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JR Harris

Publications and source records attributed to JR Harris.

4 recordsLinked to original sources

Use of Modern Radiation Therapy Following Surgery for Invasive Breast Cancer.

Radiation therapy has long been used in the treatment of breast cancer. However, it is still very difficult to state with certainty whether or not radiation therapy is truly beneficial for patients with breast cancer, mainly because breast cancers are very heterogeneous in their clinical behavior, and because radiation therapy has undergone significant change in the methodology. We extensively reviewed the literature, and determined that radiation therapy increases the survival of some patients, particularly in conjunction with surgery and systemic therapy. Although the total proportion of such patients seems to be small, appliedto the general population of breast cancer patients, the absolute number of women who might benefit from radiation therapy may be quite large.

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Cholesterol-Streptolysin O Interaction: An EM Study of Wild-Type and Mutant Streptolysin O.

We present transmission electron microscopical data from negatively stained specimens of cholesterol following interaction with the thiol-activated bacterial toxin streptolysin O (SLO) (wild-type and a number of cysteine substitution mutants), with and without chemical modification of the cysteine residues. Two experimental systems were used, one with an aqueous suspension of cholesterol microcrystals and the other with immobilized thin planar cholesterol crystals attached to a carbon film. In both systems the wild-type SLO and two cytolytically active mutants, Cys 530 --> Ala (C530A) and Ser 101 --> Cys (S101C), readily generated the characteristic SLO arc- and ring-like oligomers on the surface of cholesterol microcrystals and immobilized planar cholesterol crystals. An underlying array of bound toxin can sometimes be detected. In the presence of high concentrations of SLO monomer, extensive sheet-like networks of linked oligomers extend from the microcrystals. The SLO mutant Thr250 --> Cys (T250C), which also possesses a relatively high cytolytic activity, has been found to create ring-like toxin oligomers somewhat more slowly than wild-type SLO, but the linear monomolecular layer array of cholesterol-bound toxin is more readily detected. With mutant Asn402 --> Cys (N402C), which has approximately 10% cytolytic activity compared to wild-type SLO, the formation of ring-like oligomers is markedly reduced, with incomplete arcs and the parallel arrays predominating. Chemical modification of the functional cysteine groups of SLO mutants T250C and N402C completely inhibits the formation of toxin oligomers, but does not prevent the ability of these mutants to bind to cholesterol as a linear array. Such chemical modification is also known to abolish hemolysis/cytolysis. For both mutant T250C and N402C the parallel array of bound SLO adopts an orientation that appears to be determined by the underlying lattice of the crystalline cholesterol. The cholesterol-binding of biotinylated SLO mutant N402C was confirmed by labeling in suspension with 5-nm streptavidin-conjugated colloidal gold particles. Removal of the maltose-binding protein from the SLO fusion products increases the order of the monolayer array of biotinylated SLO bound to cholesterol crystals. Overall, our data support the concept that there is sterospecific binding of the SLO monomer to crystalline cholesterol bilayers, prior to oligomer formation. With the mutants tested, cysteine modification does not prevent binding to cholesterol, but subsequent release and oligomer formation are blocked. Copyright 1998 Academic Press.

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Immunonegative Staining: Epitope Localization on Macromolecules

Relevant literature relating to immunonegative staining is reviewed and integrated with current research of the author and others. The immunonegative staining procedure has been utilized for the study of epitope localization on immune complexes formed from keyhole limpet hemocyanin type 2 (KLH2) di- and multidecamers, and the 20S and 26S proteasome from Xenopus laevis. The IgG linkage pattern of molecules in small immune complexes is considered to provide the most reliable indication of epitope location. For both KLH2 and the 20S proteasome, using domain-specific monoclonal antibodies and a 32-kDa (p32) subunit-specific polyclonal antibody, respectively, it is shown that epitopes (KLH2, subunit fg domain pair and the proteasome p32) are located on the ends of the two cylindrical molecules. Also, for KLH2 with a monoclonal antibody directed against subunit domain a, it is shown that this domain is located at the center of the KLH2 didecamer. Interpretation of the data for KLH2 indicates that the 10 subunits in each decamer are likely to be oriented in parallel. The epitopes of the 10 fg domain pairs are located on the ends, near the edge of the didecamer cylinder (i.e., at the "collar" region of the didecamer) and the epitope of the 10 a domains is located on the side wall of the didecamer cylinder, where the two decamers meet. In view of the varying shape of the Xenopus 20S proteasome immune complexes, it is tentatively proposed that there may be two p32 subunits located in each of the heptameric alpha rings rather than one, but the possibility of macromolecular heterogeneity with respect to p32 subunit composition cannot be discounted.

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