
Faculdade de Ciências da Universidade de Lisboa
Tiago Cordeiro
Head of Laboratory (MOSTMICRO-ITQB)
Universidade Nova de Lisboa Instituto de Tecnologia Química e Biológica
Jorge Vítor
Assistant Professor
Universidade de Lisboa Faculdade de Farmácia
Ana Botelho
Head of Laboratory -PhD
Instituto Nacional de Investigação Agrária e Veterinária
Mariana Pinho
Associate Professor
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Gonçalo Espregueira Themudo
Universidade do Porto Centro Interdisciplinar de Investigação Marinha e Ambiental
Carlos São-José
Universidade de Aveiro
Carlos Cordeiro
Associated Professor, with Habilitation
Faculdade de Ciências da Universidade de Lisboa
Elena Rivas-Marin
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