9 research outputs found

    Caracterização dos macrófagos presentes nas lesões cutâneas da hanseníase: estudo por monoclonais

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    As lesões cutâneas de 16 pacientes com hanseníase foram estudadas por imunofluorescência com anticorpos monoclonais anti-monócitos (OKM1 e anti-MO) e anti-Ia (OKIa). Foi avaliada a atividade de fosfatase ácida utilizando-se naftol AS-B1 fosfato como substrato. Os macrófagos parecem constituir uma população heterogênea em relação aos antigenos estudados neste trabalho e quanto a atividade enzimática. Em todas as formas estudadas um grande número de células eram OKIa positivas

    Mineurs et droits personnels

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    Phylloquinone (vitamin K1) is a bipartite molecule that consists of a naphthoquinone ring attached to a phytyl side chain. The coupling of these 2 moieties depends on the hydrolysis of the CoA thioester of 1,4-dihydroxy-2-naphthoate (DHNA), which forms the naphthalenoid backbone. It is not known whether such a hydrolysis is enzymatic or chemical. In this study, comparative genomic analyses identified orthologous genes of unknown function that in most species of cyanobacteria cluster with predicted phylloquinone biosynthetic genes. The encoded approximately 16-kDa proteins display homology with some Hotdog domain-containing CoA thioesterases that are involved in the catabolism of 4-hydroxybenzoyl-CoA and gentisyl-CoA (2,5-dihydroxybenzoyl-CoA) in certain soil-dwelling bacteria. The Synechocystis ortholog, encoded by gene slr0204, was expressed as a recombinant protein and was found to form DHNA as reaction product. Unlike its homologs in the Hotdog domain family, Slr0204 showed strict substrate specificity. The Synechocystis slr0204 knockout was devoid of DHNA-CoA thioesterease activity and accumulated DHNA-CoA. As a result, knockout cells contained 13-fold less phylloquinone than their wild-type counterparts and displayed the typical photosensitivity to high light associated to phylloquinone deficiency in cyanobacteria

    Can mosses serve as model organisms for forest research?

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    The right motifs for plant cell adhesion: what makes an adhesive site?

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    Lipids and proteins—major targets of oxidative modifications in abiotic stressed plants

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