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J C Bagshaw

Publications and source records attributed to J C Bagshaw.

At least 19 recordsLinked to original sources

A novel satellite/microsatellite combination in the genome of the marine shrimp, Penaeus vannamei.

In our studies of repeated sequences in the genome of the marine shrimp, Penaeus vannamei (Pv), we have discovered a novel combination of sequence elements. We inserted restriction fragments of genomic DNA into a plasmid vector and screened for recombinant plasmids containing repeated sequences. Ten of the resulting isolates contained representatives of the same repeated element, a satellite sequence present in one or more blocks of tandemly repeated units. The cloned repeat units range in size from 139 to 188 bp. Embedded within each cloned repeat unit are 6-15 copies of a tandemly repeated pentanucleotide microsatellite. The genome of Pv contains approx. 1,000,000 copies of this satellite/microsatellite unit. Sequences that cross-hybridize strongly with this structure were found in the genomes of lobster and crayfish, but not in other species of the genus Penaeus.

Animals↗

Tubulin isoforms in the brine shrimp, Artemia: primary gene products and their posttranslational modification.

The brine shrimp, Artemia, contains 3 alpha- and 2 beta-tubulins as shown by Coomassie Blue staining of two-dimensional gels. In order to study the biosynthetic origins of the isotubulins, we hybridized cloned Drosophila tubulin genes, under stringent conditions, to blots of Artemia DNA and RNA. Southern blot analyses indicate a tubulin gene family of limited complexity. One size class of alpha- and beta-tubulin mRNA at 1800 bases was observed on Northern blots. Fluorograms of Artemia tubulin synthesized in vitro, revealed one alpha- and one beta-tubulin on two-dimensional gels, indicating that each mRNA is translated into one polypeptide and that additional tubulin spots observed on Coomassie-stained two-dimensional gels may arise posttranslationally. Artemia tubulin, which was either purified to homogeneity, or in crude cell-free extracts, was analyzed with a panel of tubulin-specific antibodies. The presence of acetylated tubulin, restricted to one of the three major alpha-tubulin spots on two-dimensional gels, demonstrated that Artemia tubulin diversity is partially generated by posttranslational mechanisms. Artemia tubulin reacted very well with an antibody to tyrosinated tubulin, but there was no, or very little, detectable detyrosinated tubulin unless the purified Artemia tubulin was exposed to carboxypeptidase. The results suggest that all microtubule-dependent events in Artemia, a complex metazoan animal, are accomplished with microtubules composed from a limited repertoire of tubulins and that none of these events require appreciable amounts of detyrosinated tubulin.

Animals↗

Interspersion of histone and 5S RNA genes in Artemia.

Four recombinant lambda phage containing histone genes were selected from a library of Artemia genomic DNA fragments. The histone gene organization of Artemia resembles that of other invertebrates in that all five genes are clustered and repeated in tandem with approximate repeat lengths of 8.5 kb and 9.3 kb. Each recombinant lambda phage isolate hybridizes with five histone mRNAs and unexpectedly also with 5S ribosomal RNA. Hybridization kinetics have shown the number of histone genes to be about 95-100 copies per haploid genome. An identical number of copies was determined for a hybridization probe containing the 5S gene but no histone genes. We have not found any evidence for a separate set of repeated 5S genes outside this histone + 5S block.

Animals↗

Absence of detectable 5-methylcytosine in DNA of embryos of the brine shrimp, Artemia.

DNA from three developmental stages of the brine shrimp, Artemia was found to be undermethylated compared to DNA from calf thymus and salmon sperm. Using high-performance liquid chromatography we found that DNA hydrolysates from both dormant cysts and prefeeding nauplii contain less than 1 residue of 5-methylcytosine per 59 kilobases, placing Artemia DNA in the "insect type" category. The absence of detectable 5-methylcytosine in DNA of developing Artemia supports the view that methylation status alone cannot account for regulation of transcription in protostomes, and that DNA methylation may be more common among deuterostomes.

5-Methylcytosine↗

Molecular cloning and characterization of ribosomal RNA genes from the brine shrimp.

A library of genomic DNA from the brine shrimp, Artemia, has been constructed with the Charon 4A phage vector, utilizing EcoRI passenger fragments. Screening this library with purified Xenopus laevis cloned rDNA genes has resulted in the identification and plaque purification of a recombinant containing a complete Artemia (18 S + 26 S) rDNA repeat unit. A physical map derived from the analysis of restriction endonuclease digests of the repeat unit, which measures 13.9 kilobase pairs, is similar to the map derived from genomic DNA. In common with several other species, the 26 S rRNA gene terminates with a HindIII recognition site.

Animals↗

CV-1 cells release proteins that facilitate infection by simian virus 40 and echovirus 6.

Uninfected simian cells (CV-1) produce two different proteins, one of which enhances the infectivity of echovirus 6 and the other enhances the infectivity of SV40 in less susceptible cells. The enhancers are released by metabolizing cells into the culture medium. The SV40 enhancer protein is larger and less acidic than the echovirus enhancer. The SV40 enhancer protein can be dissociated into 2 subunits with apparent molecular weights of 42,000 and 24,000. The echovirus enhancer protein consists of 2 subunits with apparent molecular weights of 28,000 and 31,000. Electrophoretically purified enhancer proteins interact with virions and retain their biological activities and viral specificities. The SV40 enhancer stimulates expression of SV40-T antigen under conditions in which untreated virus does not initiate expression of T antigen. This result and the observation that the enhancers do not increase the infectivity of the nucleic acids of their respective viruses suggest that the enhancers act either at the stage of penetration or uncoating.

Animals↗

Isolation and partial purification of phthalate ester hydrolyzing enzyme(s) from the brine shrimp, Artemia.

Isolation and 30-fold purification of a di-n-butyl phthalate (DNBP) hydrolyzing enzyme from synchronously hatched larvae of the brine shrimp, Artemia, are reported. The activity of the enzyme increases during larval development simultaneously with the acute toxic action of DNBP on the larvae. The enzyme is not stimulated by 10 mM sodium cholate, is stable for days to weeks in solution at 4 degrees C, indefinitely stable at -70 degrees C and is distinct from the previously reported trypsin- and chymotrypsin-like proteases [1].

Animals↗

DNA-dependent RNA polymerases from Artemia salina: decreasing polymerase activities and number of polymerase II molecules in developing larvae.

Embryos and larvae of the brine shrimp, Artemia salina, provide a useful biological system for biochemical studies of animal development. Dormant encysted embryos can be cultured readily in the laboratory to provide large quantities of free-swimming nauplius larvae. The rate of synthesis of all classes of RNA in swimming larvae declines markedly between 24 and 72 h after immersion of dormant embryos in sea water. Nuclei were isolated from 24-72 h larvae and RNA polymerase activity was measured under conditions in which the nuclei remained intact. Total RNA polymerase activity of isolated nuclei decreased in parallel with RNA synthesis in vivo. RNA polymerases were solubilized from nuclei and fractionated by chromatography on DEAE-cellulose. The levels of both RNA polymerases I and II also decreased in parallel with RNA synthesis in vivo. The specific activity of highly purified RNA polymerase II was determined by comparison of enzyme activity with the mass of RNA polymerase II subunits displayed on SDS gels. The specific activities of RNA polymerase II preparations from 24 and 72 h larvae were identical. The number of polymerase II molecules was estimated from the mass of the subunits. The number of molecules per nucleus declined from 20,000 at 24 h to 3500 at 72 h.

Age Factors↗

DNA-dependent RNA polymerases from Artemia salina. IV. appearance of nuclear RNA polymerase activity during pre-emergence development of encysted embryos.

Dessicated and encysted gastrulae of the brine shrimp Artemia salina remain metabolically dormant until they are rehydrated. At this time development resumes, culminating in the hatching of free swimming nauplius larvae. The resumption of embryogenesis provides a convenient system for studying biochemical events which accompany development of a eukaryotic organism, and in particular Artemia has proven useful for studies of the transcriptional regulation of gene expression. Encysted gastrulae of Artemia yielded only trace amounts of DNA-dependent RNA polymerase activity when crude nuclear pellets were subjected to sonication at high ionic strength. Furthermore, when crude nuclear pellets from encysted gastrulae and developing nauplius larvae were mixed prior to sonication, subsequent solubilization of proteins from the mixture did not yield RNA polymerase activity; sonication of the pellet from nauplii alone resulted in the solubilization of large quantities of RNA polymerases I and II as we have previously found [1]. RNA polymerases I and II were detectable in sonicates of crude nuclear pellets after 1-h incubation of Artemia cysts in sea water. This presents the possibility that dormant gastrulae of the brine shrimp contain RNA polymerase which is inactive, and that the rapid appearance of nuclear enzymatic activity which accompanies the resumption of development may not require de novo synthesis of the polymerase.

Animals↗

DNA-dependent RNA polymerases from Artemia salina. Subunit structure of polymerase II.

RNA polymerase II from larvae of the brine shrimp, Artemia salina, was highly purified by two cycles of DEAE-cellulose chromatography followed by centrifugation through discontinuous sucrose gradients. Gradient fractions were subjected to elctrophoresis is polyacrylamide gels containing sodium dodecyl sulfate. The subunit structure of RNA polymerase II was determined by quantitative comparison of the polypeptides and enzyme activity present in each gradient fraction. The enzyme contains one copy of each of four subunits with estimated molecular weights of 170,000, 130,000, 36,000 and 24,000. The total molecular weight agrees well with the molecular weight estimated for the native enzyme by density gradient centrifugation.

DNA-Directed RNA Polymerases↗