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Biomedical subjects

L Ho-Terry

Publications and source records attributed to L Ho-Terry.

24 records · Page 2Linked to original sources

Degradation of rubella virus envelope components.

Tween-ether treatment of rubella virus, which has no effect on the antigenic and electrophoretic properties of the two envelope glycoproteins, destroys infectivity and enhances haemagglutinating activity. Trypsin treatment alters the electrophoretic pattern of the envelope glycoproteins so that the VPI peak is no longer evident and the VPII peak is reduced. At the same time, both the properties of haemagglutination and infectivity are inactivated but the capacity to combine with neutralizing antibody is retained, which suggests that VPII may be responsible for inducing the production of neutralizing antibody.

Animals↗

Radioimmunoassay for antibodies to rubella virus and its ribonucleoprotein component.

IgA and IgG antibodies to the ribonucleoprotein component of rubella virus have been demonstrated by radioimmune precipitation in sera from patients with recent but not remote rubella infection. This observation suggests that a test for antibodies to the ribonucleoprotein component may provide additional evidence in the diagnosis of recent rubella infection.

Antibodies, Viral↗

Polysomes and polysomal mRNAs in SV40-infected CV-1 cells. In vivo observations.

SV40-specific polysomes are relatively larger than host polysomes. Both 16 S and 19 S virus-specific late mRNAs are found associated with these polysomes and they are present in a ratio of approximately 2 : 1. The rates at which these virus-specific mRNAs are translated are the same, so that the relative amounts of virus-specific polypeptides synthesized in the virus-infected cells is determined by the relative amounts of 16 S and 19 S mRNAs coding for them.

Cell Line↗

Effect of SV40 infection on [3H]uridine incorporation.

More [3H]uridine was incorporated into RNA of SV40-infected than into uninfected cells 31 h after infection. When the specific activity of the uridine triphosphate pools in infected and uninfected cells was equated by the addition of appropriate amounts of exogenous unlabelled uridine, no difference in the rate of [3H]uridine incorporation into RNA was observed. Although no difference in [3H]uridine entry or phosphorylation was demonstrable, the apparently smaller pools of endogenous RNA precursors in infected cells resulted in less isotope dilution and thus to synthesis of uridine triphosphate and RNA of higher specific activity.

Cell Line↗