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Multiple control of flagellum biosynthesis in Escherichia coli: role of H-NS protein and the cyclic AMP-catabolite activator protein complex in transcription of the flhDC master operon.

Little is known about the molecular mechanism by which histone-like nucleoid-structuring (H-NS) protein and cyclic AMP-catabolite activator protein (CAP) complex control bacterial motility. In the present paper, we show that crp and hns mutants are nonmotile due to a complete lack of flagellin accumulation. This results from a reduced expression in vivo of fliA and fliC, which encode the specific flagellar sigma factor and flagellin, respectively. Overexpression of the flhDC master operon restored, at least in part, motility in crp and hns mutant strains, suggesting that this operon is the main target for both regulators. Binding of H-NS and CAP to the regulatory region of the master operon was demonstrated by gel retardation experiments, and their DNA binding sites were identified by DNase I footprinting assays. In vitro transcription experiments showed that CAP activates flhDC expression while H-NS represses it. In agreement with this observation, the activity of a transcriptional fusion carrying the flhDC promoter was decreased in the crp strain and increased in the hns mutant. In contrast, the activity of a transcriptional fusion encompassing the entire flhDC regulatory region extending to the ATG translational start codon was strongly reduced in both hns and crp mutants. These results suggest that the region downstream of the +1 transcriptional start site plays a crucial role in the positive control by H-NS of flagellum biosynthesis in vivo. Finally, the lack of complementation of the nonmotile phenotype in a crp mutant by activation-deficient CAP mutated proteins and characterization of cfs, a mutation resulting in a CAP-independent motility behavior, demonstrate that CAP activates flhDC transcription by binding to its promoter and interacting with RNA polymerase.

Bacterial Proteins↗

The Ayerst Award Lecture 1976. Novel factors in protein biosynthesis.

Comparison of nucleotide sequences surrounding the initiation sites of a number of mRNAs reveals few common features. These may be the presence of in- or out-of-phase nonsense codons and (or) polypurine bases complementary to the 16S RNA of the 30S subunit of ribosomes. Since the bases which precede or follow an initiation site vary in length and composition we have examined whether they play a role as spacers between cistrons or whether they have an active function in the termination and initiation of translation. In vitro we have observed that some sequences 5' terminal to AUG are preferred over others in forming an initiation complex. The same bases have much less effect when present at the 3' terminal end of an AUG codon. When the 5' terminal codon is the termination codon UAA, absolutely no initiation complex can be detected. This suggests that spacing may be needed between a stop and a start codon. Conversely, the hexamer AUGUAA failed to elicit chain termination. This was so in systems that terminated when free UAA was added or when a sense triplet was present between the initiation and termination triplets. These results suggest that ribosomes may recognize the stop triplet. Hence ribosomes may not obey simple A and P site models in the termination reaction.

Coliphages↗

Mechanism of translation of the bicistronic mRNA encoding human papillomavirus type 16 E6-E7 genes.

The transforming genes E6 and E7 of human papillomavirus (HPV) type 16 and other HPV types are expressed from a bicistronic mRNA with a characteristic spacing of 3 to 6 bp between the termination codon of E6 and the initiation codon of E7. Plasmid pSP64E6E7 which contains the reading frames of both E6 and E7 was constructed in order to study the expression of both proteins in a coupled transcription/rabbit reticulocyte translation system. Both E6 and E7 proteins were expressed simultaneously. This translation could be interfered with by antisense oligonucleotides corresponding to various regions of the transcript. Antisense oligonucleotides targeted at sequences flanking either side of the translation initiation codon of the E6 open reading frame were effective in inhibiting the synthesis of both proteins, whereas oligonucleotides complementary to the coding regions downstream of the first start codon showed either a considerably reduced effect or none at all. In particular, there was limited inhibition of E7 translation by antisense oligonucleotides flanking the translation start region of the E7 gene. In the presence of RNase H, it was possible to selectively inhibit the synthesis of either E6 or E7 by several gene-internal antisense oligonucleotides. We conclude that HPV16 E6-E7 bicistronic mRNA is fully functional and that both proteins are translated with equal efficiency via the scanning mechanisms with reinitiation at the second open reading frame. In addition, both AE6 and AE7 may have therapeutical potential as they are capable of inhibiting the proliferation of CaSki cells which contain the HPV16 genome.

Amino Acid Sequence↗

Regulation of plasmid virulence gene expression in Salmonella dublin involves an unusual operon structure.

The 80-kb plasmid pSDL2 of Salmonella dublin Lane is essential for lethal systemic infection in experimental mice. A cluster of five plasmid genes, designated spvR, spvA, spvB, spvC, and spvD, is sufficient to express the plasmid-related virulent phenotype. The spvR gene product has recently been identified as a positive regulator of spvB expression in the stationary phase of bacterial growth (F. C. Fang, M. Krause, C. Roudier, J. Fierer, and D. G. Guiney, J. Bacteriol. 173:6783-6789, 1991). In this study, we evaluated the role of SpvR in the transcription of the downstream virulence genes spvABCD. Analysis of mRNA synthesis revealed that SpvR promotes transcription of the downstream spvABCD genes in the stationary growth phase. Transcript mapping of the spv region demonstrated an unusual operon structure involving messages for spvA, spvAB, spvABC, and spvABCD. Quantitative measurement of transcription and of gene expression by use of translational spv-lacZ fusions suggested that SpvA, SpvB, SpvC, and SpvD are produced in decreasing abundance. Primer extension assays identified two transcriptional start sites 70 and 98 bp upstream of the start codon of spvA, but none upstream of spvB, spvC, or spvD. Deletion of a 320-bp EcoRI-ApaI segment that contains both start sites abolished expression of the downstream spvB and spvC genes. Our results establish a central function of SpvR as a positive regulator of the downstream spvABCD genes in the stationary phase of bacterial growth and indicate that the primary mechanism of regulation is by activation of promoters upstream of spvA.

Base Sequence↗

mRNA 5' region sequence incompleteness: a potential source of systematic errors in translation initiation codon assignment in human mRNAs.

The amino acid sequence of gene products is routinely deduced from the nucleotide sequence of the relative cloned cDNA, according to the rules for recognition of start codon (first-AUG rule, optimal sequence context) and the genetic code. From this prediction stem most subsequent types of product analysis, although all standard methods for cDNA cloning are affected by a potential inability to effectively clone the 5' region of mRNA. Revision by bioinformatics and cloning methods of 109 known genes located on human chromosome 21 (HC 21) shows that 60 mRNAs lack any in-frame stop upstream of the first-AUG, and that in five cases (DSCR1, KIAA0184, KIAA0539, SON, and TFF3) the coding region at the 5' end was incompletely characterized in the original descriptions. We describe the respective consequences for genomic annotation, domain and ortholog identification, and functional experiments design. We have also analyzed the sequences of 13,124 human mRNAs (RefSeq databank), discovering that in 6448 cases (49%), an in-frame stop codon is present upstream of the initiation codon, while in the other 6676 mRNAs (51%), identification of additional bases at the mRNA 5' region could well reveal some new upstream in-frame AUG codons in the optimal context. Proportionally to the HC 21 data, about 550 known human genes might thus be affected by this 5' end mRNA artifact.

5' Untranslated Regions↗

Multifocal vulvar intraepithelial neoplasia grade III and multicentric lower genital tract neoplasia is associated with transcriptionally active human papillomavirus.

BACKGROUND: The incidence of vulvar intraepithelial neoplasia Grade III (VIN III) is increasing and is diagnosed at a younger age than previously. VIN III is often multifocal and frequently coexists with multicentric dysplastic lesions in the cervix and vagina. Warty-type VIN III more often has been found to contain human papillomavirus (HPV) DNA than basaloid-type VIN III: The authors performed HPV DNA polymerase chain reaction (PCR) analysis in 48 VIN III biopsies and reverse transcriptase (RT)-PCR in 8 HPV-16 DNA-positive multifocal VIN III biopsies to detect E6/E7 transcripts. METHODS: Human papillomavirus DNA detection and histologic analysis were performed on alternating slides of paraffin embedded biopsies. Polymerase chain reaction was performed with consensus primers, and HPV typing was performed by direct sequencing. Total RNA was isolated from frozen biopsies by centrifuging a guanidinium thiocyanate (GTC) lysate through a cesium chloride (CsCl) cushion. The RT reaction was performed using a 3' primer, located just downstream of the E7 stop codon, and the PCR reaction was performed using the same 3' primer and a 5' primer located just downstream of the E6 start codon. RESULTS: The mean age of the 48 patients was 37.7 years. Eighty-one percent had multifocal VIN III: Sixty-six percent had multicentric neoplasia. Forty-six percent of the biopsies were warty-type, 17% basaloid-type, 35% mixed-type and 2% differentiated-type. Ninety-two percent were HPV-positive and 83% contained HPV-16 DNA. Human papillomavirus DNA was more often present in multifocal VIN III lesions than in unifocal VIN III lesions and also more often in VIN III lesions coexisting with other dysplastic multicentric lesions than in unicentric VIN III lesions. Warty-type VIN III more often contained koilocytes than basaloid-type VIN III: A correlation between different morphologic forms of VIN III and the presence of HPV DNA was not found. Both types of VIN III often coexist in one lesion. In all the RT-PCRs, a 593-base-pair fragment was detected, corresponding to the expected length of the major E6*-E7 mRNA. CONCLUSIONS: The observed high prevalence of transcriptionally active HPV DNA associated with multifocal and multicentric dysplasia suggests a role of HPV in the pathogenesis of these lesions. A positive correlation between different morphologic forms of VIN III and the presence of HPV DNA was not found.

Adult↗

Nucleotide sequence of the promoter region of the xylDEGF operon on TOL plasmid of Pseudomonas putida.

The transcription initiation site of the xylDEGF operon on the TOL plasmid of Pseudomonas putida mt-2 was determined in P. putida and in Escherichia coli by S1 nuclease and reverse transcriptase mapping. The induced synthesis of mRNA started at the same start point in both P. putida and E. coli, although the amount of mRNA in E. coli cells was less than that in P. putida. The nucleotide sequence of the region surrounding the start point was also determined. The ribosome-binding site (RBS) complementary to the 3' end of the 16S rRNA of Pseudomonas aeruginosa and E. coli preceded the predicted start codon for the xylD gene. The consensus nucleotide sequence for E. coli promoters was not found in the region preceding the transcription start point. On the other hand, the sequences of the "-10" and the "-35" regions of the xylDEGF operon revealed some homology with the respective, previously determined sequences of the xylABC operon of the TOL plasmid.

Base Sequence↗

Sequence and transcriptional analysis of groES and groEL genes from the thermophilic bacterium Clostridium thermocellum.

The groESL operon from Clostridium thermocellum (Ct) has been isolated and sequenced, revealing two ORFs of 285 and 1626 nt, separated by 48 nt. The first ORF encoded a 94-aa 10.6-kDa GroES homologue; the second encoded a 541-aa polypeptide of 57.6 kDa, that exhibited 61% and 77% sequence identity with GroEL from Escherichia coli (Ec) and Clostridium acetobutylicum (Ca), respectively. A putative tsp, preceded by -10 and -35 consensus promoters, was identified upstream of groES. This was followed by an inverted repeat observed previously in bacterial heat shock genes. A 15-nt palindrome characteristic of a Rho-independent transcription terminator, was located downstream of groEL. The first nt of the groES translational start codon was preceded (7 nt) by a putative RBS (AGGAGG); a second RBS sequence was located 8 nt upstream of the groEL start. Production of GroE homologues by Ct was constitutive, but was enhanced significantly during a temperature upshift from 60 degrees C to 70 degrees C. The Ct GroEL, expressed in Ec as a fusion protein with GST, was purified, free of contaminating Ec GroEL.

Blotting, Northern↗

Translation of a synthetic two-cistron mRNA in Escherichia coli.

A synthetic two-cistron expression system was constructed for the high-level expression of eukaryotic genes in Escherichia coli. This system was designed to overcome translational inhibition of mRNAs containing eukaryotic sequences. The first cistron in this system is a 31-base A + T-rich synthetic sequence that provides for efficient translation initiation. The second cistron contains the protein coding sequence for the eukaryotic gene. Insertion of the first cistron between the 5' untranslated region of the mRNA and the protein coding region separates the two and thereby potentially minimizes the formation of local secondary structures that might prevent ribosomes from binding and initiating translation. The 31-base cistron contains three nonsense codons (TAA), one in each of the three translational reading frames, and an 8-base Shine-Dalgarno sequence that is complementary to the 3' end of the 16S rRNA. The effects of translation of the first cistron in all three reading frames on the expression of the second cistron was examined. The most efficient expression of the second cistron seemed to occur when the stop codon that terminates translation of the first cistron is located 3' to the Shine-Dalgarno sequence and close to the AUG start codon for the second cistron. When the Shine-Dalgarno sequence was deleted from the first cistron, no detectable expression of the second cistron was observed. This two-cistron system has been used to express the gene encoding methionylalanyl bovine growth hormone with its native codons and the gene encoding methionyl human growth hormone at a level greater than 20% of total cell protein. In the case of human growth hormone, we show that the amount of gene product is not significantly diminished by placing a "functional" first cistron in front of a gene that can be expressed without a cistron.

Animals↗

Translation initiation start prediction in human cDNAs with high accuracy.

MOTIVATION: Correct identification of the Translation Initiation Start (TIS) in cDNA sequences is an important issue for genome annotation. The aim of this work is to improve upon current methods and provide a performance guaranteed prediction. METHODS: This is achieved by using two modules, one sensitive to the conserved motif and the other sensitive to the coding/non-coding potential around the start codon. Both modules are based on Artificial Neural Networks (ANNs). By applying the simplified method of the ribosome scanning model, the algorithm starts a linear search at the beginning of the coding ORF and stops once the combination of the two modules predicts a positive score. RESULTS: According to the results of the test group, 94% of the TIS were correctly predicted. A confident decision is obtained through the use of the Las Vegas algorithm idea. The incorporation of this algorithm leads to a highly accurate recognition of the TIS in human cDNAs for 60% of the cases. AVAILABILITY: The program is available upon request from the author.

Algorithms↗

Differential regulation by iron of regA and toxA transcript accumulation in Pseudomonas aeruginosa.

Iron regulation of toxA and regA transcript accumulation was examined in Pseudomonas aeruginosa PA103 containing the regA gene on a multicopy plasmid. The patterns of transcript accumulation for toxA and regA were found to be positively correlated. Dot blot and Northern (RNA) blot analysis of total RNA isolated throughout the bacterial growth cycle indicated that multiple copies of the regA gene uncoupled iron repression of the first phase of transcript accumulation for both regA and toxA genes. However, regulation by iron of the second phase of transcript accumulation for each gene was unaffected by several regA gene copies. Total toxin production was increased in cells with multiple copies of regA grown in either low- or high-iron medium. Primer extension analysis of regA mRNA extracted from cells grown in high- and low-iron medium and examined at different points in the cell growth cycle supported the hypothesis that iron regulation of regA transcription occurs at the level of transcriptional initiation. Two start sites were shown for regA transcription at -164 and -75 base pairs from the ATG start codon. The differential regulation of regA transcript accumulation when regA is present in single or multiple copy and the mapping of independent start sites for regA mRNA support the evidence that regA transcription is directed by independently regulated promoter regions.

ADP Ribose Transferases↗

The retinoblastoma susceptibility gene product: a characteristic pattern in normal cells and abnormal expression in malignant cells.

Immunoprecipitation and Western immunoblotting studies were undertaken using purified high-affinity antibodies against a synthetic peptide corresponding to a portion of the deduced retinoblastoma (RB) protein. On SDS-PAGE, normal human cells showed an RB protein pattern consisting of a lower sharp band with a Mr of 110 kD and a more variable region above this band with a Mr ranging from 110 kD to 116 kD. The 110 kD band represents the unphosphorylated Rb protein whereas the broader, less well defined region is the phosphorylated RB protein in which molecular mass heterogenicity results from varying amount of phosphorylation. This pattern repeats once at a lower Mr in which a 98 kD band and 98-104 kD variable region can be visualized. This latter conformation seems to represent the unphosphorylated and phosphorylated RB protein translated from the second AUG codon of the RB mRNA. Cellular RB mRNA extracted from normal fibroblasts was translated in vitro reinforcing the usage of this second start codon. A higher ratio of phosphorylated to unphosphorylated Rb protein was seen in cells growing in log phase compared to those arrested in G1 phase. Our present studies also detected two candidates for RB-associated cellular proteins with a Mr of 124 kD and 55 kD respectively. In addition, shortened versions of RB-isoantigenic proteins were found in retinoblastoma and osteosarcoma cell lines.

Antibodies, Neoplasm↗

Expression of a chimeric uidA gene indicates that polycistronic mRNAs are efficiently translated in tobacco plastids.

Polycistronic mRNAs are the predominant form of plastid primary transcripts. To determine if there is internal initiation of translation of promoter-distal open reading frames, a promoterless uidA reporter gene was integrated into the tobacco plastid genome downstream of the rbcL gene. Monocistronic uidA mRNA does not accumulate from the promoterless uidA construct. However, due to inefficient rbcL transcription termination, a polycistronic transcription unit is created that contains the uidA gene as the second cistron. Numerous stop codons in all three reading frames between the rbcL and uidA coding regions ensure that translation of uidA initiates only from the correct start codon. The encoded reporter gene product, beta-glucuronidase (GUS) accumulates to high levels in the transplastomic plants indicating that promoter-distal cistrons can be efficiently translated in plastids.

Base Sequence↗

Structures and co-regulated expression of the genes encoding mouse cytosolic chaperonin CCT subunits.

The chaperonin-containing TCP-1 (CCT) is a hetero-oligomeric molecular chaperone that mediates protein folding in the cytosol of eukaryotes. Eight (or nine in testis) subunit species are assembled in the CCT hexadecamer complex. We have cloned seven CCT subunit genes, Cctb, Cctd, Ccte, Cctz-1, Cctz-2 (testis specific), Ccth and Cctq, from mouse genomic DNA libraries, in addition to the Ccta and Cctg genes reported previously, and the entire nucleotide sequences of these DNA clones were determined. These genes are approximately 15-20 kb in length except for Cctz-2 which is longer than 35 kb, and all the Cct genes consist of 11-16 exons. Primer extension analyses of testis RNA indicate one to several potential transcription start sites 50-150 bp upstream from the translation start codon of each Cct gene. There are several possible Sp1-binding sequences, but no obvious TATA box was observed around the potential start sites. From 5'-flanking regions to the first introns, the Cct genes are rich in CpG dinucleotides. In reporter gene assays using these regions, five of eight Cct genes showed strong transcriptional activity comparable with the combination of SV40 promoter and enhancer in HeLa cells. We also show, by Western and Northern blot analyses, that CCT expression levels vary widely among different tissues but the expression patterns are very similar among the eight subunit species. It is likely that expression levels of the eight different subunits are tightly co-regulated to maintain a constant ratio of these subunits which constitute the CCT hexadecamer complex with a fixed subunit arrangement.

Amino Acid Sequence↗

Chromosomal organization and nucleotide sequence of the fus-gene encoding elongation factor 2 (EF-2) of the hyperthermophilic archaeum Pyrococcus woesei.

A Pyrococcus woesei EcoRI DNA fragment (3400 bp) harbouring the gene fus for elongation factor 2 (EF-2) was cloned and almost completely sequenced. Unlike Methanococcus vannielii (which displays the 'str operon'-like fus and tuf gene context, 5'-rps12-rps7-fus-tuf-3'), and similar to Sulfolobus acidocaldarius and Desulfurococcus mobilis, the Pyrococcus fus gene (732 codons) is unlinked to the rps and tuf genes, and is immediately followed (57 bp intergenic spacing) by an ORF of 106 codons. Both ORFs are preceded by potential archaeal promoters located 52 bp (for fus) and 37 bp (for ORF106) upstream of the putative start codons. The Pyrococcus EF-2(G) equivalent factor is somewhat closer to the eukaryal than to the bacterial homolog, and also shares with the former the C-terminal sequence required for ADP ribosylation of EF-2 by Diphtheria toxin.

Amino Acid Sequence↗

Expression of the repA1 gene of IncFII plasmid NR1 is translationally coupled to expression of an overlapping leader peptide.

Examination of a group of mutants of plasmid NR1 that had lost the expression of IncFII plasmid incompatibility (Inc-) revealed a group that had also lost replication proficiency (Rep-). These mutants were obtained from plasmids in which the NR1 replication control region was present in a cointegrate with plasmid pBR322. Whereas the wild-type parental cointegrate plasmid was capable of replicating in a polA host owing to the PolA independence of NR1 replication, the mutants were not able to transform a polA host. Losses of both expression of IncFII plasmid incompatibility and replication proficiency were found to result from the same single base-pair substitution in four independently isolated Inc- Rep- mutants. The mutation inactivates promoter PE for the transcription of RNA-E, a trans-acting repressor of translation of the essential RepA1 replication initiation protein of NR1. Although the loss of RNA-E synthesis had been expected to increase the expression of repA1, the efficiency of translation of repA1 mRNA from these mutants was at least 100-fold lower than that from the wild type, as revealed by repA1-lacZ translational fusions. The PE mutation introduced a stop codon into a 24-amino-acid reading frame that precedes the repA1 gene and terminates just 2 bp downstream from the repA1 start codon. This putative leader peptide was also expressed in a lacZ translational fusion, and its expression was reduced by a factor of 10(4) by the PE mutation. The expression of the leader peptide and the expression of repA1 were regulated by RNA-E. These results suggest that the expression of repA1 is coupled to the translation of the leader peptide and that the repression of repA1 translation by RNA-E may occur via inhibition of the translation of the leader peptide.

Amino Acid Sequence↗

Regulation of expression of the adhE gene, encoding ethanol oxidoreductase in Escherichia coli: transcription from a downstream promoter and regulation by fnr and RpoS.

The adhE gene of Escherichia coli, located at min 27 on the chromosome, encodes the bifunctional NAD-linked oxidoreductase responsible for the conversion of acetyl-coenzyme A to ethanol during fermentative growth. The expression of adhE is dependent on both transcriptional and posttranscriptional controls and is about 10-fold higher during anaerobic than during aerobic growth. Two putative transcriptional start sites have been reported: one at position -292 and the other at -188 from the translational start codon ATG. In this study we show, by using several different transcriptional and translational fusions to the lacZ gene, that both putative transcriptional start sites can be functional and each site can be redox regulated. Although both start sites are NarL repressible in the presence of nitrate, Fnr activates only the -188 start site and Fis is required for the transcription of only the -292 start site. In addition, it was discovered that RpoS activates adhE transcription at both start sites. Under all experimental conditions tested, however, only the upstream start site is active. Available evidence indicates that under those conditions, the upstream promoter region acts as a silencer of the downstream transcriptional start site. Translation of the mRNA starting at -292, but not the one starting at -188, requires RNase III. The results support the previously postulated ribosomal binding site (RBS) occlusion model, according to which RNase III cleavage is required to release the RBS from a stem-loop structure in the long transcript.

Alcohol Dehydrogenase↗

BAN103, a pollen-preferential gene, from Chinese cabbage and its promoter activity.

We isolated and characterized a pollen-preferential gene, BAN103, from Chinese cabbage and analyzed the activity of its promoter. The BAN103 cDNA and genomic clone that contained the full-length gene were sequenced. The BAN103 gene is a single copy in the Chinese cabbage genome, and divided into three exons by two introns. The deduced sequence of 68 amino acids showed a homology with the Brassica oleracea pollen coat protein, as well as several cold-induced proteins. BAN103 transcription was restricted in anthers, but not in pistils, sepals, or non-reproductive tissues. Its transcription is also regulated developmentally. It was first detected after microspore releasing; it increased until the pollen matured. The BAN103 gene promoter was fused with a GUS structural gene. This recombinant plasmid was transformed to Chinese cabbage and tobacco. The GUS expression was detected pollen-preferentially in transgenic tobacco plants. The pollen-preferential activity of this promoter was retained within 176 bp from the translation start codon. The GUS transcription and translation were not coincident in transgenic tobacco pollen. GUS transcripts appeared just after microspore release, and that translation started as the pollen began to dry in mature anthers.

Base Sequence↗