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1.
Appl Microbiol Biotechnol ; 108(1): 36, 2024 Dec.
Artigo em Inglês | MEDLINE | ID: mdl-38183472

RESUMO

Shewanella oneidensis is a gram-negative bacterium known for its unique respiratory capabilities, which allow it to utilize a wide range of electron acceptors, including solid substrates such as electrodes. For a future combination of chemical production and electro-fermentation, the goal of this study was to expand its product spectrum. S. oneidensis was metabolically engineered to optimize its glutamate production and to enable production of itaconic acid. By deleting the glutamate importer gltS for a reduced glutamate uptake and pckA/ptA to redirect the carbon flux towards the TCA cycle, a ∆3 mutant was created. In combination with the plasmid pG2 carrying the glutamate dehydrogenase gdhA and a specific glutamate exporter NCgl1221 A111V, a 72-fold increase in glutamate concentration compared to the wild type was achieved. Along with overexpression of gdhA and NCgl1221 A111V, the deletion of gltS and pckA/ptA as well as the deletion of all three genes (∆3) was examined for their impact on growth and lactate consumption. This showed that the redirection of the carbon flux towards the TCA cycle is possible. Furthermore, we were able to produce itaconic acid for the first time with a S. oneidensis strain. A titer of 7 mM was achieved after 48 h. This suggests that genetic optimization with an expression vector carrying a cis-aconitate decarboxylase (cadA) and a aconitate hydratase (acnB) along with the proven redirection of the carbon flux to the TCA cycle enabled the production of itaconic acid, a valuable platform chemical used in the production of a variety of products. KEY POINTS: •Heterologous expression of gdhA and NCgl1221_A111V leads to higher glutamate production. •Deletion of ackA/pta redirects carbon flux towards TCA cycle. •Heterologous expression of cadA and acnB enables itaconic acid production.


Assuntos
Besouros , Shewanella , Animais , Ácido Glutâmico , Engenharia Metabólica , Shewanella/genética
2.
Int Microbiol ; 26(3): 543-550, 2023 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-36648597

RESUMO

Acinetobacter baumannii is an opportunistic human pathogen that has become a global threat to healthcare institutions. This Gram-negative bacterium is one of the most successful human pathogens worldwide and responsible for hospital-acquired infections. This is due to its outstanding potential to adapt to very different environments, to persist in the human host and most important, its ability to develop multidrug resistance. Our combined approach of genomic and phenotypic analyses led to the identification of the envelope spanning Tol-Pal system in A. baumannii. We found that the deletion of the tolQ, tolR, tolA, tolB, and pal genes affects cell morphology and increases antibiotic sensitivity, such as the ∆tol-pal mutant exhibits a significantly increased gentamicin and bacitracin sensitivity. Furthermore, Galleria mellonella caterpillar killing assays revealed that the ∆tol-pal mutant exhibits a decreased killing phenotype. Taken together, our findings suggest that the Tol-Pal system is important for cell morphology, antibiotic resistance, and virulence of A. baumannii.


Assuntos
Acinetobacter baumannii , Humanos , Virulência/genética , Acinetobacter baumannii/genética , Resistência Microbiana a Medicamentos
3.
Environ Microbiol ; 24(9): 4411-4424, 2022 09.
Artigo em Inglês | MEDLINE | ID: mdl-35535800

RESUMO

The human opportunistic pathogen Acinetobacter baumannii is a global threat to healthcare institutions worldwide, since it developed very efficient strategies to evade host defence and to adapt to the different environmental conditions of the host. This work focused on the importance of Na+ homeostasis in A. baumannii with regards to pathobiological aspects. In silico studies revealed a homologue of a multicomponent Na+ /H+ antiporter system. Inactivation of the Mrp antiporter through deletion of the first gene (mrpA') resulted in a mutant that was sensitive to increasing pH values. Furthermore, the strain was highly sensitive to increasing Na+ and Li+ concentrations. Increasing Na+ sensitivity is thought to be responsible for growth impairment in human fluids. Furthermore, deletion of mrpA' is associated with energetic defects, inhibition of motility and survival under anoxic and dry conditions.


Assuntos
Acinetobacter baumannii , Antiporters , Acinetobacter baumannii/genética , Acinetobacter baumannii/metabolismo , Antiporters/genética , Proteínas de Bactérias/genética , Proteínas de Bactérias/metabolismo , Homeostase , Humanos , Concentração de Íons de Hidrogênio , Sódio/metabolismo , Trocadores de Sódio-Hidrogênio/genética
4.
J Learn Disabil ; 51(3): 211-222, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-28470105

RESUMO

Although many studies have found that children with learning disabilities (LD) are less liked by peers than children without LD, the results are not unequivocal. In the present study, we investigated the social status (in terms of likeability and popularity) of children with LD by considering peer academic reputation and peer reputation of teacher liking. These variables are potentially important alternative factors for differences in social status between children with and without LD. Fifth-grade students ( n = 1,453; Mage = 10.60) in 58 classes in the Netherlands completed peer nominations for academic reputation, teacher liking, and social status. The data were analyzed with Bayesian structural equation modeling. The associations between LD and social status were completely mediated by the lower peer academic reputation of children with LD. As expected, peer reputation of teacher liking served as a protective factor against low social status for children with low peer academic reputation in general but not specifically for children with LD. Implications for research and practice are discussed.


Assuntos
Relações Interpessoais , Deficiências da Aprendizagem/psicologia , Grupo Associado , Distância Psicológica , Professores Escolares , Estudantes/psicologia , Criança , Feminino , Humanos , Masculino
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