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R Hough

Publications and source records attributed to R Hough.

21 records · Page 2Linked to original sources

Intracellular distribution and degradation of immunoglobulin G and immunoglobulin G fragments injected into HeLa cells.

Intact rabbit immunoglobulin G molecules (IgGs) and their papain or pepsin fragments were radio-iodinated and injected into HeLa cells. Whole IgGs, Fab2, and Fc fragments were degraded with half-lives of 60-90 h, whereas half-lives of Fab fragments were 110 h. These results indicate that proteolytic cleavage in the hinge region of the IgG molecule is not the rate-limiting step in its intracellular degradation. The hingeless human myeloma protein, Mcg, was degraded at the same rate as bulk human IgG, providing further evidence that the proteolytically susceptible hinge region is not important for intracellular degradation of IgG molecules. SDS acrylamide gel analysis of injected rabbit IgG molecules revealed that heavy and light chains were degraded at the same rate. Injected rabbit IgGs and rabbit IgG fragments were also examined on isoelectric focusing gels. Fab, Fab2, and Fc fragments were degraded without any correlation with respect to isoelectric point. Positively charged rabbit IgGs disappeared more rapidly than their negative counterparts, contrary to the trend reported for normal intracellular proteins. The isoelectric points of two mouse monoclonal antibodies were essentially unchanged after injection into HeLa cells, suggesting that the altered isoelectric profile observed for intact rabbit IgG resulted from degradation and not protein modification. The intracellular distributions of IgG fragments and intact rabbit IgG molecules were determined by autoradiography of thin sections through injected cells. Intact IgG molecules were excluded from HeLa nuclei whereas both Fab and Fc fragments readily entered them. Thus, for some proteins, entry into the nuclear compartment is determined primarily by size.

Animals↗

The selective degradation of injected proteins occurs principally in the cytosol rather than in lysosomes.

These studies use microinjection to determine whether the selective degradation of cytosolic proteins involves selective transfer of proteins to lysosomes or selective proteolysis within the cytosol. 14C-Sucrose-labeled bovine serum albumin (14C-sucBSA) was conjugated to polylysine, and monolayers of L929 cells were exposed to the conjugate. The 14C-sucrose-labeled peptides that arose upon degradation of the added 14C-sucBSA polylysine accumulated exclusively within lysosomes. In contrast, when 14C-sucBSA or 14C-sucrose-labeled pyruvate kinase (14C-sucPK) was microinjected into L929 cells, over half the 14C-sucrose-labeled peptides derived form the injected proteins were present in the postlysosomal supernatant. Control experiments demonstrated that the microinjection procedure did not cause 14C-sucrose peptides to leak from lysosomes. Therefore, the presence in the cytosol of substantial amounts of the degradation products from injected 14C-sucBSA and 14C-sucPK confirms the existence of a major proteolytic system(s) within or readily accessible to the cytosol of animal cells.

Animals↗

A simple method for assessing quinine pre-treatment in acute malaria.

Administration of a loading dose of quinine in severe malaria may be dangerous if therapeutic blood concentrations are already present because of previous treatment. To assess the reliability of the history of pretreatment we conducted a prospective study of 379 adult patients with acute falciparum malaria admitted to a hospital in western Thailand. Admission plasma concentrations of quinine were measured by high performance liquid chromatography (HPLC), and compared with the patients' history of previous quinine treatment. The sensitivity of the history was 59% (95%) confidence interval [CI] 49-69%), the specificity was 79% (95% CI 74-84%), the positive predictive value was 53%, and the negative predictive value 82%. A rapid (10 min semi-quantitative estimate of plasma quinine concentrations, based on simple 'dipstick' method using a quinine-specific monoclonal antibody, proved considerably more sensitive and specific. The correlation between the dipstick estimate and the subsequent HPLC measurement of plasma quinine concentration was 0.85 (n = 404; P < 0.0001). In 404 admission samples, the negative predictive value of the dipstick estimate for plasma quinine concentrations > 1 microgram/mL was 100%. In Thailand the history of previous quinine treatment given by the patients or their relatives was unreliable but the quinine dipstick provided a simple and rapid means of assessment of quinine pre-treatment in acute falciparum malaria.

Acute Disease↗