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      Genotyping of circulating measles strains in Italy in 2010

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          Abstract

          INTRODUCTION: The European Regional Office of the World Health Organization developed a strategic approach to stop the indigenous transmission of measles in its 53 Member States by 2015. In Italy, laboratory surveillance activity is implemented by the National Reference Laboratory for Measles and Rubella at the Italian National Institute of Health (Istituto Superiore di Sanità, Rome). The role of the National Reference Laboratory is to strengthen surveillance systems through rigorous case investigation and laboratory confirmation of suspected sporadic cases and outbreaks. Genetic characterization of wild-type measles virus is an essential component of the laboratory-based surveillance. This study describes the molecular characterization of measles virus strains isolated during 2010. METHODS: Dried blood spots, urine and oral fluid samples were collected from patients with a suspected measles infection. Serological tests were performed on capillary blood, and viral detection was performed on urine and oral fluid samples through molecular assay. Positive samples were sequenced and phylogenetically analysed. RESULTS AND DISCUSSION: The phylogenetic analysis showed a co-circulation of genotypes D4 and D8, and sporadic cases associated to genotypes D9 and B3. Then, molecular epidemiology of measles cases permitted to establish that D4 and D8 were the endemic genotypes in Italy during 2010.

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          MEGA6: Molecular Evolutionary Genetics Analysis version 6.0.

          We announce the release of an advanced version of the Molecular Evolutionary Genetics Analysis (MEGA) software, which currently contains facilities for building sequence alignments, inferring phylogenetic histories, and conducting molecular evolutionary analysis. In version 6.0, MEGA now enables the inference of timetrees, as it implements the RelTime method for estimating divergence times for all branching points in a phylogeny. A new Timetree Wizard in MEGA6 facilitates this timetree inference by providing a graphical user interface (GUI) to specify the phylogeny and calibration constraints step-by-step. This version also contains enhanced algorithms to search for the optimal trees under evolutionary criteria and implements a more advanced memory management that can double the size of sequence data sets to which MEGA can be applied. Both GUI and command-line versions of MEGA6 can be downloaded from www.megasoftware.net free of charge.
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            Cleavage of parallel-stranded DNA duplex by peplomycin metal complexes.

            Peplomycin-mediated degradation of parallel-stranded (ps) duplex was investigated. It was found that Co- and Fe-peplomycins degraded ps DNA duplex by 4'-hydrogen abstraction at 5'-GPy (pyrimidine) site in a similar manner to that of antiparallel B-DNA. While the orientation of two strands of ps and B-form DNA duplexes are reversed, peplomycin metal complex can bind to ps DNA duplex to cause oxidative DNA damage. These results indicate that peplomycin metal complex mainly interacts with one strand which is damaged.
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              Measles virus nomenclature update: 2012.

              Anon. (2012)
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                Author and article information

                Contributors
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                Journal
                aiss
                Annali dell'Istituto Superiore di Sanità
                Ann. Ist. Super. Sanità
                Istituto Superiore di Sanità (Roma )
                0021-2571
                December 2014
                : 50
                : 4
                : 345-350
                Affiliations
                [1 ] Istituto Superiore di Sanità Italy
                [2 ] Università di Genova Italy
                [3 ] Sezione di Igiene e Medicina Preventiva Italy
                [4 ] Istituto Superiore di Sanità Italy
                Article
                S0021-25712014000400009
                10.4415/ANN_14_04_09
                5f150490-1d5b-4451-a453-074ef72f9306

                http://creativecommons.org/licenses/by/4.0/

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                SciELO Public Health

                Self URI (journal page): http://www.scielosp.org/scielo.php?script=sci_serial&pid=0021-2571&lng=en
                Categories
                Health Care Sciences & Services

                Health & Social care
                measles,molecular epidemiology,genotype,phylogenetic analysis
                Health & Social care
                measles, molecular epidemiology, genotype, phylogenetic analysis

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