Search PubMed⌕ Search

Biomedical subjects

J Rawls

Publications and source records attributed to J Rawls.

10 recordsLinked to original sources

Requirements for the mitochondrial import and localization of dihydroorotate dehydrogenase.

In animals, dihydroorotate dehydrogenase (DHODH) is a mitochondrial protein that carries out the fourth step in de novo pyrimidine biosynthesis. Because this is the only enzyme of this pathway that is localized to mitochondria and because the enzyme is cytosolic in some bacteria and fungi, we carried out studies to understand the mode of targeting of animal DHODH and its submitochondrial localization. Analysis of fractionated rat liver mitochondria revealed that DHODH is an integral membrane protein exposed to the intermembrane space. In vitro-synthesized Drosophila, rat and human DHODH proteins were efficiently imported into the intermembrane space of isolated yeast mitochondria. Import did not alter the size of the in vitro synthesized protein, nor was there a detectable size difference when compared to the DHODH protein found in vivo. Thus, there is no apparent proteolytic processing of the protein during import either in vitro or in vivo. Import of rat DHODH into isolated yeast mitochondria required inner membrane potential and was at least partially dependent upon matrix ATP, indicating that its localization uses the well described import machinery of the mitochondrial inner membrane. The DHODH proteins of animals differ from the cytosolic proteins found in some bacteria and fungi by the presence of an N-terminal segment that resembles mitochondrial-targeting presequences. Deletion of the cationic portion of this N-terminal sequence from the rat DHODH protein blocked its import into isolated yeast mitochondria, whereas deletion of the adjacent hydrophobic segment resulted in import of the protein into the matrix. Thus, the N-terminus of the DHODH protein contains a bipartite signal that governs import and correct insertion into the mitochondrial inner membrane.

Amino Acid Sequence↗

Expression of the dihydroorotate dehydrogenase gene, dhod, during spermatogenesis in Drosophila melanogaster.

The dhod gene encodes dihydroorotate dehydrogenase (DHOdehase), which catalyzes the fourth step of de novo pyrimidine biosynthesis. In addition to the common 1.5 kb dhod RNA expressed by embryos and females, adult males produce a group of slightly longer RNAs. Evidence is presented that the latter RNAs arise through transcription initiation at sites upstream from that of the common RNA and expression of these male-specific RNAs is limited to spermatogenesis. In situ hybridization analysis shows that these RNAs accumulate during spermatocyte growth and persist through meiosis and early spermatid differentiation. In contrast, DHOdehase activity is virtually absent in spermatocytes, meiotic cells, and in early spermatid cysts, then it becomes highly abundant in elongated spermatid cysts and disappears in late spermatogenesis. Thus, testis-limited expression of dhod conforms to a model proposed for other genes that function during spermiogenesis: transcription in spermatocytes, storage of translationally inactive RNA through meiosis, translation of the RNA during spermiogenesis. Very similar expression of a testis promoter-lacZ fusion transgene indicates that sequences required for the spermatogenesis transcription and translation patterns are confined to the 5' end of the dhod gene. Deletion analysis of that 5' region delimits all sequences necessary for spermatid expression of the transgene to a 89 bp fragment. These results are discussed in the contexts of known mechanisms of gene regulation during spermatogenesis and potential roles of DHOdehase during spermiogenesis.

Animals↗

The dhod gene and deduced structure of mitochondrial dihydroorotate dehydrogenase in Drosophila melanogaster.

We have carried out experiments to determine the structural organization of dhod and its apparent dihydroorotate dehydrogenase (DHOdehase) product. Germline transformation with dhod genomic DNA sequences permitted assignment of the functional limits of the gene to a 5-kb region, providing an experimental system for detailed analysis of this gene, as well as the DHO dehase protein. As expressed in embryos, the gene is a simple transcriptional unit containing two exons totalling 1347 nucleotides (nt) and a single small 5' intron of 54 nt. Compared to the enzyme from microorganisms, the deduced DHOdehase protein of 405 amino acids shows strong similarities within the presumptive catalytic portions of the protein. However, the N-terminal portions of these proteins are highly dissimilar, presumably reflecting diversity in the intracellular localization of DHOdehase in the different organisms. The Drosophila melanogaster protein contains N-terminal sequences that are typical of other mitochondrial intermembrane space proteins in animal cells.

Amino Acid Sequence↗

Structure of the rudimentary-like gene and UMP synthase in Drosophila melanogaster.

The last two steps of de novo UMP biosynthesis are performed by a bi-enzymic protein in animal cells, UMP synthase, that is encoded by the gene r-l in Drosophila melanogaster. Over 3.5 kb of genomic DNA spanning this gene were sequenced. Transcriptional organization of r-l has been determined by sequence analysis of two cDNA clones and by primer extension analysis of embryonic RNA. The DNA region 5' to the apparent transcription start point contains no known transcriptional control elements or sequences similar to those upstream from dhod, which encodes the metabolic pathway step preceding UMP synthase. The deduced protein of 53.5 kDa is similar to the UMP synthases of slime molds and humans. It contains the two enzymatic domains separated by an apparent bridge polypeptide sequence of over 30 amino acids, which is dissimilar among UMP synthases of different organisms. The r-l structure includes two introns, one of which occurs within the DNA region that encodes the interdomain bridge sequence of the protein.

Amino Acid Sequence↗

Drug abuse treatment programs as centers for HIV-related research and treatment.

The Observational Data Base (ODB) is a multicenter, longitudinal effort of the Community Programs for Clinical Research in AIDS (CPCRA) designed to collect HIV-related data on a large number of HIV-infected patients receiving primary care from community based physicians and health care groups. Over 400 patients from the Addiction Research and Treatment Corporation have enrolled in the ODB. Compared to the remainder of the CPCRA, ARTC ODB enrollees are more likely to be female, African American or Hispanic and to have injectable drug use and heterosexual contact with an injectable drug user as risk factors. The ARTC ODB patient profile closely resembles the fastest growing segments of the AIDS epidemic.

Adolescent↗

Transformation of DNA sequence data into geometric symbols.

Comparative analysis of related DNA sequences has been simplified by the transformation of data in the standard A, G, C, T format into a set of geometric symbols that promote pattern recognition. Previously, comparing more than 2 or 3 sequences simultaneously has been difficult because of the monotonous patterns established by letters. Here 33 sequences are simultaneously compared to demonstrate the ease with which nucleotide substitutions are accurately identified. This has been accomplished by writing a Word-Perfect macro program to facilitate this transformation. Since this word processing program is widely used, performing this kind of analysis is readily achievable in most laboratories involved in DNA sequence analysis.

Animals↗

Molecular cloning of the UMP synthase gene rudimentary-like from Drosophila melanogaster.

The rudimentary-like locus encodes UMP synthase, a bienzyme protein containing the last two enzyme activities of de novo pyrimidine biosynthesis: orotate phosphoribosyltransferase and orotidylate decarboxylase. This locus lies within chromosome region 93B. New mutations have been used to refine the 93B cytogenetic map and a chromosome walk has been executed to clone DNA from this region. DNA encoding UMP synthase was identified using mixed oligonucleotides which were based on sequences derived from conserved peptide tracts of the protein in other species. cDNA clones of the embryonic UMP synthase mRNA have been isolated and used to define the extent of genomic DNA sequences which encode the transcript. The embryonic RNA is approximately 1.75 kb in length.

Amino Acid Sequence↗

AIDS volunteer program.

Explore the source record for details and available documents.

Acquired Immunodeficiency Syndrome↗