Search PubMedSearch

Biomedical subjects

S Dilworth

Publications and source records attributed to S Dilworth.

4 recordsLinked to original sources

Characterization of HIV isolates arising after prolonged zidovudine therapy.

Human immunodeficiency virus type 1 (HIV-1) was isolated from five patients with late-stage disease treated with zidovudine (ZDV) for more than 1 year. Peripheral blood mononuclear cells (PBMCs) were used for all virus isolations and to assay for drug resistance. The isolates exhibited a 10- to 100-fold decrease in ZDV susceptibility compared to pretreatment isolates. Multiple clones of a 618 bp segment of the HIV reverse transcriptase gene encompassing codons 60-250 were sequenced for each isolate. The association of alterations at codons Asp67----Asn, Lys70----Arg, Thr215----Phe or Tyr, and Lys219----Gln with ZDV resistance has been previously noted (ref. 5). In this study, the most frequent alterations was Thr215----Tyr although genotypic mixtures of Thr/Tyr and Phe/Tyr were also observed. One isolate with a Tyr215 alteration and unaltered codons at 67, 70, and 219 had high-level ZDV resistance. Alterations at codons 67, 70, and 219 did not appear to increase resistance when seen in combination with Tyr215. Virus isolates obtained from each patient by cultivation with either 0 or 4 microM ZDV were compared and found to have similar alterations at codons 67, 70, 215, and 219, although one instance of apparent in vitro selection for Tyr215 over Phe215 was observed. Assays using PBMCs for virus propagation will permit susceptibility testing of HIV isolates from most patients on antiretroviral drugs to investigate the clinical significance of drug resistance.

Amino Acid Sequence

Isolation of HIV-1 from the blood of seropositive adults: patient stage of illness and sample inoculum size are major determinants of a positive culture. The Walter Reed Retroviral Research Group.

Results of HIV-1 blood cultures from 609 seropositive adults across all stages of illness at the Walter Reed Army Medical Center were reviewed. HIV-1 was isolated by coculturing of patient peripheral blood mononuclear leukocytes (PBMCs) with normal blood donor target PBMCs that had been stimulated with phytohemagglutinin and interleukin-2. The HIV-1 isolation success rate at Walter Reed increased progressively each year from 1986 to 1989. In 1989, HIV-1 was isolated from a single blood specimen from patients in Walter Reed stages 1-2, 3-4, and 5-6 in 75% (49/65), 90% (37/41), and 97% (30/31) of cases, respectively. None of 22 blinded negative control specimens was positive. PBMC cultures from late stage patients regularly became positive within 7 days (92%), compared to only 46% of positive cultures from early stage patients. For most patients, the lowest number of serially diluted PBMCs that resulted in a positive culture was 30,000 patient PBMCs, but the range was 300 to 3 million cells. HIV-1 was isolated less frequently from plasma (5/18, 28%). Plasma viremia was detected only in patients with relatively high titers of infected PBMCs. Forty-six blood specimens from "at-risk" seronegative adults were also cocultured; none was positive.

Acquired Immunodeficiency Syndrome

Two TFIIIA activities regulate expression of the Xenopus 5S RNA gene families.

Immunoblotting experiments with polyclonal and monoclonal anti-transcription factor IIIA (TFIIIA) antibodies reveal different electrophoretic forms of TFIIIA in extracts from immature and mature oocytes of Xenopus laevis. The well-characterized 39-kD TFIIIA species is present in approximately 10(12) copies per cell in stage I-III previtellogenic oocytes and declines in abundance by 10- to 20-fold during oogenesis. An immunologically related protein of apparent molecular mass of 42 kD is present at 2-4% of the level of 39-kD TFIIIA in immature oocytes, and the level of this protein increases dramatically during oogenesis. Both the 39- and 42-kD proteins are complexed with 5S RNA in 7S ribonucleoprotein (RNP) particles. High-level transcription of the oocyte-type 5S genes in vitro requires 39-kD immature oocyte TFIIIA, whereas both 39-kD TFIIIA and the mature oocyte TFIIIA species of 42 kD support somatic-type 5S transcription. TFIIIA of 42 kD does not support oocyte-type 5S transcription in a fractionated transcription system derived from mature oocytes. Both proteins, however, bind the oocyte-type and somatic-type genes with comparable affinities and exhibit similar DNase footprints on both genes. These results suggest a model for the developmental regulation of 5S RNA gene transcription where 42-kD TFIIIA serves as an activator of somatic-type 5S transcription and as a repressor of oocyte-type transcription during early embryogenesis.

Animals

Working together.

Explore the source record for details and available documents.

Aged