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The hygromycin-resistance-encoding gene as a selection marker for vaccinia virus recombinants.

Hygromycin B (Hy), an inhibitor of RNA translation, was shown to block the replication of vaccinia virus (VV) in cultured cell lines. Insertion of the Escherichia coli Hy resistance-encoding gene (hph) into the VV genome under control of early or late synthetic VV promoters could overcome inhibition of viral replication. When hph was inserted into VV in tandem with the human papillomavirus type 16 (HPV16) L1 open reading frame, hph recombinant viruses could be selected which expressed HPV16 L1.

Base Sequence

Location and characterization of the bovine herpesvirus type 4 thymidine kinase gene; comparison with thymidine kinase genes of other herpesviruses.

The location and nucleotide sequence of the bovine herpesvirus type 4 (BHV-4) thymidine kinase (TK) gene was determined. The coding region of the TK gene is 1335 nucleotides long and corresponds to a polypeptide of 445 amino acids. Comparison of TK amino acid sequences of BHV-4 and 16 herpesvirus TKs reveals a greater homology to those of the gammaherpesviruses EBV and specially HVS, than to those of alphaherpesviruses. The open reading frames detected in the vicinity of TK gene were homologous to the corresponding ones in other herpesviruses.

Amino Acid Sequence

Molecular and functional characterization of the murine glucocerebrosidase gene.

A genomic clone of glucocerebrosidase (D-glucosyl-N-acyl-sphingosine glucohydrolase; E.C. 3.2.1.45) purified from a genomic library derived from a Balb/c mouse was analyzed by restriction mapping and nucleotide sequencing of its promoter and protein coding regions. Promoter activity was functionally assessed by ligation of a 2 kb glucocerebrosidase fragment to the protein coding segment of a bacterial neomycin resistance gene. Smaller segments of the 5' flanking sequence were then analyzed for their ability to initiate transcription of the chloramphenicol acetyltransferase reporter gene. A 319 bp Eco RI-Bgl II fragment (containing 259 bp upstream of the cDNA 5' limit) ligated to the chloramphenicol acetyltransferase open reading frame produced considerable activity.

3T3 Cells

Sequence of the HindIII T fragment of human cytomegalovirus, which encodes a DNA helicase.

The DNA sequence of the HindIII T fragment of human cytomegalovirus strain AD169 has been determined. This 6225 bp sequence has been analysed for transcription signals and probable open reading frames. Similarities with herpes simplex virus, varicella-zoster virus and Epstein-Barr virus genes were observed for three of the predicted open reading frames; a virion protein and a unique DNA helicase are believed to be the functional products of two of these open reading frames. Two other open reading frames are novel in that no homologues could be found, either in the known herpesvirus sequences or in the Protein Identification Resource database. Both of these open reading frames also lie in the genomic coding region of a 5.0 kb RNA which is transcribed throughout the infectious cycle.

Amino Acid Sequence

Structure and expression of a root-specific rice gene.

Two rice cDNA clones (COS6 and COS9) were isolated, corresponding to genes that were highly expressed in roots from seedlings and mature plants. A genomic clone (GOS9) corresponding to cDNA clone COS9 was isolated and the intron/exon structure was determined by comparing the nucleotide sequences of the mRNA and the genomic clone. 5' ends and 3' ends of the mRNA were determined by primer extension and S1-nuclease mapping respectively. The open reading frame present in GOS9 potentially encodes a protein (14 kDa) that does not show any significant homology to other proteins in databases.

Amino Acid Sequence

Variants of the 5'-untranslated sequence of human growth hormone receptor mRNA.

The human growth hormone receptor (GHR) gene was proposed to contain multiple 5'-noncoding exons (Leung et al., 1987). The exact number and structure of these exons are unknown. As a first step in investigating this point more closely, we decided to clone alternative 5'-noncoding sequences of human liver GHR mRNA. The ligation-mediated single-sided polymerase chain reaction (PCR) was applied for selective amplification of 5'-terminal sequences of human liver GHR cDNA. PCR products were cloned and sequenced. Eight different sequence variants diverging in the 5'-untranslated regions beginning 12 base pairs upstream from the initiating ATG codon were found. One variant seems to represent unspliced or partially spliced GHR mRNA. The remaining variants probably correspond to multiple alternatively spliced forms of GHR mRNA. Homologs for three of these variants were found among previously published 5'-noncoding sequences of GHR cDNA obtained from other species by conventional cDNA cloning. Most of the cloned human liver GHR cDNA variants contain one or more ATG preceding the main GHR open reading frame start of translation. Thus, the GHR genes appeared to be a striking example of a very complex transcription unit.

Animals

Sorghum mitochondrial atp6: divergent amino extensions to a conserved core polypeptide.

Sorghum mitochondrial atp6 occurs as one copy in the line Tx398 and as two copies in IS1112C. In IS1112C a repeated sequence diverged within the atp6 open reading frames. The two open reading frames (1137 bp, atp6-1; 1002 bp, atp6-2) share an identical conserved region of 756 bp but are flanked 5' by divergent extensions of 246 (atp6-1) or 381 bp (atp6-2). Tx398 carried only atp6-2. The breakpoint of the repeated sequence of the conserved core region corresponds to the amino acid sequence Ser-Pro-Leu-Asp, which is the amino terminus of the proteolytically processed yeast ATP6. The 5' extensions of atp6-1 and atp6-2 were similar to those of rice and maize, respectively. Each open reading is transcribed, however nuclear background influenced transcriptional patterns of atp6-2 in IS1112C.

Amino Acid Sequence

Sequence, genomic organization of the EcoRI-A fragment of Autographa californica nuclear polyhedrosis virus, and identification of a viral-encoded protein resembling the outer capsid protein VP8 of rotavirus.

We present the sequence and genomic organization of the EcoRI-A fragment of the Autographa californica multicapsid nuclear polyhedrosis virus, which represents 11% of the AcMNPV genome. Fifteen putative open reading frames and their respective amino acid sequences are described. One open reading frame is similar to the VP8 protein of rotavirus.

Amino Acid Sequence

Organization of the agropine synthesis region of the T-DNA of the Ri plasmid from Agrobacterium rhizogenes.

The agropine/mannopine synthesis region of the TR region of the Ri plasmid of Agrobacterium rhizogenes strain A4 was localized on the basis of sequence similarity with probes from Ti plasmids of Agrobacterium tumefaciens and analysis of transposon insertions. The nucleotide sequence of the right part of the TR-DNA of pRiA4, encompassing the three genes involved in mannityl-opine synthesis, was determined and compared to the sequence of the corresponding region of the octopine-type Ti plasmid pTi15955. The organization of this region is strongly conserved between Ri and Ti plasmids, but the similarity is restricted to the coding sequences: no homology was detected in the 5' and 3' flanking sequences. The mas1' and ags proteins are the most conserved, showing more than 68% amino acid conservation, whereas the mas2' proteins are only 59% identical. Significant G/C content and codon usage differences are observed between pTi15955 and pRiA4. An open reading frame strongly similar to that of bacterial repressors is situated immediately to the right of the TR region.

Amino Acid Sequence

Sequence analysis of the gene (6) encoding the major capsid protein (VP6) of group C rotavirus: higher than expected homology to the corresponding protein from group A virus.

Two overlapping c-DNA clones, which hybridized in Northern blots to RNA segment 6 of the prototype strain (Cowden) of group C rotavirus, were selected from a c-DNA library in pBR322 and sequenced. The gene 6 sequence obtained was 1349 nucleotides and contained a single long open reading frame encoding a protein of 394 amino acids (total MW, 44,479) which is in line with the size of the major capsid protein VP6. Comparison of the group C sequence with that of the corresponding group A rotavirus gene revealed homology levels of 55 and 42% for nucleotides and amino acids, respectively. These values were surprisingly high in view of previous immunological and nucleic acid hybridization data which failed to show any cross-reaction between group A and non-group A rotaviruses. The epidemiological implications of these observations are discussed.

Amino Acid Sequence

Structure of germline immunoglobulin heavy-chain gamma 1 transcripts in interleukin 4 treated mouse spleen cells.

Antibody class switching is mediated by a DNA recombination event that replaces the C mu gene with one of the other heavy (H) chain constant region (CH) genes located 3' to the C mu gene. The regulation of this process is essential to the immune response because different CH regions provide different biological functions. Correlative evidence indicates that the isotype (class) specificity of the switch is determined by the accessibility of specific CH genes as indicated by hypomethylation and transcriptional activity. For example, RNAs transcribed from specific unrearranged CH genes are induced prior to switching under conditions that promote subsequent switching to these same CH genes. The function of transcription of these germline CH genes is unknown. In this report, we describe the structure of RNA transcribed from unrearranged gamma 1 genes in mouse spleen cells treated with LPS plus a HeLa cell supernatant containing recombinant interleukin 4. The germline gamma 1 RNA is initiated at multiple start sites 5' to the tandem repeats of the gamma 1 switch (S gamma 1) region. As is true for analogous RNAs transcribed from unrearranged gamma 2b and alpha genes, the germline gamma 1 RNA has an I exon transcribed from the region 5' to S gamma 1 sequences, which is spliced at a unique site to the C gamma gene. The germline gamma 1 RNA has an open-reading frame (ORF) that potentially encodes a small protein 48 amino acid in length.

Amino Acid Sequence

Tandem translation of Bacillus subtilis initiation factor IF2 in E. coli. Over-expression of infBB.su in E. coli and purification of alpha- and beta-forms of IF2B.su.

The protein synthesis initiation factor, IF2, in Bacillus subtilis has previously been characterized as being present in two forms, alpha and beta, of molecular mass 79 and 68 kDa, respectively, on the basis of their cross-reaction with anti-E. coli IF2 antibodies and by the DNA sequence of the gene for IF2, infBB.su. In this work we have cloned infBB.su in E. coli cells. Two proteins of molecular mass identical to the B. subtilis IF2 alpha and -beta were over-expressed and purified using a new three-step ion-exchange chromatography procedure. The N-terminal amino acid sequence of the two proteins was determined and the results confirmed that the two forms were IF2 alpha and -beta, both encoded by the infB gene. The N-terminal amino acid sequence determined for IF2 beta is Met94-Gln-Asn-Asn-Gln-Phe. The presence of methionine at position 94 shows that this form is, in fact, the result of a second translational initiation in infBB.su mRNA, since the codon at amino acid position 94 is GUG, which is the normal codon for valine, but also known to be an initiator codon. This is a new example of the unusual tandem translation in E. coli of an open mRNA reading frame.

Amino Acid Sequence

Nucleotide sequence of the ethidium efflux gene from Escherichia coli.

The nucleotide sequence of the gene specifying the ethidium efflux system of Escherichia coli has been determined. The translated open reading frame has identified a membrane-bound polypeptide of 110 amino acids (11,960 Da) which shares 42% identity with a staphylococcal protein specifying resistance to ethidium.

Amino Acid Sequence

Effects of translocations on transcription from PVT.

We have previously described a transcription unit on human chromosome 8, designated as PVT, that is consistently disrupted by the minority forms of translocations [t(2;8) and t(8;22)] in Burkitt's lymphoma. PVT begins 57 kilobase pairs downstream of the proto-oncogene MYC and is more than 200 kilobase pairs in length. In order to explore the pathogenic impact of translocations affecting PVT, we have characterized further the structure and transcription of the locus. In normal cells, PVT is transcribed into a variety of RNAs, the diversity of which remains unexplained. Alleles of PVT affected by translocations give rise to additional RNAs. These RNAs arise from a fusion of the first exon of PVT on chromosome 8 to the constant region of an immunoglobulin light chain on either chromosome 2 or chromosome 22. We have found no evidence that any of the normal or abnormal transcripts of PVT give rise to a protein. Our results suggest that the pathogenic effects of the variant translocations in Burkitt's lymphoma are not executed by a gene situated in a vicinity of the chromosomal breakpoints. Instead, our data leave open the possibility that the effects of the translocations may be mediated by activation of the relatively distant MYC gene.

Base Sequence

The glgB gene from the thermophile Bacillus caldolyticus encodes a thermolabile branching enzyme.

We have cloned the structural gene for the Bacillus caldolyticus glycogen branching enzyme (glgB) in Escherichia coli. The glgB gene consisted of a 1998 bp open reading frame (ORF) encoding a 78,087 Da protein, which was highly similar to the Bacillus stearothermophilus branching enzyme. The 5' end of a second gene that encoded a protein with extensive similarity to E. coli ADP-glucose pyrophosphorylase (ADPGP) partly overlapped the 3' end of the glgB gene. A putative promoter recognized by Bacillus subtilis RNA polymerase containing the sigma factor H (E-sigma H) preceded the genes. These data suggest that in contrast to the situation observed in B. stearothermophilus, the genes involved in glycogen synthesis in B. caldolyticus are clustered on the chromosome, and are presumably coordinately expressed during the early stages of sporulation. An incomplete third gene started upstream of B. caldolyticus glgB. This gene was highly similar to a gene found directly upstream of B. stearothermophilus glgB, which encodes a putative membrane protein with unknown function. The B. caldolyticus glgB gene was expressed in E. coli and B. subtilis. Surprisingly, the branching enzyme appeared to be thermolabile, the temperature of optimal activity being only 39 degrees C.

1,4-alpha-Glucan Branching Enzyme

Killer system of Kluyveromyces lactis: the open reading frame 10 of the pGK12 plasmid encodes a putative DNA binding protein.

ORF 10 of the K2 plasmid from Kluyveromyces lactis encodes a small basic protein (22.3% lysine). The function of its product has been investigated. Western blot analysis, using an antibody against MS2 RNA polymerase/ORF 10 fusion protein, reveals a protein band with an apparent molecular weight of 14 kDa. The protein can bind a DNA-Sepharose column, and is eluted by 350 mM-salt. Immunoprecipitation experiments show that the ORF 10 protein coprecipitates with the linear genomic DNAs of the two killer plasmids (K1 and K2). From Western/Southern blot data, it is possible to conclude that the interaction between protein and DNA occurs directly, rather than via other protein(s). ORF 10 is easily detected by Western blot and its transcript is one of the most abundant of the K2 plasmid, suggesting that this protein may have a structural rather than a regulatory function. This possibility is also suggested by the observed sequence homology between the ORF 10 protein and the family of histone-like proteins.

Amino Acid Sequence

Effects of uterine position on rate of sexual development in female Mongolian gerbils.

Examination of the rate of sexual maturation of 79 female gerbils from 32 Caesarean-delivered, foster-reared litters revealed that those females that, as fetuses, occupied uterine positions adjacent to one or two males (1M and 2M females) were less likely than those females occupying uterine positions not adjacent to males (0M females) to exhibit early vaginal opening. Our data further indicated that the uterine environment provided by late-maturing female gerbils biased their fetal daughters to themselves be late maturing to a greater extent than the daughters' uterine positions could explain. Daughters of late-maturing females in 1M and 2M uterine locations were more likely to be late-maturing than were daughters of early-maturing females in similar uterine locations. Because in female Mongolian gerbils age at vaginal opening is a powerful predictor of future reproductive strategy, the present results indicate that in female gerbils both prenatal maternal influence and uterine location are important determinants of future reproductive behaviors.

Animals

AUG codons in the RNA leader sequences of the yeast PET genes CBS1 and SCO1 have no influence on translation efficiency.

We report that the major transcription start sites of the yeast PET gene SCO1 are located at positions -149 and -125 relative to the AUG initiation codon of the SCO1 reading frame. The leader sequences of the resulting mRNAs possess a single AUG codon at position -49, which initiates a short open reading frame of three amino acids. The recent finding of a similar situation in the case of the PET gene CBS1 prompted us to address the question as to whether these AUG codons might play some role in the expression of these PET genes. After removal of the upstream AUG codons by site-directed mutagenesis, expression was monitored by use of lacZ fusions and compared to the respective wild-type constructs. Our data show that under all growth conditions tested the leader-contained AUG initiation codons have no significant influence on the expression of both PET genes.

Amino Acid Sequence