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Biomedical subjects

D Henning

Publications and source records attributed to D Henning.

At least 19 recordsLinked to original sources

A prospective study of Plasmodium falciparum multiplicity of infection and morbidity in Tanzanian children.

Several studies suggest that in individuals with substantial previous exposure to malaria, co-infection with multiple clones of Plasmodium falciparum can protect against subsequent clinical malaria attacks. Other studies, mainly of individuals with little previous exposure, found the converse relationship. To test whether acquisition of such cross-protection tracks the acquisition of clinical immunity in general, 610 Tanzanian children aged 0-6 years were enrolled in a nine-month prospective study of the risk of morbidity in relation to parasitological status and merozoite surface protein 2 genotypes on enrolment. Prevalence of parasitaemia and multiplicity of infection increased with age. In the first year of life, the incidence of clinical malaria was almost three times higher in children with parasites at baseline than in those without. In older children, baseline P. falciparum infections appeared to protect against both parasitaemic and non-parasitaemic fever episodes. In children aged less than three years, baseline multiple infection tended to be associated with higher prospective risk of clinical malaria than single infection while in children aged more than three years the converse was found, but these effects were not statistically significant. These results provide further evidence that relationships between asymptomatic malaria infections and clinical malaria change with cumulative exposure.

Age Distribution↗

Expression of p40/Epstein-Barr virus nuclear antigen 1 binding protein 2.

Nucleolar protein p40/EBP2 is a proliferation-associated antigen that interacts with Epstein-Barr virus nuclear antigen 1 (EBNA1) to maintain the Epstein-Barr virus (EBV) episomes. The yeast p40/EBP2 functions in the processing of 27S-A into 27S-B ribosomal RNA. The present study reports high evolutionary conservation of the cDNA-derived amino acid sequences of p40/EBP2 from frog, chicken, pig, rat, mouse, bovine, and human. p40/EBP2 is ubiquitously expressed in human tissues. It is highly expressed in myelogenous leukemia K-562 compared to other cell lines tested. The human p40/EBP2 gene is located in chromosome 1 with nine exons and eight introns. The minimal promoter region resides 300 nucleotides upstream of a putative ATG initiation codon preceded by a pyrimidine-rich region. These two regions contain eight Sp1 and four c-Ets-1 putative binding sites. Analysis of the p40/EBP2 gene and its promoter region will facilitate studies on the regulation of its expression in EBV-infected and noninfected cells.

Amino Acid Sequence↗

Purification, characterization, and cloning of the cDNA of human signal recognition particle RNA 3'-adenylating enzyme.

The 3'-terminal adenylic acid residue in several human small RNAs including signal recognition particle (SRP) RNA, nuclear 7SK RNA, U2 small nuclear RNA, and ribosomal 5S RNA is caused by a post-transcriptional adenylation event (Sinha, K., Gu, J., Chen, Y., and Reddy, R. (1998) J. Biol. Chem. 273, 6853-6859). Using the Alu portion of the SRP RNA as a substrate in an in vitro adenylation assay, we purified an adenylating enzyme that adds adenylic acid residues to SRP/Alu RNA from the HeLa cell nuclear extract. All the peptide sequences obtained by microsequencing of the purified enzyme matched a unique human cDNA corresponding to a new adenylating enzyme having homologies to the well characterized mRNA poly(A) polymerase. The amino terminus region of the human SRP RNA adenylating enzyme showed approximately 75% homology to the amino terminus of the human mRNA poly(A) polymerase that includes the catalytic domain. The carboxyl terminus of the human SRP RNA adenylating enzyme showed less than 25% homology to the carboxyl terminus of poly(A) polymerase, which interacts with other factors and provides specificity. The SRP RNA adenylating enzyme is coded for by a gene located on chromosome 2 in contrast to the poly(A) polymerase gene, which is located on chromosome 14. A recombinant protein for the SRP RNA adenylating enzyme was prepared, and its activity was compared with the purified enzyme from HeLa cells. The data indicate that in addition to the SRP RNA adenylating enzyme, other factors may be required to carry out accurate 3'-end adenylation of SRP RNA.

Amino Acid Sequence↗

Human RNA helicase II/Gu gene: genomic organization and promoter analysis.

Human RNA helicase II/Gu (hRH II/Gu) protein unwinds double-stranded RNA, folds single-stranded RNA, and may play important roles in ribosomal RNA biogenesis, RNA editing, RNA transport, and general transcription. The genomic organization and the regulation of expression of the hRH II/Gu gene were analyzed. The hRH II/Gu gene is over 29 kb in length, and includes 15 exons. All intron-exon junctions contain consensus GT-AG sequences. An 85 bp basic promoter was identified which lacks a functional TATA box. In LNCaP cells, the hRH II/Gu promoter was up to 50 times as active as pGL2-control vector which has an SV 40 early promoter. Mutation of a putative c-Myc/USF binding site in the region between -110 and -85 caused a decrease in the promoter activity by 2- to 3-fold. A negative regulatory region was also found between -324 and -264. Studies of transcriptional regulation of hRH II/Gu under different physiological and pathophysiological conditions may provide clues to its biological function.

Base Sequence↗

Unique epitopes in RNA helicase II/Gu protein recognized by serum from a watermelon stomach patient.

RNA helicase II/Gu (RH II/Gu) is a nucleolar antigen originally identified using an autoimmune serum from a patient with watermelon stomach. A later report showed that anti-RH II/Gu autoantibodies were also present at low frequency in connective tissue disease (CTD) patients who did not show any symptoms suggestive of a watermelon stomach lesion. In an attempt to understand the relationship between watermelon stomach, also called gastric antral vascular ectasia (GAVE), and autoimmune disorder, we identified the antigenic sites recognized by these autoantibodies. Serum Gu uniquely recognized epitopes at amino acids 646-748 of RH II/Gu and all four CTD patient sera recognized antigenic sites within amino acids 1-173. Anti-RH II/Gu serum produced by immunizing rabbit with recombinant human RH II/Gu protein bound to the same antigenic sites recognized by the CTD patient sera, but it did not recognize the serum Gu epitopes. Results are also presented showing the use of these anti-RH II/Gu antibodies in the analysis of the evolutionary conservation of RH II/Gu in human, monkey and mouse.

Amino Acid Sequence↗

Adriamycin inhibits human RH II/Gu RNA helicase activity by binding to its substrate.

RNA helicases are enzymes important in RNA synthesis, processing, transport, and turnover. Human nucleolar RNA helicase II/Gu protein (RH II/Gu) was expressed in a baculovirus system. The purified recombinant RH II/Gu protein has RNA helicase activity on a 5' tailed ds RNA substrate in vitro. We found that Adriamycin, a widely used anticancer drug, inhibited RH II/Gu helicase activity in a dose-dependent manner with an IC(50) of 40 microM. Adriamycin bound to the RNA substrate, and the binding was disrupted by boiling or treatment with 1% SDS, suggesting that the binding of Adriamycin to RNA is reversible. Adriamycin was also found by gel electrophoresis to bind to yeast tRNA to form slow-migrating complexes. These results suggest that Adriamycin can inhibit RNA synthesis or processing by binding to RNA substrates.

Antineoplastic Agents↗

An RNA polymerase III transcription unit located in the upstream control regions of the human proliferating-cell nucleolar protein p120 gene is transcribed in vitro and in vivo.

An RNA polymerase III (Pol III) transcription unit containing homology to highly repeated Alu sequences was identified in the upstream flanking sequences of the gene for the human proliferating-cell nucleolar antigen p120. When transcribed in vitro, this Pol III unit produced three RNA transcripts, designated by nucleotide length as T150, T385 and T635; RNA transcript T635 was the most abundant accounting for over 90%. The transcription initiates at nucleotide -729 of the human p120 promoter and proceeds in the opposite orientation to the p120 gene transcription. Northern blot analysis and cDNA cloning followed by sequencing showed the presence of the T635 RNA in HeLa cells, indicating that this Pol III transcription unit is functional and transcribed in vivo. Disruption of this Pol III transcription unit by deletion of the Box A residues (-733 to -744) resulted in a sixfold reduction of the p120 gene transcription. A possible role for this Pol III transcription unit in p120 gene transcription is discussed.

Base Sequence↗

Production and characterization of monoclonal antibodies specific for Leptospira borgpetersenii serovar hardjo type hardjobovis and Leptospira interrogans serovar hardjo type hardjoprajitno.

Murine monoclonal antibodies were produced by immunizing BALB/c mice with a killed whole-cell antigen prepared from Leptospira borgpetersenii serovar hardjo type hardjobovis. Six of these antibodies recognized epitopes on the homologous antigen and on whole-cell antigen prepared from Leptospira interrogans serovar hardjo type hardjoprajitno. These antibodies did not cross-react with whole-cell antigens prepared from L. borgpetersenii serovar sejroe, 10 other pathogenic Leptospira serovars, or the saprophytic Leptospira biflexa serovar patoc. Three other monoclonal antibodies reacted with antigens prepared from the 2 hardjo serovars and serovar sejroe but not with antigens from the 10 other pathogenic serovars, or serovar patoc. The epitopes recognized by all of the hardjo-specific antibodies and 2 of the 3 hardjo/sejroe-specific antibodies were susceptible to sodium meta-periodate oxidation. All of the antibodies were characterized by Western blots with the hardjobovis whole-cell antigen. Each of the 9 monoclonal antibodies was inhibited from binding to the hardjobovis antigen by bovine sera which were obtained from cattle experimentally infected with hardjobovis and from field cattle, with anti-serovar hardjo microscopic agglutination test antibody titres ranging from 100 to 12800. Some of these antibodies may be suitable for incorporation into competitive enzyme immunoassays for the specific detection of antibodies to either of the hardjo serovars.

Animals↗

Nucleolar protein p120 contains an arginine-rich domain that binds to ribosomal RNA.

Human proliferation-associated protein p120 has previously been shown to localize to the nucleolus, and several functional domains of p120 have been elucidated. By using a nitrocellulose filter binding assay and a Northwestern blotting procedure this study shows that recombinant p120 binds to an rRNA fragment in vitro with a dissociation constant of 4 nM. The specific RNA-binding region of p120 (residues 1-57) was identified with glutathione S-transferase-fused p120 deletion constructs and Northwestern blotting procedures. This RNA-binding region of p120, which includes the nucleolar localization signal of p120, is similar to the arginine-rich RNA-binding regions found in other RNA-binding proteins such as HIV Rev and Tat. Experiments in vivo with HeLa cell nucleolar extracts showed that p120 was associated with the 60-80S pre-ribosomal particles. This association is disrupted by treatment with either RNase A or buffer of high ionic strength. These results suggest that p120 might be involved in rRNA/ribosome maturation, consistent with the role of the yeast homologue Nop2p in rRNA biogenesis.

Amino Acid Sequence↗

Green fluorescent protein tag for studies of drug-induced translocation of nucleolar protein RH-II/Gu.

We have constructed a human osteogenic sarcoma cell line, U-2 OS/GFP-Gu, that expresses nucleolar RNA helicase RH-II/Gu tagged with green fluorescent protein (GFP). The presence of a GFP tag does not inhibit RNA helicase, RNA folding and ATPase activities of RH-II/Gu protein. The derived cell line responds to cytotoxic agents like the parental cell line U-2 OS. In the presence of either actinomycin D or toyocamycin, the GFP-RH-II/Gu fusion protein translocates from the nucleolus to the nucleoplasm in the same way as the translocation of endogenous RH-II/Gu. The drug-induced translocation of GFP-RH-II/Gu is easily monitored by direct observation of live cells in vivo. This cell line can be used to screen cytotoxic drugs and to study the mechanisms of drug-induced translocation of RH-II/Gu. The cellular localization of RH-II/Gu during the cell cycle-dependent formation of the nucleolus is readily monitored. Real-time results are obtained more quickly without the disadvantages associated with cell fixation and immunofluorescence-based staining.

Biological Transport↗

RNA-unwinding and RNA-folding activities of RNA helicase II/Gu--two activities in separate domains of the same protein.

The human RNA helicase II/Gu protein (RH-II/Gu) is a member of the D-E-A-D box protein family. It is a unique enzyme, which possesses an ATP-dependent RNA-unwinding activity and has an RNA-folding activity that introduces an intramolecular secondary structure in single-stranded RNA. This report shows that these two enzymatic activities are distinct. ATP[S], GTP and low concentrations of ATP enhance the RNA-folding activity of RH-II/Gu but not the RNA-helicase activity. High concentrations of ATP are required for the helicase activity but are inhibitory to the RNA-folding activity. Mg2+ is required for the helicase activity but not for the RNA-folding reaction. Affinity-purified anti-(RH-II/Gu) polyclonal Ig inhibit the RNA-unwinding activity but not the folding activity. Mutations of the DEVD sequence, which corresponds to the DEAD box, and the SAT motif enhanced RNA-folding activity of RH-II/Gu but completely inhibited the RNA-helicase activity. A mutant that lacks the COOH-terminal 76 amino acid residues, including the four FRGQR repeats, had unwinding activity but did not catalyze the folding of a single-stranded RNA. The two enzymatic activities of RH-II/Gu reside in distinct domains. Amino acids 1-650 are active in the RNA-unwinding reaction but lack RNA-folding activity. Amino acids 646-801 fold single-stranded RNA but lack helicase activity. This report shows distinct RNA-unwinding and RNA-folding activities residing in separate domains within the same protein.

Adenosine Triphosphatases↗

Cloning and characterization of Gu/RH-II binding protein.

Gu/RNA helicase II (Gu/RH-II) is the first reported mammalian nucleolar RNA helicase that is a member of the D-E-A-D (Asp-Glu-Ala-Asp) box family of proteins. It has an ATP-dependent RNA unwinding (helicase) activity and a separate RNA folding activity (introduction of intramolecular secondary structure into single-stranded RNA). To determine which proteins may bind to Gu/RH-II, a yeast two-hybrid system was used. A cDNA which encoded a protein, called Gu/RH-II binding protein or GBP, was isolated and sequenced. The GBP protein is localized to the nucleus in speckled or diffuse nucleoplasmic patterns. The GBP mRNA level is highest in testis, 9- to 49-fold greater than other tissues. When GBP interacts with Gu/RH-II, proteolytic cleavage of Gu/RH-II occurs; the amino-terminal portion of Gu/RH-II is critical for this proteolysis.

Amino Acid Sequence↗

Cloning and characterization of a new silver-stainable protein SSP29, a member of the LRR family.

Silver-stainable proteins (SSPs) are aspartic acid-rich nuclear proteins which are silver stained under very specific conditions. Using a degenerate oligodeoxyncleotide probe which codes for acidic amino acid residues, a cDNA for a new SSP, referred to as SSP29, has been isolated. The cDNA-derived amino acid sequence shows SSP29 has a molecular mass of 29 kDa, leucine-rich repeats (LRR) near the NH2-terminal region and acidic clusters at the COOH-terminal portion, indicating that SSP29 is also a member of the LRR subfamily of acidic proteins which have been shown to be involved in antigen-mediated cellular responses, leukemogenesis and differentiation. SSP29 can be stained by Ag-NOR staining. SSP29 is expressed in all human tissues and cell lines tested, localized to nucleoplasm and translocated partially to the nucleoli after heat shock. Its interaction with RNA polymerase I suggests that SSP29 may participate in signal transduction that directs nucleolar activities by regulating ribosomal RNA biosynthesis.

Amino Acid Sequence↗

Development of a monoclonal antibody-based competitive enzyme-linked immunosorbent assay for the detection of Leptospira borgpetersenii serovar hardjo type hardjobovis antibodies in bovine sera.

A murine monoclonal antibody (designated M553) that binds to an epitope on whole cell antigens prepared from Leptospira borgpetersenii serovar hardjo type hardjobovis and Leptospira interrogans serovar hardjo type hardjoprajitno, was produced and incorporated into a competitive enzyme-linked immunosorbent assay for the detection of bovine antibodies to serovar hardjo. The epitope recognized by M553 was susceptible to periodate oxidation. The M553 antibody was characterized by western blot with hardjobovis whole cell antigen. This antibody does not cross-react with whole cell antigens prepared from 11 other pathogenic Leptospira serovars, or, Leptospira biflexa serovar patoc. The sensitivity estimate of the competitive ELISA was 100% with field sera (n = 165) with serovar hardjo microscopic agglutination test (MAT) titres of > or = 100. The specificity estimate was 100% with sera (n = 128) obtained from a specific pathogen free herd of cattle that were negative in the MAT at a dilution of 1:100 for serovars hardjo, pomona, sejroe, copenhageni, canicola, and grippotyphosa. The specificity estimate with field sera (n = 301) with serovar hardjo MAT titres of < 100, was 98% (95% confidence interval = +/- 1.58%). There was no cross-reactivity with field sera (n = 306) with serovar pomona titres > or = 100 and serovar hardjo titres < 100. The specificity estimate with the combined populations of sera with serovar hardjo MAT titres of < 100 (n = 735) was 99.18% (95% confidence interval = +/- 0.65%). There was a high level of agreement (kappa = 0.977) between the results of the competitive ELISA and those of the MAT.

Animals↗

A nucleolar RNA helicase recognized by autoimmune antibodies from a patient with watermelon stomach disease.

Watermelon stomach is characterized by prominent stripes of ectatic vascular tissue in the stomach similar to stripes on a watermelon; in patients with this disorder chronic gastrointestinal bleeding occurs and approximately half of these patients have associated autoimmune disorders. In the serum of one patient, an antinucleolar antibody titer of 1:25 600 was found; the antibodies specifically recognized an approximately 100 kDa nucleolar protein, which we referred to as the 'Gu' protein. Its cDNA was cloned and sequenced. The Gu protein is a member of a new subgroup of RNA helicases, the DEXD box family. Gu protein fused with glutathione S-transferase contains ATP-dependent RNA helicase activity which preferably translocates in the 5'-->3' direction. Its RNA folding activity, RNA-dependent ATPase and dATPase activities, and its translocation direction are similar to those of RNA helicase II [Flores-Rozas, H. and Hurwitz, J. (1993) J. Biol. Chem. 268, 21372-21383]. Sequencing of 209 amino acids of RNA helicase II peptides showed 96.7% identity with the cDNA-derived amino acid sequence of the Gu protein. The precise biological roles of this RNA helicase in the biogenesis of ribosomal RNA and the pathogenesis of watermelon disease and autoimmune disorder require further study.

Adenosine Triphosphatases↗

Phosphorothioate oligonucleotides bind in a non sequence-specific manner to the nucleolar protein C23/nucleolin.

To design optimal strategies for intracellular delivery of antisense phosphorothioate oligonucleotides, it may be useful to understand their interaction with cellular macromolecules. Nuclear extracts from LOX amelanotic myeloma cells were studied for protein binding to phosphorothioate oligonucleotides using a Southwestern protocol. Multiple nuclear proteins bound to the phosphorothioate oligonucleotides but no detectable protein binding was found to phosphodiester oligonucleotides. The protein with the strongest binding signals was shown by immunoprecipitation to be nucleolar C23/nucleolin, a 110 kDa protein. With glutathione S-transferase/nucleolin fusion protein constructs, the region of nucleolin containing the RNA recognition motifs had binding activity to phosphorothioate oligonucleotides.

Base Sequence↗

Specific aspartic acid-rich sequences are responsible for silver staining of nucleolar proteins.

Ag-NOR proteins are silver-stainable proteins in the nucleolar organizer regions and are used to distinguish benign from malignant tumors. B23 and C23 are the two major Ag-NOR proteins. This study shows that only one of the two acidic clusters of B23 is responsible for its silver staining property. Fusion of this region of B23 (amino acids 161-188) to glutathione S-transferase produced an Ag-NOR positive fusion protein. The same result was obtained when amino acids 233-277 of C23 was fused with glutathione S-transferase. The aspartate residues, but not the glutamate residues, were found to be primarily responsible for the silver staining of the acidic clusters.

Amino Acid Sequence↗

Immunodominant RNA recognition motifs of human nucleolin/C23.

Nucleolin/C23 is a nucleolar phosphoprotein implicated in the synthesis, processing and transport of ribosomal RNA and gene transcription. Auto-antibodies to human nucleolin/C23 have been reported in patients with systemic lupus erythematosus and other systemic autoimmune disorders. To identify immunodominant regions in nucleolin/C23, deletion fragments of nucleolin/C23 were fused in frame with the glutathione S-transferase gene. Seven monoclonal anti-nucleolin/C23 antibodies were used to determine the immunoreactivity of the bacterially expressed fusion proteins. Two sets of immunogenic regions at amino acids 314-389 and 387-461 were identified; each contained overlapping discontinuous epitopes and a centrally located RNA recognition motif. An auto-immune serum from a patient with systemic lupus erythematosus patient was found to contain antibodies against human nucleolin/C23 which recognized amino acids 387-461 of nucleolin/C23.

Amino Acid Sequence↗