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Rhee, J. H.

Publications and source records attributed to Rhee, J. H..

2 recordsLinked to original sources

A stealth adhesion factor contributes to Vibrio vulnificus pathogenicity: Flp pili play roles in host invasion, survival in the blood stream and resistance to complement activation

The tad operons encode the machinery required for adhesive Flp (fimbrial low-molecular-weight protein) pili biogenesis. Vibrio vulnificus, an opportunistic pathogen, harbors three distinct tad loci. Among them, only tad1 locus was highly upregulated in in vivo growing bacteria compared to in vitro culture condition. To understand the pathogenic roles of the three tad loci during infection, we constructed single, double and triple tad loci deletion mutants. Interestingly, only the{Delta} tad123 triple mutant cells exhibited significantly decreased lethality in mice. Ultrastructural observations revealed short, thin filamentous projections disappeared on the{Delta} tad123 mutant cells. Since the pilin was paradoxically non-immunogenic, a V5 tag was fused to Flp to visualize the pilin protein by using immunogold EM and immunofluorescence microscopy. The{Delta} tad123 mutant cells showed attenuated host cell adhesion, delayed RtxA1 exotoxin secretion and subsequently impaired translocation across the intestinal epithelium compared to wild type, which could be partially complemented with each wild type operon. The{Delta} tad123 mutant was susceptible to complement-mediated bacteriolysis, predominantly via the alternative pathway, suggesting stealth hiding role of the Tad pili. Taken together, all three tad loci cooperate to confer successful invasion of V. vulnificus into deeper tissue and evasion from host defense mechanisms, ultimately resulting in septicemia.\n\nAuthor SummaryTo understand the roles of the three Tad operons in the pathogenesis of V. vulnificus infection, we constructed mutant strain with single, double and triple Tad loci deletions. Employing a variety of mouse infection models coupled with molecular genetic analyses, we demonstrate here that all three Tad operons are required for V. vulnificus pathogenicity as the cryptic pili contribute to host cell and tissue invasion, survival in the blood, and resistance to complement activation.

microbiology

Determination of glucosinolate contents in Brassica germplasm collections and inter- & intra-leaves distribution pattern using UPLC-MS/MS Multiple Reaction Monitoring scan mode

Intact glucosinolate (GSL) profile (five aliphatic; three aromatic, and one indolic glucosinolate) in the leaves of 50 germplasm collections and commercial cultivars of Brassica rapa, Brassica juncea, and Brassica oleracea collected from six different countries and grown under uniform cultural conditions were compared by UPLC-MS/MS. Total GSLs content ranged from 36.80 to 2383.12 mol/kg DW. Aliphatic GSLs predominated among the entire samples representing from 23.0 to 98.9% of the total GSLs content, where gluconapin and glucobrassicanapin contributed the greatest proportion. Other GSLs such as, progoitrin (PRO), glucotropaeolin (TRO), and glucobarbarin (BAR) were found in relatively low concentrations. Principal Component Analysis (PCA) yielded three principal components with eigenvalue [≥] 1, representing 70.33% of the total variation across the entire data set. Accessions IT260822 & IT32750, and commercial cultivar, \"Hangamssam2\", were well distinguished from other samples in the PCA plot due to their significantly high amount of BAR, glucobrassicin (GBC), and glucoerucin (ERU), respectively. The inter- and intra-leaf variations of GSLs were examined in three kimichi cabbage varieties. The GSLs content varied significantly among leaves in different positions (outer, middle, and inner) and sections within the leaves (top, middle, bottom, green/red, and white). Higher GSL contents were observed in the proximal half & white section of the leaves and inner positions (younger leaves) in most of the samples. GBC, gluconasturtiin (NAS), and glucoberteroin (BER) should be studied profusely in Brassica plants as some of their degradation products of GBC and NAS are useful in cancer chemopreventive functions, whereas BER takes part in the process of suppressing aging of the skin. GSLs are regarded as allelochemicals; hence, the data related to the patterns of GSLs within the leaf and between leaves at different position could be useful to understand the defense mechanism of Brassica plants. The observed variability could be useful for breeders to develop Brassica crops with high GSL content or specific profiles of GSLs as required.

biochemistry