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The "+70 pause": hypothesis of a translational control of membrane protein assembly.

Sequences of 66 genes encoding bacterial or yeast membrane proteins have been examined for the respective positioning of putative transmembrane domains and translational pauses. The latter were operationally defined as clusters of at least 17 non-preferred codons along the mRNA. The putative transmembrane domains were defined as stretches of at least 17 hydrophobic amino acids in the encoded protein. For yeast non-mitochondrial membrane proteins, it was observed that clusters of non-preferred codons occur more frequently about 56 to 75 codons after a hydrophobic stretch in the encoded protein. About 40 amino acid residues are required to span the large ribosomal subunit. Such clusters were thus predicted to cause a severe slow-down in peptide elongation, just when the hydrophobic stretch fully protrudes from the ribosome. This transient slow-down of the ribosome pace has consequently been named the "+70 pause". This pause was not observed for mitochondrial or bacterial membrane proteins, which are thought to insert post-translationally in their respective membranes. Because insertion of yeast proteins in the endoplasmic reticulum membrane is generally cotranslational instead, it is possible that the "+70 pause" reflects the coupling of translation, targeting, insertion and folding in this case. The pause may, for instance, give time for productive interaction of the newly synthesized hydrophobic domain with the proper targeting/insertion machineries. Thus, it would favor entrance of the stalled protein domain into the proper pathway.

Codon↗

Homologous RNA recombination allows efficient introduction of site-specific mutations into the genome of coronavirus MHV-A59 via synthetic co-replicating RNAs.

We describe a novel strategy to site-specifically mutagenize the genome of an RNA virus by exploiting homologous RNA recombination between synthetic defective interfering (DI) RNA and viral RNA. Marker mutations introduced in the DI RNA were replaced by the wild-type residues during replication. More importantly, however, these genetic markers were introduced into the viral genome; even in the absence of positive selection, MHV recombinants were isolated. This finding provides new prospects for the study of coronavirus replication using recombinant DNA techniques. As a first application, we describe the rescue of the temperature sensitive mutant MHV Albany-4 using DI-directed mutagenesis. Possibilities and limitations of this strategy are discussed.

Base Sequence↗

Analysis of Pteridium ribosomal RNA sequences by rapid direct sequencing.

A total of 864 bases from 5 regions interspersed in the 18S and 26S rRNA molecules from various clones of Pteridium covering the general geographical distribution of the genus was analysed using a rapid rRNA sequencing technique. No base difference has been detected amongst the three major lineages, two of which apparently separated before the breakup of the ancient supercontinent, Pangaea. These regions of the rRNA sequences have thus been conserved for at least 160 million years and are here compared with other eukaryotic, especially plant rRNAs.

Biological Evolution↗

The phylogenetic positions of the conifer genera Amentotaxus Phyllocladus, and Nageia inferred from 18S rRNA sequences.

To determine the evolutionary positions of the conifer genera Amentotaxus, Phyllocladus, and Nageia, we obtained 18S rRNA sequences from 11 new taxa representing the major living orders and families of gymnosperms. With the published Chlamydomonas as an outgroup, phylogenetic analyses of our new data and available sequences indicate that (1) the Gnetales form a monophyletic group, which is an outgroup to the conifers, (2) the conifers are monophyletic, (3) Taxaceae, Cephalotaxaceae, Cupressaceae, and Taxodiaceae form a monophyletic group, (4) Amentotaxus is closer to Torreya than to Cephalotaxus, suggesting that Amentotaxus is better to be classified as a member of Taxaceae, (5) Phyllocladus, Dacrycarpus, Podocarpus, and Nageia form a monophyletic group, and (6) Pinaceae is an out-group to the other families of conifers. Our finding that Phyllocladus is a sister group of the Podocarpaceae disagrees with the suggestion that the phylloclade of the genus is an ancient structure and that the genus is a terminal taxon within the Podocarpaceae. The genus Nageia is more closely related to Podocarpus than to Dacrycarpus and was derived from within the Podocarpaceae. In conclusion, our data indicate that in conifers, the uniovulate cone occurred independently in Taxacaeae and Cephalotaxaceae, and in Podocarpaceae after the three families separated from Pinaceae, and support the hypothesis that the uniovulate cone is derived from reduction of a multiovulate cone.

DNA, Complementary↗

Investigation of the origin of variant, truncated estrogen receptor-like mRNAs identified in some human breast cancer biopsy samples.

Variant, smaller sized, estrogen receptor-like mRNAs have been previously cloned and sequenced from human breast cancer biopsy samples. In this study we have found that one variant estrogen receptor-like mRNA, clone 24, which is expressed in only one tumor, consists of sequences from the normal ER gene which is found on chromosome 6 and sequences unrelated to the ER which are found normally on chromosome 12. A more commonly occurring variant estrogen receptor-like mRNA, clone 4, contains sequences from the normal ER gene and LINE-1 sequences. Similar but not identical LINE-1 sequences have been found in some of the intervening sequences of the normal ER gene. The generation of these transcripts may involve either alternative splicing or trans-splicing mechanisms.

Animals↗

Sequence variation in 5' termini of rubella virus genomes: changes affecting structure of the 5' proximal stem-loop.

Variation within a 523 nucleotide region proximal to the 5' terminus of seven rubella virus strains has been analysed. Compared to the Therien strain twenty sites of nucleotide variation have been identified, three of which are in the 5' untranslated region. Individual strains have between three and nine nucleotide differences, only three of which result in amino acid substitutions. TO-336 has a serine for threonine at amino acid (aa) 42 and CM arginine for histidine at aa 159. RA27/3 has arginine for lysine at aa 3 and serine for threonine at aa 42. Nucleotide differences which affect a stem-loop structure reported to be important for binding of host cell proteins have been identified.

Amino Acid Substitution↗

Phylogenetic origins of the plant mitochondrion based on a comparative analysis of 5S ribosomal RNA sequences.

The complete nucleotide sequences of 5S ribosomal RNAs from Rhodocyclus gelatinosa, Rhodobacter sphaeroides, and Pseudomonas cepacia were determined. Comparisons of these 5S RNA sequences show that rather than being phylogenetically related to one another, the two photosynthetic bacterial 5S RNA sequences show that rather than being phylogenetically related to one another, the two photosynthetic bacterial 5S RNAs share more sequence and signature homology with the RNAs of two nonphotosynthetic strains. Rhodobacter sphaeroides is specifically related to Paracoccus denitrificans and Rc. gelatinosa is related to Ps. cepacia. These results support earlier 16S ribosomal RNA studies and add two important groups to the 5S RNA data base. Unique 5S RNA structural features previously found in P. denitrificans are present also in the 5S RNA of Rb. sphaeroides; these provide the basis for subdivisional signatures. The immediate consequence of our obtaining these new sequences is that we are able to clarify the phylogenetic origins of the plant mitochondrion. In particular, we find a close phylogenetic relationship between the plant mitochondria and members of the alpha subdivision of the purple photosynthetic bacteria, namely, Rb. sphaeroides, P. denitrificans, and Rhodospirillum rubrum.

Base Sequence↗

Oligonucleotide probes in infectious bronchitis virus diagnosis and strain identification.

Genomic RNA fingerprints of infectious bronchitis virus (IBV) strains M41 and Conn46 were prepared to identify T1 RNase-resistant oligonucleotides 'unique' to each of the two IBV strains. Such oligonucleotides were subsequently eluted from the gels and their nucleotide sequences determined. When oligonucleotide probes of those sequences were synthesized and used in a dot-blot hybridization assay, the probes lacked IBV strain-specificity and reacted with the RNAs of homologous as well as heterologous IBV strains. Based on these results, the methods used in this study need to be applied to a large number of oligonucleotide probes, to find one or a few that might be suitable as IBV strain- or serotype-specific oligonucleotide probes.

Animals↗

Phylogenetic conservation of modified nucleotides in the terminal loop 1 of the spliceosomal U5 snRNA.

In order to study the phylogenetic conservation of modified nucleotides in the spliceosomal U5 snRNA, we determined the nucleotide sequences of the U5 snRNAs from the slime mold Physarum polycephalum (EMBL data bank accession numbers: X74440 and X74441) and we identified the pseudouridine and 2'-O-methylated residues. From a comparison of all the U5 snRNAs studied at the level of nucleotide modifications, we concluded that the modified nucleotides in U5 snRNA can be divided into three classes according to their degree of conservation: i) the modified nucleotides of the 5' terminal cap structure that display some variations from one species to the other; ii) the modified nucleotides located in the helical part of the stem/loop structure I that vary greatly in number, position and identity from one species to the other; and iii) the modified nucleotides of the terminal loop 1, that are almost identical in all the species studied. Taking into account the recent discovery of a crucial role played by this terminal loop of U5 snRNA in 5' and 3' splice site definition, we postulate that the numerous modified nucleotides it contains, five out of a total of 11, play an important role in spliceosome assembly and function. Their possible role is discussed.

Animals↗

Enzymes in high-throughput RNA sequencing: Applications and challenges.

High-throughput RNA sequencing provides genome-wide information on the dynamics of RNA in each cell and how the dynamics responds to environmental changes. Next-generation sequencing by the Illumina platform currently provides the highest information output as compared to other platforms. A key component of next generation sequencing of each RNA is the successful end-to-end reverse-transcription into a cDNA strand. This can be highly challenging given the propensity of each RNA to adopt ordered structures and to contain post-transcriptional modifications. While many reverse transcriptase (RT) enzymes have been developed over the years to maximize read-through of an RNA, their processivity and efficiency varies, raising the question of how to select the RT for the experiment at hand. Here, we use tRNA as a model for genome-wide sequencing, as tRNA has a stable secondary and tertiary structure and has a high density and wide variety of post-transcriptional modifications, presenting one of the most challenging problems of sequencing RNA. We compare the efficiency of end-to-end cDNA synthesis of tRNA among several recent RT enzymes and provide a general sequencing workflow that is applicable to most of these enzymes.

High-Throughput Nucleotide Sequencing↗

Designing effective siRNAs with off-target control.

Successful gene silencing by RNA interference requires a potent and specific depletion of the target mRNA. Target candidates must be chosen so that their corresponding short interfering RNAs are likely to be effective against that target and unlikely to accidentally silence other transcripts due to sequence similarity. We show that both effective and unique targets exist in mouse, fruit fly, and worm, and present a new design tool that enables users to make the trade-off between efficacy and uniqueness. The tool lists all targets with partial sequence similarity to the primary target to highlight candidates for negative controls.

Algorithms↗

Computational analyses show A-to-G mutations correlate with nascent mRNA hairpins at somatic hypermutation hotspots.

Activation-induced cytidine deaminase (AID) initiates Phase I somatic hypermutation (SHM) of antibody genes by deaminating deoxy-cytosine to deoxy-uracil (C-to-U). These lesions trigger Phase II, a poorly understood process of error-prone repair targeting A-T pairs by DNA polymerase eta (Pol eta). Since Pol eta is also a reverse transcriptase, Phase II could involve copying off RNA as well as DNA templates. We explore this idea further since in an RNA-based pathway it is conceivable that adenosine-to-inosine (A-to-I) RNA editing causes A-to-G transitions since I like G pairs with C. Adenosine deaminases (ADARs) are known to preferentially edit A nucleotides that are preceded by an A or U (W) in double-stranded RNA substrates. On this assumption and using a theoretical bioinformatics approach we show that a significant and specific correlation (P<0.002) exists between the frequency of WA-to-WG mutations and the number of mRNA hairpins that could potentially form at the mutation site. This implies roles for both RNA editing and reverse transcription during SHM in vivo and suggests definitive genetic experiments targeting the appropriate ADAR1 isoform (gammaINF-ADAR1) and/or Ig pre-mRNA templates.

Computational Biology↗

Quantification of the slug parasitic nematode Phasmarhabditis hermaphrodita from soil samples using real time qPCR.

Phasmarhabditis hermaphrodita is a nematode parasite that infects and kills several species of slugs. The nematode is produced commercially as a biological control agent for slug pests of agriculture and horticulture. Given the difficulties of distinguishing this species from other nematode species in soil samples, very little is known about its natural ecology or its behaviour and persistence following application for biological control. Here we describe a method to quantify P. hermaphrodita in soil samples based on real time PCR. We designed primers and a dual labelled fluorescent probe that can be used to quantify numbers of P. hermaphrodita and which is capable of distinguishing this species from the morphologically identical Phasmarhabditis neopapillosa. We compared different methods whereby the entire nematode community is extracted prior to DNA extraction, and three methods to extract DNA directly from soil samples. Both nematode extraction and DNA extraction from large (10 g) samples of soil gave reliable estimates of nematode numbers, but methods which extracted DNA from small (1g or less) soil samples substantially underestimated numbers. However, direct extraction of DNA from soils may overestimate numbers of live nematodes as DNA from dead nematodes was found to persist in soil for at least 6 days. The technique could be modified for detection and quantification of all soil borne parasitic nematodes.

Animals↗

Deterioration of building materials in Roman catacombs: the influence of visitors.

In the last decades, damages on building materials and mural paintings were observed in Roman catacombs. The damages were due to extensive formation of biofilms induced by artificial illumination and humidity. Microenvironmental data (temperature, CO(2) concentration, humidity, and atmospheric pressure) clearly showed the negative influence of visitors. Increasing heat, light and water vapour condensation into corridors and cubicles favoured biofilm development. The composition of biofilms was different and depended mainly on distance to illumination sources and humidity, thus denoting the influence of light on the growth of phototrophic microorganisms in the catacombs. In addition, biofilm distribution was governed by the type of material to be colonised. This study shows that countermeasures are needed to prevent deterioration of hypogean environments.

Bacteria↗

Reporting and representation of population descriptors in public RNA-seq databases.

Diverse and globally representative datasets are essential to genomic science and medicine. Here, we analyzed population descriptor metadata from RNA sequencing (RNA-seq) studies in two major public repositories: the Sequence Read Archive (SRA) and the Database of Genotypes and Phenotypes. We examined geographic and economic characteristics of institutions depositing the data and compared SRA-deposited descriptors to empirical estimates of genetic ancestry and to those reported in publications, analyzing trends over time. We found that 55% of RNA-seq samples were deposited by United States (US) institutions and 90% by institutions in high-income countries. Only 3% of SRA samples were associated with population descriptors, and among those with US Census terms, 69% were labeled as White. Among samples with continental descriptors, 56% were labeled as European. Our analyses emphasize widespread bias in the composition of public RNA-seq datasets and, more generally, a lack of consistent and careful reporting of population descriptors needing urgent improvement.

Humans↗

Gene regulation by human orthologs of Drosophila heterochromatin protein 1.

Heterochromatin protein 1 (HP1) functions in gene silencing, transcriptional regulation, and chromatin remodeling. Drosophila HP1 enhances position effect variegation and has also been shown to repress transcription of some euchromatic genes and activate some heterochromatic ones. The purpose of this study was to determine if human orthologs of Drosophila HP1 differentially regulate transcription by identifying genes that are targets for regulation by HP1 family proteins in human cells. Using a gene expression array, we identify several genes regulated by overexpression of the three human HP1 family proteins HP1(Hsalpha), HP1(Hsbeta), and HP1(Hsgamma). We show further that overexpressed HP1(Hsalpha) and HP1(Hsbeta) repress the transcription of four human genes while overexpressed HP1(Hsgamma) enhances transcription of the same genes. These results show that different human HP1 family proteins can potentially repress or activate the same genes.

Amino Acid Sequence↗

Association of Laribacter hongkongensis in community-acquired gastroenteritis with travel and eating fish: a multicentre case-control study.

BACKGROUND: Laribacter hongkongensis has been recovered from several patients with gastroenteritis. However, the causative role of this organism in human gastroenteritis is still unproven, and sources of the bacterium are unknown. We undertook a multicentre case-control study to investigate the association of L hongkongensis with gastroenteritis. METHODS: Faecal samples from patients with community-acquired gastroenteritis and controls were cultured for L hongkongensis. Targeted food surveillance was done to identify potential sources of this bacterium. All isolates of this organism from patients and food items were characterised by pulsed-field gel electrophoresis and ribotyping. FINDINGS: During a 4-month period, L hongkongensis was recovered from 17 of 3788 patients with community-acquired gastroenteritis, but was absent in 1894 controls (p=0.001). Those who were culture-positive for this bacterium had a recent history of travel (ten [59%] patients vs two [6%] of 34 matched controls, p<0.0001), of fish consumption (16 [94%] vs 19 [56%], p=0.009), and of eating minced freshwater fish meat (five [29%] vs one [3%], p=0.012). We recovered 25 L hongkongensis isolates from intestinal samples of freshwater fish and two from minced freshwater fish meat. Bacteria with the same pulsed-field gel electrophoretic pattern and ribotype were recovered from one patient and a sample of minced freshwater fish meat, which was from the same retail market recently visited by the patient. We did not see this particular combination of electrophoretic pattern and ribotype in any other isolates. INTERPRETATION: L hongkongensis is associated with community-acquired gastroenteritis and traveller's diarrhoea. However, its causative role has not been shown. Freshwater fish is one source of this bacterium.

Adult↗