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P G Agbuya

Publications and source records attributed to P G Agbuya.

2 recordsLinked to original sources

Proteolytic processing of the human T-cell lymphotropic virus 1 reverse transcriptase: identification of the N-terminal cleavage site by mass spectrometry.

Human T-cell lymphotropic virus 1 (HTLV-1) is a type C human retrovirus, which is the causative agent of Adult T-cell Leukemia and other diseases. The reverse transcriptase of HTLV-1 (E.C. 2.7.7.49) is synthesized as part of a Gag--Pro--Pol precursor protein, and the mature Gag, Pro, and Pol proteins, including the reverse transcriptase, are created by proteolytic processing catalyzed by the viral protease. The location of the proteolytic cleavage site, which creates the N-terminus of mature HTLV-1 reverse transcriptase, has not been previously identified. By using sequence comparisons of several retroviral polymerases, as well as information about the location of the ribosomal frameshift, we tentatively identified this N-terminal processing site. PCR amplification was used to construct a clone, which spans a region of the pro--pol junction of HTLV-1, to produce a recombinant Pro--Pol protein spanning the locations of those cleavage sites proposed by others as well as the one identified by our sequence alignment. Cleavage of the recombinant Pro--Pol protein by HTLV-1 protease generated a 5.5-kDa fragment. Analysis of this fragment by capillary LC-MS and MS/MS revealed the N-terminal cleavage site to be between Leu(147)--Pro(148) of the pro ORF. This is the first physical identification of the authentic amino acid sequence of the reverse transcriptase of HTLV-1. The data reported here provides a basis for further investigation of the function and structural aspects of protein-nucleic interaction.

Amino Acid Sequence↗

Development of a fluorescence polarization immunoassay for lorazepam quantification.

Lorazepam concentrations have been quantified in biological fluids using gas chromatography and high-performance liquid chromatography (HPLC). However, these methods are too time consuming and labor intensive for most nonresearch laboratories to offer. A fluorescence polarization immunoassay (FPIA) method for quantification of lorazepam was developed and validated using a reverse-phase HPLC method as the reference method. The FPIA method involves a single liquid-liquid extraction of 100 microliters of either serum or plasma, then direct analysis using the TDxFLx (Abbott Diagnostics, North Chicago, IL). FPIA calibrations were linear between 50 and 800 ng/ml using five calibrators prepared in human serum. Within-run precision (n = 10) for three serum controls (75, 300, and 600 ng/ml) resulted in coefficients of variation (CVs) of 5.7%, 5.4%, and 4.2%, respectively. Between-day precision studies for the three serum controls were 7.0%, 8.9% and 4.9%, respectively (n = 5). The analytical recovery of the three serum controls was 104.9%, 97.3% and 98.3%, respectively. There was an excellent linear correlation between the FPIA and HPLC determinations of 43 patient specimens (r = 0.990, slope = 0.961, intercept = 16.3). No interferences were found from many commonly prescribed nonbenzodiazepine drugs; however, other benzodiazepines that were tested will cross-react with this procedure and give inaccurate results. Therefore, this method should not be used in patients who are receiving other benzodiazepines in addition to lorazepam. The FPIA method described herein can be adapted to reliably measure lorazepam concentrations in serum or plasma.

Anti-Anxiety Agents↗