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Biomedical subjects

K Leong

Publications and source records attributed to K Leong.

27 records · Page 2Linked to original sources

The expression of the SV40 early region in the transformed human cell line SV80.

The one complete copy of the SV40 early region present in human cells of the transformed line SV80 carries a duplication of the 5' portion of the early region, including its transcriptional control region and splicing signals (W. Gish and M. Botchan, personal communication). Novel SV40-specific RNA species of sufficiently large size, 3.8 and 4.2 kb, to be expressed from the duplicated early transcriptional control region were detected in SV80 cytoplasmic and nuclear RNA preparations by blot hybridization. The results of transcription in a cell-free system of a plasmid, pSV80-04, representing this SV80 cell SV40 DNA integrate (W. Gish and M. Botchan, personal communication) and of nuclease protection experiments with end-labelled pSV80-04 DNA fragments support the conclusion that the duplicated early sequences are transcribed in SV80 cells. It has also been established that the duplicated early splicing signals are functional in SV80 cells. These results are discussed in relation to the large amounts of SV40 early mRNA and T-antigen synthesized in cells of the SV80 line.

Antigens, Viral, Tumor↗

Primer-dependent eukaryotic RNA polymerase capable of accurate transcription from the adenovirus major late promoter in a reconstituted system.

A sensitive assay for detection of eukaryotic RNA polymerase II has been developed. This assay depends on the ability of polymerase II to elongate a small RNA primer, oligo(U), hybridized to a single-stranded homopolymeric DNA template, poly(dA). The poly(dA).oligo(U)-dependent RNA polymerase II from calf thymus has been purified approximately 10,000-fold using this assay. The purified enzyme contains four polypeptides of apparent Mr 180,000, 140,000, 24,000, and 16,000 and is fully active in accurate initiation of transcription from the adenovirus major late promoter in the presence of transcription factors from HeLa cells. The poly(dA).oligo(U)-dependent RNA polymerase activity can be detected in crude cell extracts from a variety of tissue culture cells and appears to be largely due to polymerase II, since 90-95% of this activity is inhibited by alpha-amanitin at a concentration of 1 microgram/ml.

Adenoviruses, Human↗

Specific transcription of an adenoviral gene that possesses no TATA sequence homology in extracts of HeLa cells.

Transcription of the adenovirus type 2 (Ad2) IVa2 gene, which contains no TATA-like sequence in the region immediately upstream of the IVa2 cap sites (Baker, C. C., and Ziff, E. B. (1981) J. Mol. Biol. 149, 189-221), has been examined in extracts of HeLa cells (Manley, J. L., Fire, A., Cano, A., Sharp, P. A., and Gefter, M.L. (1980) Proc. Natl. Acad. Sci. U.S.A. 77, 3855-3859). Run-off transcripts of the predicted length of those initiated at the IVa2 cap sites were synthesized from different Ad2 DNA templates, each of which also contained the major late transcriptional control region. Mapping of the 5' ends of the RNA made from one template by a nuclease protection assay established the fidelity of initiation of IVa2 transcription in vitro. The efficiency of IVa2 expression in whole HeLa extracts was influenced quite dramatically by monovalent and divalent metal ion concentrations and the concentration of extract protein present in the reaction mixture. Under certain conditions, IVa2 run-off transcripts were made almost as efficiently as those from the Ad2 major late transcriptional control region. However, conditions promoting optimal IVa2 transcription in vitro did not favor recognition of the major late transcriptional control region, and vice versa: the synthesis of IVa2 and major late run-off transcripts responded differently to all parameters tested.

Adenoviruses, Human↗

Transcription of adenovirus cores in vitro.

Transcription in whole HeLa cell extracts of the nucleoprotein core complexes released from adenovirus type 2 or type 5 virions has been examined. The average length of transcripts from deproteinized DNA templates increased steadily during a 90-min reaction in vitro, exhibiting an elongation rate of approximately 70 nucleotides per minute. On the other hand, transcripts made from viral core templates were restricted to a length of less than 2000 nucleotides. Accordingly, efficient transcription of cores (50 nucleotides elongated/min) ceased after 10-20 min of incubation in whole-cell extracts. Deproteinized viral DNA and viral nucleoprotein complexes appeared to support the initiation of a similar number of transcripts per template molecule, but the rate of initiation was faster when cores were provided as templates. Deproteinized viral DNA supported the synthesis of VA-RNA and of transcripts that hybridized to the region of the viral genome containing the 5' portion of the major late transcriptional. Viral cores also directed the synthesis of RNA products which hybridized to fragments of the viral genome containing E1A, E1B, and E4 regions. The results of nuclease protection experiments indicated that the presence of core proteins did not preclude accurate initiation of transcription from the E4 region.

Adenoviruses, Human↗

Purification of a factor that restores translation of vesicular stomatitis virus mRNA in extracts from poliovirus-infected HeLa cells.

It was previously shown that the poliovirus-induced inhibition of translation of capped mRNAs can be reversed by a protein found in preparations of the eukaryotic initiation factor eIF-4B [Rose, J. K., Trachsel, H., Leong, K. & Baltimore, D. (1978) Proc. Natl. Acad. Sci. USA 75, 2732--2736]. This "restoring factor" has now been purified from a high-salt wash of rabbit reticulocyte ribosomes by taking advantage of its tight association with factor eIF-3 at low salt concentrations. It did not copurify with the major Mr 80,000 polypeptide of eIF-4B preparations but did copurify with a Mr 24,000 polypeptide previously shown to bind to the cap structures of mRNAs [Sonenberg, N., Rupprecht, K. M., Hecht, S. M. & Shatkin, A. J. (1979) Proc. Natl. Acad. Sci. USA 76, 4345--4349]. Both the electrophoretic mobility and the tryptic peptide pattern of the restoring factor were indistinguishable from those of the cap-binding protein, and the restoring factor could be crosslinked to the 5'-terminal cap on mRNA. Thus, is appears that poliovirus inhibits cellular protein synthesis by inactivation of some crucial property of the cap-binding protein.

Carrier Proteins↗

Inhibition of translation by poliovirus: inactivation of a specific initiation factor.

Translation of vesicular stomatitis virus (VSV) mRNA, like host mRNA translation, is inhibited in cells infected with poliovirus. To study the mechanism of poliovirus-induced inhibition of protein synthesis, we prepared extracts from poliovirus-infected and uninfected HeLa cells. Poliovirus mRNA was translated in lysates from both infected and uninfected cells, while VSV mRNA was translated only in the lysate from uninfected cells. Addition of purified translation initiation factors to the extract from infected cells showed that one factor, eIF-4B, could restore VSV mRNA translation in the infected lysate, but did not increase poliovirus mRNA translation. Further experiments involving translation of VSV mRNA in mixed extracts from poliovirus-infected and uninfected cells showed (i) that there was not an excess of an inhibitor of VSV mRNA translation in the infected lysate, but (ii) that an acitivity that caused a slow inactivation of eIF-4B was present in the infected lysate. Inactivation of eIF-4B appears to be the mechanism by which poliovirus infection causes a selective inhibition of translation.

Cell-Free System↗