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Dive into the research topics where William J. Knowles is active.

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Featured researches published by William J. Knowles.


Journal of Clinical Investigation | 1983

Molecular and functional changes in spectrin from patients with hereditary pyropoikilocytosis.

William J. Knowles; Jon S. Morrow; David W. Speicher; H S Zarkowsky; Narla Mohandas; W C Mentzer; S B Shohet; Vincent T. Marchesi

The structural and functional properties of spectrin from normal and hereditary pyropoikilocytosis (HPP) donors from the two unrelated families were studied. The structural domains of the spectrin molecule were generated by mild tryptic digestion and analyzed by two-dimensional electrophoresis (isoelectric focusing; sodium dodecyl sulfate-polyacrylamide gel electrophoresis). The alpha I-T80 peptide (Mr 80,000) is not detectable in two related HPP donors; instead, two new peptides (Mr 50,000 and 21,000) are generated and have been identified as fragments of the normal alpha I-T80. A third sibling has reduced levels of both the normal alpha I-T80 and the two new peptides. A similar analysis of spectrin from another HPP family indicates that their spectrins contain reduced amounts of the alpha I-T80 and the 50,000 and 21,000 fragments of the alpha I domain. The HPP donor also has other structural variations in the alpha I, alpha II, and alpha III domains. The alpha I-T80 domain of normal spectrin has been shown to be an important site for spectrin oligomerization (J. Morrow and V.T. Marchesi. 1981. J. Cell Biol. 88: 463-468), and in vitro assays indicate that HPP spectrin has an impaired ability to oligomerize. Ghost membranes from HPP donors are also more fragile than membranes from normal erythrocytes when measured by ektacytometry. In both the oligomerization and fragility assays, the degree of impairment is correlated with the amount of normal alpha I-T80 present in the spectrin molecule. We believe that a structural alteration in the alpha I-T80 domain perturbs normal in vivo oligomerization of spectrin, producing a marked decrease in erythrocyte stability.


Journal of Biological Chemistry | 1982

A structural model of human erythrocyte spectrin. Alignment of chemical and functional domains.

David W. Speicher; Jon S. Morrow; William J. Knowles; Vincent T. Marchesi


Proceedings of the National Academy of Sciences of the United States of America | 1980

Identification of functional domains of human erythrocyte spectrin

Jon S. Morrow; David W. Speicher; William J. Knowles; C J Hsu; Vincent T. Marchesi


Proceedings of the National Academy of Sciences of the United States of America | 1980

Identification of proteolytically resistant domains of human erythrocyte spectrin.

David W. Speicher; Jon S. Morrow; William J. Knowles; Vincent T. Marchesi


Archive | 1985

Binding of antibody reagents to denatured protein analytes

William J. Knowles; Vincent T. Marchesi


Archive | 1984

Nucleic acid-protein conjugate used in immunoassay

Nanibhushan Dattagupta; William J. Knowles; Vincent T. Marchesi; Donald M. Crothers


Archive | 1985

Antibodies for use in determining hemoglobin A1c

William J. Knowles; Vincent T. Marchesi; Wallace Haigh


Archive | 1993

Diagnosis of IDDM with a panel of immunoreagents.

Daniel U Rabin; William J. Knowles


Archive | 1985

Peptides useful in preparing hemoglobin A1c immunogens

William J. Knowles; Vincent T. Marchesi; Wallace Haigh


Journal of Biological Chemistry | 1982

Monoclonal antibodies as probes of domain structure of the spectrin alpha subunit.

P D Yurchenco; David W. Speicher; Jon S. Morrow; William J. Knowles; Vincent T. Marchesi

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Narla Mohandas

Lawrence Berkeley National Laboratory

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