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1.
Protist ; 164(1): 129-52, 2013 Jan.
Article in English | MEDLINE | ID: mdl-22938923

ABSTRACT

In order to review the taxonomy of the genus Herpetomonas through phylogenetic and morphological analyses we barcoded 527 insect trypanosomatids by sequencing the V7V8 region of the small subunit ribosomal RNA (SSU rRNA) gene. Fifty two flagellates, 90% of them from Diptera, revealed to be related to known species of Herpetomonas. Sequences of entire glycosomal glyceraldehyde phosphate dehydrogenase (gGAPDH) and SSU rRNA genes were employed for phylogenetic inferences including representatives of all genera of Trypanosomatidae. In the resulting phylogenetic trees, the selected flagellates clustered into a monophyletic assemblage that we are considering as the redefined genus Herpetomonas. Internal transcribed spacer 1 (ITS1) rDNA sequences and putative secondary structures of this region were compared for evaluation of inter- and intraspecific variability. The flagellates were classified in six already known species and five new species. In addition, two Leptomonas spp. were moved to Herpetomonas, now comprising 13 valid species, while four species were excluded from the genus. Light and electron microscopy revealed the extreme polymorphism of Herpetomonas, hindering genus and species identification by morphological characteristics. Our findings also showed that some species of Herpetomonas are generalist parasites of flies and appear to be as cosmopolitan as their hosts.


Subject(s)
Diptera/parasitology , Trypanosomatina/classification , Trypanosomatina/genetics , Animals , Cluster Analysis , DNA, Protozoan/chemistry , DNA, Protozoan/genetics , DNA, Ribosomal/chemistry , DNA, Ribosomal/genetics , DNA, Ribosomal Spacer/chemistry , DNA, Ribosomal Spacer/genetics , Genes, rRNA , Glyceraldehyde-3-Phosphate Dehydrogenases/genetics , Microscopy , Models, Molecular , Molecular Sequence Data , Nucleic Acid Conformation , Phylogeny , RNA, Protozoan/genetics , RNA, Ribosomal, 18S/genetics , Sequence Analysis, DNA , Trypanosomatina/cytology , Trypanosomatina/isolation & purification
2.
Appl Microbiol Biotechnol ; 73(1): 122-31, 2006 Nov.
Article in English | MEDLINE | ID: mdl-16810496

ABSTRACT

Glycosylation pattern in cosmomycins is a distinctive feature among anthracyclines. These antitumor compounds possess two trisaccharide chains attached at C-7 and C-10, each of them with structural variability, mainly at the distal deoxysugar moieties. We have characterized a 14-kb chromosomal region from Streptomyces olindensis containing 13 genes involved in cosmomycin biosynthesis. Two of the genes, cosG and cosK, coding for glycosyltransferase were inactivated with the generation of five new derivatives. Structural elucidation of these compounds showed altered glycosylation patterns indicating the capability of both glycosyltransferases of transferring deoxysugars to both sides of the aglycone and the flexibility of CosK with respect to the deoxysugar donor. A model is proposed for the glycosylation steps during cosmomycins biosynthesis.


Subject(s)
Anthracyclines/chemistry , Anthracyclines/metabolism , Glycosyltransferases/genetics , Streptomyces/metabolism , Bacterial Proteins/genetics , DNA, Bacterial/chemistry , DNA, Bacterial/genetics , Gene Deletion , Gene Order , Genetic Complementation Test , Glycosylation , Magnetic Resonance Spectroscopy , Molecular Sequence Data , Molecular Structure , Sequence Analysis, DNA , Streptomyces/enzymology , Streptomyces/genetics
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