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1.
J Vis Exp ; (110): e53819, 2016 Apr 10.
Artículo en Inglés | MEDLINE | ID: mdl-27166738

RESUMEN

Initial evaluations of large microbial libraries for potential producers of novel antimicrobial proteins require both qualitative and quantitative methods to screen for target enzymes prior to investing greater research effort and resources. The goal of this protocol is to demonstrate two complementary assays for conducting these initial evaluations. The microslide diffusion assay provides an initial or simple detection screen to enable the qualitative and rapid assessment of proteolytic activity against an array of both viable and heat-killed bacterial target substrates. As a counterpart, the increased sensitivity and reproducibility of the dye-release assay provides a quantitative platform for evaluating and comparing environmental influences affecting the hydrolytic activity of protein antimicrobials. The ability to label specific heat-killed cell culture substrates with Remazol brilliant blue R dye expands this capability to tailor the dye-release assay to characterize enzymatic activity of interest.


Asunto(s)
Antraquinonas/química , Antiinfecciosos/farmacología , Bacillus subtilis/efectos de los fármacos , Salmonella enterica/efectos de los fármacos , Bacillus subtilis/metabolismo , Proteínas Bacterianas/metabolismo , Bioensayo , Peptidoglicano/metabolismo , Reproducibilidad de los Resultados , Salmonella enterica/metabolismo
2.
Proc Natl Acad Sci U S A ; 111(29): 10520-5, 2014 Jul 22.
Artículo en Inglés | MEDLINE | ID: mdl-25002468

RESUMEN

Methanogenic archaea lack cysteinyl-tRNA synthetase; they synthesize Cys-tRNA and cysteine in a tRNA-dependent manner. Two enzymes are required: Phosphoseryl-tRNA synthetase (SepRS) forms phosphoseryl-tRNA(Cys) (Sep-tRNA(Cys)), which is converted to Cys-tRNA(Cys) by Sep-tRNA:Cys-tRNA synthase (SepCysS). This represents the ancestral pathway of Cys biosynthesis and coding in archaea. Here we report a translation factor, SepCysE, essential for methanococcal Cys biosynthesis; its deletion in Methanococcus maripaludis causes Cys auxotrophy. SepCysE acts as a scaffold for SepRS and SepCysS to form a stable high-affinity complex for tRNA(Cys) causing a 14-fold increase in the initial rate of Cys-tRNA(Cys) formation. Based on our crystal structure (2.8-Šresolution) of a SepCysS⋅SepCysE complex, a SepRS⋅SepCysE⋅SepCysS structure model suggests that this ternary complex enables substrate channeling of Sep-tRNA(Cys). A phylogenetic analysis suggests coevolution of SepCysE with SepRS and SepCysS in the last universal common ancestral state. Our findings suggest that the tRNA-dependent Cys biosynthesis proceeds in a multienzyme complex without release of the intermediate and this mechanism may have facilitated the addition of Cys to the genetic code.


Asunto(s)
Archaea/metabolismo , Proteínas Arqueales/metabolismo , Cisteína/biosíntesis , Methanococcus/metabolismo , Factores de Iniciación de Péptidos/metabolismo , ARN de Transferencia de Cisteína/metabolismo , Acetilación , Proteínas Arqueales/química , Secuencia Conservada , Cristalografía por Rayos X , Cinética , Modelos Moleculares , Factores de Iniciación de Péptidos/química , Unión Proteica , Estructura Terciaria de Proteína , ARN de Transferencia de Cisteína/química
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