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Phosphorylation of the immunomodulatory drug FTY720 by sphingosine kinases.

The immunomodulatory drug FTY720 is phosphorylated in vivo, and the resulting FTY720 phosphate as a ligand for sphingosine-1-phosphate receptors is responsible for the unique biological effects of the compound. So far, phosphorylation of FTY720 by murine sphingosine kinase (SPHK) 1a had been documented. We found that, while FTY720 is also phosphorylated by human SPHK1, the human type 2 isoform phosphorylates the drug 30-fold more efficiently, because of a lower Km of FTY720 for SPHK2. Similarly, murine SPHK2 was more efficient than SPHK1a. Among splice variants of the human SPHKs, an N-terminally extended SPHK2 isoform was even more active than SPHK2 itself. Further SPHK superfamily members, namely ceramide kinase and a "SPHK-like" protein, failed to phosphorylate sphingosine and FTY720. Thus, only SPHK1 and 2 appear to be capable of phosphorylating FTY720. Using selective assay conditions, SPHK1 and 2 activities in murine tissues were measured. While activity of SPHK2 toward sphingosine was generally lower than of SPHK1, FTY720 phosphorylation was higher under conditions favoring SPHK2. In human endothelial cells, while activity of SPHK1 toward sphingosine was 2-fold higher than of SPHK2, FTY720 phosphorylation was 7-fold faster under SPHK2 assay conditions. Finally, FTY720 was poorly phosphorylated in human blood as compared with rodent blood, in line with the low activity of SPHK1 and in particular of SPHK2 in human blood. To conclude, both SPHK1 and 2 are capable of phosphorylating FTY720, but SPHK2 is quantitatively more important than SPHK1.

Animals↗

Negligible genetic diversity of mycobacterium tuberculosis host immune system protein targets: evidence of limited selective pressure.

A common theme in medical microbiology is that the amount of amino acid sequence variation in proteins that are targets of the host immune system greatly exceeds that found in metabolic enzymes or other housekeeping proteins. Twenty-four Mycobacterium tuberculosis genes coding for targets of the host immune system were sequenced in 16 strains representing the breadth of genomic diversity in the species. Of the 24 genes, 19 were invariant and only six polymorphic nucleotide sites were identified in the 5 genes that did have variation. The results document the highly unusual circumstance that prominent M. tuberculosis antigenic proteins have negligible structural variation worldwide. The data are best explained by a combination of three factors: (i) evolutionarily recent global dissemination in humans, (ii) lengthy intracellular quiescence, and (iii) active replication in relatively few fully immunocompetent hosts. The very low level of amino acid diversity in antigenic proteins may be cause for optimism in the difficult fight to control global tuberculosis.

Acyltransferases↗

Imino proton NMR analysis of HDV ribozymes: nested double pseudoknot structure and Mg2+ ion-binding site close to the catalytic core in solution.

Minimized trans-acting HDV ribozyme systems consisting of three (Rz-3) and two (Rz-2) RNA strands were prepared and their folding conformations were analyzed by NMR spectroscopy. The guanosine residues in one of the enzyme components of Rz-3 were labeled with 13C and 15N. Imino proton signals were assigned by analysis of NOESY and HSQC spectra. The results are consistent with the nested double pseudoknot model, which contains novel base pairs (P1.1), as observed in the crystal structure of a genomic HDV ribozyme. The NOE connectivities suggest an additional G:G pair at the bottom of P1.1 and at the top of P4. The effects of temperature and Mg2+ ions on base pairs for Rz-3 were examined. The temperature variation experiment on Rz-3 showed that P3 is the most stable and that P1.1 is as stable as P1 and P2. The imino proton signals of the G:U pair at the bottom of P1 and the top of P1.1, which are close to the cleavage site, showed the largest changes upon Mg2+ titration of Rz-3. The results suggest that the catalytic Mg2+ ion binds to the pocket formed by P1 and L3.

Base Sequence↗

Outbreeding depression, but no inbreeding depression in haplodiploid Ambrosia beetles with regular sibling mating.

In sexual reproduction the genetic similarity or dissimilarity between mates strongly affects offspring fitness. When mating partners are too closely related, increased homozygosity generally causes inbreeding depression, whereas crossing between too distantly related individuals may disrupt local adaptations or coadaptations within the genome and result in outbreeding depression. The optimal degree of inbreeding or outbreeding depends on population structure. A long history of inbreeding is expected to reduce inbreeding depression due to purging of deleterious alleles, and to promote outbreeding depression because of increased genetic variation between lineages. Ambrosia beetles (Xyleborini) are bark beetles with haplodiploid sex determination, strong local mate competition due to regular sibling mating within the natal chamber, and heavily biased sex ratios. We experimentally mated females of Xylosandrus germanus to brothers and unrelated males and measured offspring fitness. Inbred matings did not produce offspring with reduced fitness in any of the examined life-history traits. In contrast, outcrossed offspring suffered from reduced hatching rates. Reduction in inbreeding depression is usually attributed to purging of deleterious alleles, and the absence of inbreeding depression in X. germanus may represent the highest degree of purging of all examined species so far. Outbreeding depression within the same population has previously only been reported from plants. The causes and consequences of our findings are discussed with respect to mating strategies, sex ratios, and speciation in this unusual system.

Analysis of Variance↗

Variant histone H2A.Z is globally localized to the promoters of inactive yeast genes and regulates nucleosome positioning.

H2A.Z is an evolutionary conserved histone variant involved in transcriptional regulation, antisilencing, silencing, and genome stability. The mechanism(s) by which H2A.Z regulates these various biological functions remains poorly defined, in part due to the lack of knowledge regarding its physical location along chromosomes and the bearing it has in regulating chromatin structure. Here we mapped H2A.Z across the yeast genome at an approximately 300-bp resolution, using chromatin immunoprecipitation combined with tiling microarrays. We have identified 4,862 small regions--typically one or two nucleosomes wide--decorated with H2A.Z. Those "Z loci" are predominantly found within specific nucleosomes in the promoter of inactive genes all across the genome. Furthermore, we have shown that H2A.Z can regulate nucleosome positioning at the GAL1 promoter. Within HZAD domains, the regions where H2A.Z shows an antisilencing function, H2A.Z is localized in a wider pattern, suggesting that the variant histone regulates a silencing and transcriptional activation via different mechanisms. Our data suggest that the incorporation of H2A.Z into specific promoter-bound nucleosomes configures chromatin structure to poise genes for transcriptional activation. The relevance of these findings to higher eukaryotes is discussed.

Gene Expression Regulation, Fungal↗

TT virus as a human pathogen: significance and problems.

In 1997 TTV was detected using representational difference analysis (RDA) in serum of a patient with posttransfusion hepatitis unrelated to known hepatitis viruses. The genome of TTV is a circular single-stranded DNA molecule of 3852 nt with negative polarity. TTV possibly can be grouped either into the existing family Circoviridae or into a recently established virus family "Circinoviridae". Analysis of the complete DNA nucleotide sequence of TTV identified three partially overlapping open reading frames (ORFs). Neither DNA nucleotide nor corresponding amino acid sequences of TTV do show significant homologies to known sequences. TTV DNA nucleotide sequences amplified by PCR from sera of different patients show considerable sequence variations. Although the natural route of transmission of TTV is still unknown, there is clear evidence for a transmission of TTV through blood and blood products. TTV DNA can be detected in the feces of infected individuals suggesting that it may be possible to attract TTV infection from environmental sources. Since the discovery of TTV, numerous studies have investigated the prevalence of TTV infections in different human population groups all over the world. All these studies are based on PCR detection systems, but the technical aspects of the PCR systems vary significantly between the different investigators. The results of the epidemiological studies do not show a clear picture. The discovery of TTV as a viral agent and particularly the identification of a high percentage of infected carriers in the healthy human population raises the following questions: Firstly, what is the origin and molecular relatedness of TT virus. Secondly, what is the significance of TTV as a human pathogen. And thirdly, what are the exact molecular mechanisms of viral replication. To answer these questions it will be necessary to determine the primary structure and the coding capacity of several TTV patient isolates.

Animals↗

A new highly discriminatory typing scheme for Treponema pallidum reveals similar levels of genetic variability across lineages.

UNLABELLED: The global resurgence of treponematoses, particularly syphilis, poses a growing public health challenge. Despite advances in sequencing technologies, obtaining complete Treponema pallidum genome sequences for epidemiological studies remains challenging due to clinical sampling and methodological constraints. There is, therefore, a need for rapid, cost-effective, and accessible typing methods. Based on the analysis of 121 T. pallidum genomes spanning all three subspecies (TPA, TPE, and TEN) from diverse regions, we selected seven highly variable genes (tp0136, tp0326, tp0548, tp0705, tp0858, tp0865, and tp1031) to form a new typing system, combined with analysis of macrolide resistance mutations in the 23S rRNA gene. The scheme was validated on 542 global T. pallidum samples, using either Sanger reads or whole genome sequence data, obtaining 82 sequence types (STs) among the 415 fully typed samples. Macrolide resistance mutations were frequently detected, highlighting the need for ongoing epidemiological surveillance. Phylogenetic analyses based on concatenated multilocus typing (MLST) loci recovered the expected subspecies and lineage structure. Consistently, almost all sequence types formed monophyletic groups, indicating strong concordance between MLST-based classification and whole-genome phylogenies. In addition, population genetic analyses revealed comparable levels of within-lineage diversity across subspecies and lineages, despite pronounced differences in geographic distribution, and identified distinct regional genetic clusters consistent with localized transmission dynamics. Importantly, the scheme employs a single-step PCR for all seven targets, facilitating implementation in standard laboratories and is publicly accessible through PubMLST. Overall, our novel MLST scheme offers a rapid, cost-effective tool to advance molecular epidemiology of T. pallidum, facilitate transmission and resistance tracking, and support global surveillance to strengthen public health interventions for syphilis and endemic treponematoses control. IMPORTANCE: We have developed a new multilocus typing (MLST) scheme useful for all Treponema pallidum lineages after the analysis of 121 complete genome sequences of this species. The new scheme can be used directly with uncultured clinical samples, thus providing an excellent contribution to the molecular surveillance of syphilis and other treponematoses. The application of this MLST scheme to over 500 samples from all lineages and main geographical regions has revealed similar levels of genetic variation within them. Furthermore, the analyses show a complex pattern of spread, with global and local contributions to the observed distribution of genetic variation in the syphilis-producing sublineages. The new scheme represents a significant improvement over previous proposals and also reveals unsuspected levels of variability in T. pallidum lineages.

Treponema pallidum↗

Complete genome sequencing of dengue virus type 1 isolated in Buenos Aires, Argentina.

Dengue (DEN) constitutes a major viral arthropod-borne human illness. South America was last considered free of dengue two decades ago when a dramatic increase in the number of dengue fever and hemorrhagic dengue cases had been reported. Five viruses were isolated in Buenos Aires City from the 1999-2000 Paraguay outbreak. RT-PCRs obtained directly from plasma were cloned into pGemT vectors and sequences of the structural genes and NS1 were analyzed. Three viruses were full-length sequenced from RT-PCR obtained from cell-culture isolates. Excess of synonymous over non-synonymous mutations suggested that the structural proteins were under strong functional constraints while a weak purifying selection was operating in the whole polyprotein. Sequence diversity and selective pressures varied among patients but results were significantly above the procedure threshold. One sample showed small-plaque phenotype and impaired growth coupled to 3'untranslated region mutations. Phylogenetic analysis of full-length sequences split Buenos Aires isolates into two clusters within American DEN-1 genotype V: Clade I was phylogenetically linked to Brazilian samples and Clade II with samples from Paraguay and Northeastern Argentina. In Buenos Aires City, only dengue virus serotype 1 imported from Paraguay has been detected, though without evidence of local transmission.

3' Untranslated Regions↗

Phase variation of a beta-1,3 galactosyltransferase involved in generation of the ganglioside GM1-like lipo-oligosaccharide of Campylobacter jejuni.

Ganglioside mimicry by Campylobacter jejuni lipo-oligosaccharide (LOS) is thought to be a critical factor in the triggering of the Guillain-Barré and Miller-Fisher syndrome neuropathies after C. jejuni infection. The combination of a completed genome sequence and a ganglioside GM1-like LOS structure makes C. jejuni NCTC 11168 a useful model strain for the identification and characterization of the genes involved in the biosynthesis of ganglioside-mimicking LOS. Genome analysis identified a putative LOS biosynthetic cluster and, from this, we describe a putative gene (ORF Cj1139c), which we have termed wlaN, with a significant level of similarity to a number of bacterial glycosyltransferases. Mutation of this gene in C. jejuni NCTC 11168 resulted in a LOS molecule of increased electrophoretic mobility, which also failed to bind cholera toxin. Comparison of LOS structural data from wild type and the mutant strain indicated lack of a terminal beta-1,3-linked galactose residue in the latter. The wlaN gene product was demonstrated unambiguously as a beta-1,3 galactosyltransferase responsible for converting GM2-like LOS structures to GM1-like by in vitro expression. We also show that the presence of an intragenic homopolymeric tract renders the expression of a functional wlaN gene product phase variable, resulting in distinct C. jejuni NCTC 11168 cell populations with alternate GM1 or GM2 ganglioside-mimicking LOS structures. The distribution of wlaN among a number of C. jejuni strains with known LOS structure was determined and, for C. jejuni NCTC 12500, similar wlaN gene phase variation was shown to occur, so that this strain has the potential to synthesize a GM1-like LOS structure as well as the ganglioside GM2-like LOS structure proposed in the literature.

Amino Acid Sequence↗

Comparative genomic analysis of the MHC: the evolution of class I duplication blocks, diversity and complexity from shark to man.

The major histocompatibility complex (MHC) genomic region is composed of a group of linked genes involved functionally with the adaptive and innate immune systems. The class I and class II genes are intrinsic features of the MHC and have been found in all the jawed vertebrates studied so far. The MHC genomic regions of the human and the chicken (B locus) have been fully sequenced and mapped, and the mouse MHC sequence is almost finished. Information on the MHC genomic structures (size, complexity, genic and intergenic composition and organization, gene order and number) of other vertebrates is largely limited or nonexistent. Therefore, we are mapping, sequencing and analyzing the MHC genomic regions of different human haplotypes and at least eight nonhuman species. Here, we review our progress with these sequences and compare the human MHC structure with that of the nonhuman primates (chimpanzee and rhesus macaque), other mammals (pigs, mice and rats) and nonmammalian vertebrates such as birds (chicken and quail), bony fish (medaka, pufferfish and zebrafish) and cartilaginous fish (nurse shark). This comparison reveals a complex MHC structure for mammals and a relatively simpler design for nonmammalian animals with a hypothetical prototypic structure for the shark. In the mammalian MHC, there are two to five different class I duplication blocks embedded within a framework of conserved nonclass I and/or nonclass II genes. With a few exceptions, the class I framework genes are absent from the MHC of birds, bony fish and sharks. Comparative genomics of the MHC reveal a highly plastic region with major structural differences between the mammalian and nonmammalian vertebrates. Additional genomic data are needed on animals of the reptilia, crocodilia and marsupial classes to find the origins of the class I framework genes and examples of structures that may be intermediate between the simple and complex MHC organizations of birds and mammals, respectively.

Animals↗

Structural heterogeneity and genomic distribution of Drosophila melanogaster LTR-retrotransposons.

Structural heterogeneity of five long terminal repeat (LTR) retrotransposon families (297, mdg 1, 412, copia, and 1731) was investigated in Drosophila melanogaster. The genomic distribution of canonical and rearranged elements was studied by comparing hybridization patterns of Southern blots on salivary glands from adult females and males with in situ hybridization on polytene chromosomes. The proportion and genomic distribution of noncanonical copies is distinctive to each family and presents constant features in the four different D. melanogaster strains studied. Most elements of families 297 and mdg 1 were noncanonical and presented large interstock and intrastock polymorphism. Noncanonical elements of these two families were mostly located in euchromatin, although not restricted to it. The elements of families 412 and copia were better conserved. The proportion of noncanonical elements was lower. The 1731 family is mainly composed of noncanonical, beta-heterochromatic elements that are highly conserved among stocks. The relation of structural polymorphism to phylogeny, transpositional activity and the role of natural selection in the maintenance of transposable elements are discussed.

Animals↗

Variations in the human phospholipase Cgamma2 gene in patients with B-cell defects of unknown etiology.

Our recent studies using targeted gene disruption have shown that defects in phospholipase Cgamma2 (PLCgamma2) result in a B-cell abnormality that is very similar to that seen in Btk-deficient mice. Null mutations in either PLCG2 or BTK are associated with decreased numbers of mature B cells, failure to make antibodies to some T cell-independent antigens and the absence of CD5+ peritoneal B cells. Mutations in BTK in humans cause a more severe defect in B-cell development characterized by almost complete absence of B cells in the peripheral circulation, profound hypogammaglobulinemia and an inability to produce antibodies to any antigens. However, not all patients with severe defects in B-cell development have mutations in BTK or the components of the B-cell signal transduction complex. To explore the possibility that some patients with defects in B-cell development of unknown etiology might have mutations in PLCG2, we determined the genomic structure of this gene and established conditions to analyze the 32 exons of the gene and the flanking sequences by single-strand conformation polymorphism. Although 24 polymorphic variants of this gene were found in 35 patients, we did not identify any alterations that were likely to be the cause of disease.

Agammaglobulinemia↗

Characterization of the N-terminal part of the neutralizing antigenic site I of coxsackievirus B4 by mutation analysis of antigen chimeras.

Coxsackievirus B3 (CVB3) as a potential RNA virus vector for the presentation of foreign antigenic epitopes was further characterized. Insertion mutagenesis of infectious CVB3 cDNA yielded viable antigen chimeras containing variant BC loops of VP1 of coxsackievirus B4 (CVB4). Analysis of three antigen chimeras allowed the mapping of the N-terminal part of the neutralizing antigenic site 1 (N-Ag1) of CVB4 which is located in the BC loop of the structural protein VP1. A significant neutralization of a viable chimera with the deletion of CVB4-specific amino acid Ser-83 at the amino terminus of the VP1 BC loop was obtained with CVB4 serotype-specific polyclonal antisera. This neutralization was reduced after further deletion of the adjacent Ala-84, suggesting that this amino acid either constitutes the beginning of N-Ag1 of CVB4 or is essential for the conformation of the adjacent epitope. In contrast, exchange of amino acid Ser-86 to alanine, in the middle of the BC loop, led to complete loss of reactivity with CVB4-specific antibodies, demonstrating the importance of this residue for binding of CVB4 neutralizing antisera. Furthermore, we observed that manipulations of the VP1 BC loop resulted in increased thermolability of the viable chimeras in comparison to CVB3, although replication efficiencies were similar.

Amino Acid Sequence↗

Structural gene analysis of a Quebec reference strain or porcine reproductive and respiratory syndrome virus (PRRSV).

The 3' end genomic region of a Québec PRRSV reference strain (IAF-exp91), propagated in porcine alveolar macrophages (PAM), was sequenced and compared to the prototype European strain, the Lelystad virus (LV). The sequence, which represents the 3'-terminal 2834 nucleotides, encompassed 5 ORFs corresponding to ORFs 3 to 7 of LV. Extensive genomic variations resulting from an important rate of nucleotide additions, substitutions, and deletions were demonstrated between the two viruses. Indeed, the two corresponding sequences displayed a total of 66% and 63% identity at the nucleotide and amino acid levels, respectively. The predicted products of ORFs 5, 3, and 7, showed the highest rate of amino acid variations with percentages of identity of 52, 54, and 59, respectively. Sequence analysis of an additional Québec strain that could be propagated in a continuous cell line (MARC-145), suggested that Québec PRRSV strains belong to a genotype distinct from that of LV, thus confirming previous serological results which allowed to divide PRRSV isolates into two distinct antigenic subgroups (U.S. and European). Six viral major polypeptides with apparent M(rs) of 14.5K, 15K, 19K, 24.5K, 29K, and 42K could be identified from lysates of viral infected cells, of which the 15, 19 and 24.5K species seemed to be structural. In vitro translation products of ORFs 7 and 6 comigrated with the 15 and 19 K viral proteins, whereas that of ORF 5 may be associated to the 24.5K when translated in presence of microsomes. Consequently, it is likely that ORFs 7 to 5, encode the three major structural proteins.

Animals↗

Influenza: the agent.

Less perplexing than its epidemic behavior is the nature of the influenza virion as such, which is now one of the best understood viruses in terms of morphology and replication. Among the aspects of the virus discussed in this article are the composition of its genome, the components of its envelope, and the probable molecular structure of its two surface proteins as well as their relative roles in antigenicity.

Antigens, Viral↗

A divergent simian immunodeficiency virus from sooty mangabey with an atypical Tat-TAR structure.

SIVsm, the simian immunodeficiency virus that naturally infects sooty mangabeys in West Africa, is the closest lentiviral relative of human immunodeficiency virus type 2 (HIV-2). To determine the genetic characteristics of SIVsm in its natural host, we sequenced the full-length genome of SIVsmSL92b, a primary isolate obtained from a pet sooty mangabey in Sierra Leone. SIVsmSL92b proved to be the most divergent member of the HIV-2/SIVsm lineage found thus far, having as much as 35% nucleotide divergence from other HIV-2 genomes. A phylogenetic association between SIVsmSL92b and HIV-2 PA subtype E, which had been previously revealed by the analysis of partial gag sequences, was extended to the pol gene. SIVsmSL92b showed several divergent features, including a short Tat protein of 104 residues and an atypical TAR structure. Specifically, only one of the duplicate TAR elements contained the conserved hexanucleotide loop sequence CUGGGX important for Tat-cyclin T1 binding. These features suggested that the mechanism of SIVsmSL92b Tat and TAR interaction differed from that described for HIV-2. Taken together, these findings indicated that the structural diversity within the HIV-2/SIVsm lineage was greater than previously appreciated.

Amino Acid Sequence↗

In silico whole-genome scanning of cancer-associated nonsynonymous SNPs and molecular characterization of a dynein light chain tumour variant.

Last decade has led to the accumulation of large amounts of data on cancer genetics, opening an unprecedented access to the mapping of cancer genes in the human genome. Single-nucleotide polymorphisms (SNPs), the most common form of DNA variation in humans, emerge as an invaluable tool for cancer association studies. These genotypic markers can be used to assay how alleles of candidate genes correlate with the malignant phenotype, and may provide new clues into the genetic modifications that characterize cancer onset. In this cancer-oriented study, we detail an SNP mining strategy based on the analysis of expressed sequence tags among publicly available databases. Our whole-genome approach provides a comprehensive and unbiased description of nonsynonymous SNPs (nsSNPs) in tumoral versus normal tissues. To gain further insights into the possible relationships between genetic variation and altered phenotype, locations of a subset of nsSNPs were mapped onto protein domains known to be critical for protein function. Computational methods were also used to predict the potential impact of these cancer-associated nsSNPs on protein structure and function. We illustrate our approach through the detailed biochemical and structural characterization of a previously unknown cancer-associated mutation (G79C) affecting the 8 kDa dynein light chain (DNCL1).

Computational Biology↗

The physical map of the chloroplast DNA from Korean ginseng (Panax ginseng C.A. Meyer).

To compare the gene order of the chloroplast genome among dicotyledonous plants, we constructed a physical map of chloroplast DNA (cpDNA) of Korean ginseng (Panax ginseng C.A. Meyer) with four restriction enzymes, BamHI, HindIII, EcoRI, and PstI. The restriction enzyme recognition sites of the physical map were also confirmed by Southern hybridization of total ginseng cpDNA with homologous and heterologous probes. The cpDNA of Korean ginseng was determined as a circular molecule with a total size of about 154 kb, which contain two inverted repeats of 23 kb each that disrupt the rest of the molecule into a large (90 kb) and a small single copy region (18 kb). The genome structure of Korean ginseng cpDNA was similar in size and gene order to that of tobacco cpDNA. The cpDNA of Korean and American ginseng (P. quinquefolius) showed very similar restriction patterns.

Chromosome Mapping↗