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Functional analysis of evolutionary conserved clustering of bZIP binding sites in the baculovirus homologous regions (hrs) suggests a cooperativity between host and viral transcription factors.

The genome of the Autographa californica Multinucleocapsid Polyhedrosis Virus (AcMNPV) contains nine interspersed homologous regions (hrs) that function as potent enhancer sequences when linked in cis to either viral or heterologous RNA polymerase II-dependent promoters. Their activity is strongly increased by the binding of the major immediate early viral transregulator IE1 on 28-mer palindromic sites present in hrs. We show that hrs of AcMNPV additionally carry, in the interpalindromic sequences, a large number of cAMP response elements (CRE) and TPA response elements (TRE), known to bind ubiquitous cellular transcription factors of the bZIP family. Moreover, these clusters of CRE and TRE motifs are concentrated in hrs. Analysis of the 25 baculovirus genomes sequenced so far reveals that these motifs are evolutionary conserved in Lepidoptera NPVs, suggesting a functional role in the hr enhancer function. Consistently, EMSA experiments indicate that CRE and on a lesser extent TRE sites specifically bind insect host factors. Moreover, reporter assays reveal that these CRE sites have an additive stimulatory effect on RNAPol II-dependent transcription in Sf9 cells and are potentially able to synergize with the IE1-binding palindrome.

Allosteric Regulation↗

Exponential spread of hepatitis C virus genotype 4a in Egypt.

Hepatitis C virus (HCV) infects >10% of the general population in Egypt, in which intravenous injection with an antimony compound for endemic schistosomiasis in the past has been implicated. To simulate the epidemic history of HCV in Egypt, sera were obtained from 3608 blood donors at 13 governorates in or surrounding the Nile valley during 1999. The prevalence of antibody to HCV (anti-HCV) and genotypes was determined in them, and the molecular evolutionary analysis based on the neutral theory was applied to HCV isolates of genotype 4a, which is outstandingly prevalent in Egypt and indigenous there. Of 3608 sera, 317 (8.8%) were positive for anti-HCV. The molecular evolutionary analysis on 47 HCV genotype 4a isolates of carriers from various districts in Egypt indicated that the spread of HCV-4a would have increased exponentially during the 1940s through 1980 when oral medications became available. In conclusion, the estimated spread time is consistent with the duration of intravenous antimony campaigns in Egypt.

Adult↗

Evolutionary breakpoint analysis on Y chromosomes of higher primates provides insight into human Y evolution.

Comparative FISH mapping of PAC clones covering almost 3 Mb of the human AZFa region in Yq11.21 to metaphases of human and great apes unravels breakpoints that were involved in species-specific Y chromosome evolution. An astonishing clustering of evolutionary breakpoints was detected in the very proximal region on the long arm of the human Y chromosome in Yq11.21. These breakpoints were involved in deletions, one specific for the human and another for the orang-utan Y chromosome, in a duplicative translocation/transposition specific for bonobo and chimpanzee Y chromosomes and in a pericentric inversion specific for the gorilla Y chromosome. In addition, our comparative results allow the deduction of a model for the human Y chromosome evolution.

Animals↗

Genome-wide identification of WOX transcription factors and functional characterization of WOX4 and WOX13 involved in cold stress response in Malus baccata.

INTRODUCTION: Cold stress is a major abiotic threat to apple production. Malus baccata has exceptional cold hardiness and is widely used as a superior cold-resistant rootstock. The WUSCHEL-related homeobox (WOX) transcription factor family regulates plant growth, development and stress adaptation, whereas the functions of WOX genes in cold tolerance of M. baccata remain elusive. METHODS: In the present work, 19 MbWOX family members were identified and characterized at the genome-wide level. Evolutionary analysis, cis-element prediction, transcriptome profiling and real-time quantitative PCR (RT-qPCR) were performed to screen core cold-responsive genes. Overexpression vectors were constructed and transformed into Arabidopsis seedlings for functional verification. RESULTS: Evolutionary analysis revealed that segmental duplication drove the expansion of the MbWOX family, and these genes contained a variety of stress-responsive cis-elements. Combined transcriptome and RT-qPCR analyses confirmed that MbWOX4 and MbWOX13 were core cold-responsive genes with distinct expression patterns. The two genes participated in cold signal transduction by interacting with different transcription factor networks. Functional tests revealed that MbWOX4 and MbWOX13 isoforms differentially modulated seedling cold tolerance under low-temperature stress.

Malus baccata↗

Human prolactin. cDNA structural analysis and evolutionary comparisons.

Prolactin (Prl), growth hormone, and chorionic sommatomammotropin form a set (the "Prl set") of hormones which is thought to have evolved from a common ancestral gene. This assumption is based on several lines of evidence: overlap in their biological and immunological properties, similarities in their amino acid sequences, and homologies in the nucleic acid sequences of their structural genes. In the current study we report the cloning, amplification in bacteria, and sequence analysis of DNA complementary to Prl mRNA isolated from human pituitary Prl-secreting adenomas. The cloned DNA contains 914 bases, which includes the entire coding sequence of human prePrl as well as portions of the 5- and 3'-untranslated regions of the mRNA. The amino acid sequence predicted by our data differs from a previously reported amino acid sequence in 8 positions. With the results of this study we can now compare in one species the nucleotide sequences of the structural gene coding for each of the hormones of the Prl set. The sequence divergence at replacement sites is used to establish an evolutionary clock for the Prl set of genes. Using this clock, we postulate that the chromosomal segregation of human Prl and human growth hormone occurred about 392 million years ago and that growth hormone and chorionic sommatomammotropin underwent an intrachromosomal recombination within the last 10 million years.

Adenoma↗

Evolution of proteins and gene expression levels are coupled in Drosophila and are independently associated with mRNA abundance, protein length, and number of protein-protein interactions.

Organismic evolution requires that variation at distinct hierarchical levels and attributes be coherently integrated, often in the face of disparate environmental and genetic pressures. A central part of the evolutionary analysis of biological systems remains to decipher the causal connections between organism-wide (or genome-wide) attributes (e.g., mRNA abundance, protein length, codon bias, recombination rate, genomic position, mutation rate, etc) as well as their role-together with mutation, selection, and genetic drift-in shaping patterns of evolutionary variation in any of the attributes themselves. Here we combine genome-wide evolutionary analysis of protein and gene expression data to highlight fundamental relationships among genomic attributes and their associations with the evolution of both protein sequences and gene expression levels. Our results show that protein divergence is positively coupled with both gene expression polymorphism and divergence. We show moreover that although the number of protein-protein interactions in Drosophila is negatively associated with protein divergence as well as gene expression polymorphism and divergence, protein-protein interactions cannot account for the observed coupling between regulatory and structural evolution. Furthermore, we show that proteins with higher rates of amino acid substitutions tend to have larger sizes and tend to be expressed at lower mRNA abundances, whereas genes with higher levels of gene expression divergence and polymorphism tend to have shorter sizes and tend to be expressed at higher mRNA abundances. Finally, we show that protein length is negatively associated with both number of protein-protein interactions and mRNA abundance and that interacting proteins in Drosophila show similar amounts of divergence. We suggest that protein sequences and gene expression are subjected to similar evolutionary dynamics, possibly because of similarity in the fitness effect (i.e., strength of stabilizing selection) of disruptions in a gene's protein sequence or its mRNA expression. We conclude that, as more and better data accumulate, understanding the causal connections among biological traits and how they are integrated over time to constrain or promote structural and regulatory evolution may finally become possible.

Animals↗

A histidine gene cluster of the hyperthermophile Thermotoga maritima: sequence analysis and evolutionary significance.

The sequences of histidine operon genes in hyperthermophiles are informative for understanding high protein thermostability and the evolution of metabolic pathways. Therefore, a cluster of eight his genes from the hyperthermophilic and phylogenetically early bacterium Thermotoga maritima was cloned and sequenced. The cluster has the gene order hisDCBdHAFI-E, lacking only hisG and hisBp, and does not contain intercistronic regions. This compact organization of his genes resembles the his operon of enterobacteria. Sequence analysis downstream of the stop codon of hisI-E identifies a region with a significantly higher cytosine over guanosine content, which is indicative of a rho-dependent termination of transcription of the his operon. Multiple sequence alignments of N1-((5'-phosphoribosyl)-formimino)-5-aminoimidazole-4-carboxyam ide ribonucleotide isomerase (HisA) and of the cycloligase moiety of imidazoleglycerol phosphate synthase (HisF) support the previous assignment of the (beta alpha)8-barrel fold to these proteins. The alignments also reveal a second phosphate-binding motif located in the first halves of both enzymes and thereby support the hypothesis that HisA and HisF have evolved by a sequence of two gene duplication events. Comparison of the amino acid compositions of HisA and HisF from mesophiles and thermophiles shows that the thermostable variants of both enzymes contain a significantly increased number of charged amino acid residues and may therefore be stabilized by additional salt bridges.

Aldose-Ketose Isomerases↗

Genetic analysis of evolutionary relationships among deer (subfamily Cervinae).

The evolutionary relationships among 10 taxa of deer from the four genera of the subfamily Cervinae (Cervus, Elaphurus, Axis, and Dama) were examined by a comparison of their electrophoretic types for 22 proteins. We analyzed the data using both phenetic and cladistic methods and found that the genera of the Cervinae were not monophyletic. The genus Cervus was split into two distinct groups with red deer, wapiti (C. elaphus ssp.), and sika (C. nippon) in one clade and sambar (C. unicolor) and rusa (C. timorensis) in another. There was a close genetic relationship between the genus Elaphurus and the red deer, wapiti, sika group, whereas sambar and rusa were more similar to members of the genera Dama and Axis than to the other members of their own genus. These findings contrast with the taxonomy of the species that is based largely on studies of comparative morphology. Our samples (n = 5) showed fixed allelic differences between wapiti and red, wapiti and sika, and red and sika samples at 3, 6, and 7 loci, respectively. Analysis of these protein loci in a wider range of C. elaphus and C. nippon subspecies could resolve debate over the evolutionary relationships of these taxa.

Animals↗

Evolutionary trace analysis of eukaryotic DNA topoisomerase I superfamily: identification of novel antitumor drug binding site.

The studies of novel inhibitors of DNA topoisomerase I (Topo I) have already become very promising in cancer chemotherapy. Identifying the new drug-binding residues is playing an important role in the design and optimization of Topo I inhibitors. The designed compounds may have novel scaffolds, thus will be helpful to overcome the toxicities of current camptothecin (CPT) drugs and may provide a solution to cross resistance with these drugs. Multiple sequence alignments were performed on eukaryotic DNA topoisomerase I superfamily and thus the evolutionary tree was constructed. The Evolutionary Trace method was applied to identify functionally important residues of human Topo I. It has been demonstrated that class-specific hydrophobic residues Ala351, Met428, Pro431 are located around the 7,9-position of CPT, indicating suitable substitution of hydrophobic group on CPT will increase antitumor activity. The conservative residue Lys436 in the superfamily is of particular interest and new CPT derivatives designed based on this residue may greatly increase water solubility of such drugs. It has also been demonstrated that the residues Asn352 and Arg364 were conservative in the superfamily, whose mutation will render CPT resistance. As our molecular docking studies demonstrated they did not make any direct interaction with CPT, they are important drug-binding site residues for future design of novel non-camptothecin lead compounds. This work provided a strong basis for the design and synthesis of novel highly potent CPT derivatives and virtual screening for novel lead compounds.

Amino Acid Sequence↗

Evolutionary EST analysis identifies rapidly evolving male reproductive proteins in Drosophila.

Sequence comparisons of genomes or expressed sequence tags (ESTs) from related organisms provide insight into functional conservation and diversification. We compare the sequences of ESTs from the male accessory gland of Drosophila simulans to their orthologs in its close relative Drosophila melanogaster, and demonstrate rapid divergence of many of these reproductive genes. Nineteen ( approximately 11%) of 176 independent genes identified in the EST screen contain protein-coding regions with an excess of nonsynonymous over synonymous changes, suggesting that their divergence has been accelerated by positive Darwinian selection. Genes that encode putative accessory gland-specific seminal fluid proteins had a significantly elevated level of nonsynonymous substitution relative to nonaccessory gland-specific genes. With the 57 new accessory gland genes reported here, we predict that approximately 90% of the male accessory gland genes have been identified. The evolutionary EST approach applied here to identify putative targets of adaptive evolution is readily applicable to other tissues and organisms.

Analysis of Variance↗

Phylogenetic analysis of evolutionary relationships of the planctomycete division of the domain bacteria based on amino acid sequences of elongation factor Tu.

Sequences from the tuf gene coding for the elongation factor EF-Tu were amplified and sequenced from the genomic DNA of Pirellula marina and Isosphaera pallida, two species of bacteria within the order Planctomycetales. A near-complete (1140-bp) sequence was obtained from Pi. marina and a partial (759-bp) sequence was obtained for I. pallida. Alignment of the deduced Pi. marina EF-Tu amino acid sequence against reference sequences demonstrated the presence of a unique 11-amino acid sequence motif not present in any other division of the domain Bacteria. Pi. marina shared the highest percentage amino acid sequence identity with I. pallida but showed only a low percentage identity with other members of the domain Bacteria. This is consistent with the concept of the planctomycetes as a unique division of the Bacteria. Neither primary sequence comparison of EF-Tu nor phylogenetic analysis supports any close relationship between planctomycetes and the chlamydiae, which has previously been postulated on the basis of 16S rRNA. Phylogenetic analysis of aligned EF-Tu amino acid sequences performed using distance, maximum-parsimony, and maximum-likelihood approaches yielded contradictory results with respect to the position of planctomycetes relative to other bacteria. It is hypothesized that long-branch attraction effects due to unequal evolutionary rates and mutational saturation effects may account for some of the contradictions.

Amino Acid Sequence↗

Identification, analysis, and evolutionary relationships of the putative murine cytomegalovirus homologs of the human cytomegalovirus UL82 (pp71) and UL83 (pp65) matrix phosphoproteins.

We have identified three open reading frames (ORFs) in murine cytomegalovirus (MCMV), designated M82, M83, and M84, which likely encode homologs of the human cytomegalovirus (HCMV) UL82 and UL83 matrix phosphoproteins. These ORFs, in the HindIII C fragment of MCMV, are colinear with the UL82, UL83, and UL84 ORFs of HCMV. M82 encodes a 598-amino-acid (aa) protein with homology to UL82, M83 encodes an 809-aa protein with homology to UL82 and UL83, and M84 encodes a 587-aa protein with homology to UL83 and UL84. Analysis of transcription by Northern (RNA) blotting indicated that the M82 and M83 ORFs are transcribed as 2.2- and 5-kb mRNAs, respectively, at 24 to 48 h postinfection (p.i.), while M84 is transcribed as a 6.9-kb mRNA only at 8 h p.i. All transcripts appear to terminate at the same position 3' of the M82 ORF. Of the products of the three ORFs, only M83 is strongly recognized by hyperimmune mouse serum. The M83 protein is a virion-associated phosphoprotein with an apparent molecular mass of 125 kDa. In MCMV-infected cells, it is detectable by Western blotting (immunoblotting) only at 48 h p.i. in the absence of phosphonoacetic acid, consistent with late gene expression. The M83 ORF is also expressed at high levels in cells infected by a recombinant vaccinia virus and yields a protein which is serologically cross-reactive and comigrates with the authentic MCMV protein in sodium dodecyl sulfate-polyacrylamide gel electrophoresis.

3T3 Cells↗

Evolutionary trace analysis of TGF-beta and related growth factors: implications for site-directed mutagenesis.

The TGF-beta family of growth factors contains a large number of homologous proteins, grouped in several subfamilies on the basis of sequence identity. These subgroups can be combined into three broader groups of related cytokines, with marked specificities for their cellular receptors: the TGF-betas, the activins and the BMPs/GDFs. Although structural information is available for some members of the TGF-beta family, very little is known about the way in which these growth factors interact with the extra-cellular domains of their multiple cell surface receptors or with the specific protein inhibitors thought to modulate their activity. In this paper, we use the evolutionary trace method [Lichtarge et al. (1996) J. Mol. Biol., 257, 342-358] to locate two functional patches on the surface of TGF-beta-like growth factors. The first of these is centred on a conserved proline (P(36) in TGF-betas 1-3) and contains two amino acids which could account for the receptor specificity of TGF-betas (H(34) and E(35)). The second patch is located on the other side of the growth factor protomer and surrounds a hydrophobic cavity, large enough to accommodate the side chain of an aromatic residue. In addition to two conserved tryptophans at positions 30 and 32, the main protagonists in this potential binding interface are found at positions 31, 92, 93 and 98. Several mutagenesis studies have highlighted the importance of the C-terminal region of the growth factor molecule in TGF-betas and of residues in activin A equivalent to positions 31 and 94 of the TGF-betas for the binding of type II receptors to these ligands. These data, together with our improved knowledge of possible functional residues, can be used in future structure-function analysis experiments.

Amino Acid Motifs↗

Amelogenin: lessons from evolution.

Amelogenin plays a crucial role in enamel structure and mineralization, but the function of its various domains is far to be understood. Evolutionary analysis seems to be a promising way to approach structure/function relationships. In this paper, we review the knowledge of amelogenin with a particular focus on what we have learnt from evolution, and we bring new data on the origin and evolution of this molecule. The comparison of amniote (reptiles and mammals) amelogenin sequences reveals that, in contrast to the well-conserved C- and N-terminal domains, the central region (most of exon 6) is highly variable. The evolutionary analysis indicates that it was created by repeated insertion of three amino acids (triplets ProXGlu or ProXX). In several mammalian lineages a new run of triplet insertions and deletions has occurred independently in a locus considered a hot spot of mutation for mammalian amelogenin. In lizard and snake amelogenin evolves rapidly. Sequence alignment reveals that several residues in the N- and C-terminal regions were kept unchanged during 250 million years (MY), proving their importance for amelogenin structure and function. This alignment permits a rapid validation of the amelogenin mutations in human. Genome sequencing and gene mapping permitted to refine the amelogenin story, in relation to the common location (chromosome 4 in human) of several genes coding for dental proteins and SPARCL1, a SPARC (osteonectin) relative. Amelogenin shares a similar organisation with these genes and a blast search in databanks indicates a strong relationship between amelogenin, ameloblastin and enamelin. Taken together these data suggest that amelogenin could have originated from either ameloblastin or enamelin, themselves being created from SPARCL1, which itself originated from a SPARC duplication, 600 millions years ago.

Amelogenesis↗

[Computer bank of amino-acid sequences of protein hormones. Analysis of evolutionary, conformational and physico-chemical properties of the individual sites of sequences in superfamilies of proinsulin and proglucagon].

The correspondence schemes for the amino acid sequence families from different animal species for two superfamilies of protein-peptide hormones and their precursors, i.e., proinsulin-IGF-prorelaxin and proglucagon-pro (PHM-VIP)-prosomatocrinin, were constructed. These schemes were used for the local intra- and interfamilial comparison of the sequences; the average profiles of hypothetical secondary structure of individual sites of these sequences according to Chow and Fasman were obtained, and the profiles of their physico-chemical properties (e. g., hydrophobicity and volume of side amino acid radicals) were computed. An analysis of the profiles obtained demonstrated that despite the apparent similarity of the tertiary structure of IGF and relaxin, on the one hand, and of insulin, on the other, the latter is devoid of the insulin-like receptor (effector) site, whereas in the case of IGF, this site is modified by additional links of the peptide chain. Based on the reciprocal comparison of prosomatocrinin with proglucagon and pro (PHM-VIP), it was assumed that the C-terminal fragment of prosomatocrinin separated from somatocrinin by a single arginine residue is a second glucagon-like peptide in the precursor molecule, which apparently possesses a biological activity.

Amino Acid Sequence↗

Molecular analysis of evolutionary changes in the expression of Drosophila esterases.

Drosophila melanogaster transformed with the esterase 5 (Est-5) gene from Drosophila pseudoobscura were used to assess the evolutionary basis for differences in the sex- and tissue-specific expression of the esterase 5 (EST 5) enzyme in D. pseudoobscura relative to its homologue in D. melanogaster, EST 6. EST 5 is expressed in the eyes and hemolymph of transformed D. melanogaster just as it is in D. pseudoobscura, but it is not detectable in the ejaculatory duct, where the homologous enzyme, EST 6, is most abundant. EST 5 also occurs at equal levels in both sexes of the transformants and D. pseudoobscura, whereas EST 6 is more abundant in male than in female D. melanogaster. Northern analysis of transformed and untransformed flies indicates that the expression patterns of EST 5 and EST 6 are controlled at the level of transcription and suggests that regulatory differences between Est-6 and Est-5 have evolved mainly through cis-acting regulatory changes in the two loci rather than through alterations in trans-acting factors. Equal expression of EST 5 in male and female transformants also indicates that the X-chromosome-linked Est-5 gene of D. pseudoobscura, when isolated as a 4.5-kilobase restriction fragment, is not dosage compensated after integration into an autosome of D. melanogaster.

Animals↗

[Evolutionary physiological analysis of body reactions to oxygen exposure under increase pressure].

In experiments on adult animals (rabbit, cat, dog), it has been found that changes during the initial stages of the effect of high oxygen pressure include: stabilization of the main rhythm of the EEG, inhibition of spindle-like activity and onset (or the increase) of interhemispheral asymmetry of the electrocorticogram, the increase of the amplitude of positive wave of primary response and slow negative wave of the evoked potential of the brain cortex, as well as the increase in the threshold level of inhibition of respiration in response to electrical stimulation of the cranial end of the vagal nerve and the increase in the stability of respiration and cardiac activity. These changes are similar to those which take place in the course of progressive evolution of functions of the central nervous system, respiratory and cardio-vascular systems in onto- and phylogenesis. On the basis of this parallelism, it is concluded that the initial (pre-toxic) effect of hyperoxia results in the increase of the activity of evolutionary younger functional systems of the brain. During the continuous effect of hyperoxia, oxygen intoxication of the organism takes place, which include particularly dissolution phenomena in the activity of the brain. These phenomena are most evident during the development of pre-seizure and seizure periods.

Animals↗

Seroprevalence of hepatitis C virus infection and its genotype in Lanzhou, western China.

The seroprevalence of hepatitis C virus (HCV) infection in Lanzhou, Western China was studied. HCV genotypes in 20 patients with HCV infection was determined by genotype-specific primer for polymerase chain reaction (PCR) based on HCV core region and compared with the genotype assigned by sequence comparison and molecular evolutionary analysis based on the same region. Antibody to HCV (anti-HCV) was present in 2.5% of volunteer blood donors and in 35.0% of paid blood donors (P < 0.01). HCV infection is uncommon in patients with liver disease who attended liver clinics in this locality; 4.0% with acute hepatitis and 4.0% with chronic hepatitis, 10.0% with liver cirrhosis, and none with hepatocellular carcinoma were seropositive for anti-HCV. Genotype 1b and 2a were both found to be prevalent. Together, they accounted for 19 of 20 (95%) patients with HCV infection. Sequencing of the HCV core region from two patients showed that the assignment of HCV genotype by genotype-specific primers for PCR matched well with the genotyping results based on sequence comparison and molecular evolutionary analysis. These data showed that HCV is present in Western China, HCV infection is more common in paid blood donors, and HCV genotypes 1b and 2a are both prevalent in Western China.

Amino Acid Sequence↗