Membrane studies in Huntington's disease: steady-state fluorescence studies of intact erythrocytes. 1980

J W Pettegrew, and J S Nichols, and R M Stewart

Recent evidence suggests that a membrane abnormality may be present in Huntington's disease (HD), including peripheral tissues such as erythrocytes. Steady-state fluorescence spectroscopy was performed on intact erythrocytes from patients with HD and from normal age- and sex-matched controls. Fluorescent probes with known specificity for certain membrane areas were used to survey membrane dynamics; these probes included fluorescamine, which binds to primary amines on the cell surface, and both 12(9)-anthroyl stearate, 12(9)AS, and 2(9)-anthroyl stearate, 2(9)AS, which insert at different depths in the hydrocarbon core of membranes. In the intact HD erythrocyte, fluorescamine revealed decreased polarization, 12(9)AS showed increased polarization, and 2(9)AS showed no difference as compared to normal erythrocytes. These studies suggest that fluorescamine, attached to primary amines of the cell surface in intact HD erythrocytes, has increased rotational mobility whereas the anthroyl moiety of 12(9)AS in the hydrocarbon interior has decreased rotational mobility. These studies thus support the concept of a membrane abnormality in HD.

UI MeSH Term Description Entries
D004910 Erythrocyte Membrane The semi-permeable outer structure of a red blood cell. It is known as a red cell 'ghost' after HEMOLYSIS. Erythrocyte Ghost,Red Cell Cytoskeleton,Red Cell Ghost,Erythrocyte Cytoskeleton,Cytoskeleton, Erythrocyte,Cytoskeleton, Red Cell,Erythrocyte Cytoskeletons,Erythrocyte Ghosts,Erythrocyte Membranes,Ghost, Erythrocyte,Ghost, Red Cell,Membrane, Erythrocyte,Red Cell Cytoskeletons,Red Cell Ghosts
D004912 Erythrocytes Red blood cells. Mature erythrocytes are non-nucleated, biconcave disks containing HEMOGLOBIN whose function is to transport OXYGEN. Blood Cells, Red,Blood Corpuscles, Red,Red Blood Cells,Red Blood Corpuscles,Blood Cell, Red,Blood Corpuscle, Red,Erythrocyte,Red Blood Cell,Red Blood Corpuscle
D005454 Fluorescence Polarization Measurement of the polarization of fluorescent light from solutions or microscopic specimens. It is used to provide information concerning molecular size, shape, and conformation, molecular anisotropy, electronic energy transfer, molecular interaction, including dye and coenzyme binding, and the antigen-antibody reaction. Anisotropy, Fluorescence,Fluorescence Anisotropy,Polarization, Fluorescence,Anisotropies, Fluorescence,Fluorescence Anisotropies,Fluorescence Polarizations,Polarizations, Fluorescence
D005456 Fluorescent Dyes Chemicals that emit light after excitation by light. The wave length of the emitted light is usually longer than that of the incident light. Fluorochromes are substances that cause fluorescence in other substances, i.e., dyes used to mark or label other compounds with fluorescent tags. Flourescent Agent,Fluorescent Dye,Fluorescent Probe,Fluorescent Probes,Fluorochrome,Fluorochromes,Fluorogenic Substrates,Fluorescence Agents,Fluorescent Agents,Fluorogenic Substrate,Agents, Fluorescence,Agents, Fluorescent,Dyes, Fluorescent,Probes, Fluorescent,Substrates, Fluorogenic
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D006816 Huntington Disease A familial disorder inherited as an autosomal dominant trait and characterized by the onset of progressive CHOREA and DEMENTIA in the fourth or fifth decade of life. Common initial manifestations include paranoia; poor impulse control; DEPRESSION; HALLUCINATIONS; and DELUSIONS. Eventually intellectual impairment; loss of fine motor control; ATHETOSIS; and diffuse chorea involving axial and limb musculature develops, leading to a vegetative state within 10-15 years of disease onset. The juvenile variant has a more fulminant course including SEIZURES; ATAXIA; dementia; and chorea. (From Adams et al., Principles of Neurology, 6th ed, pp1060-4) Huntington Chorea,Juvenile Huntington Disease,Akinetic-Rigid Variant of Huntington Disease,Chorea, Chronic Progressive Hereditary (Huntington),Chronic Progressive Hereditary Chorea (Huntington),Huntington Chronic Progressive Hereditary Chorea,Huntington Disease, Akinetic-Rigid Variant,Huntington Disease, Juvenile,Huntington Disease, Juvenile-Onset,Huntington Disease, Late Onset,Huntington's Chorea,Huntington's Disease,Juvenile-Onset Huntington Disease,Late-Onset Huntington Disease,Progressive Chorea, Chronic Hereditary (Huntington),Progressive Chorea, Hereditary, Chronic (Huntington),Akinetic Rigid Variant of Huntington Disease,Chorea, Huntington,Chorea, Huntington's,Huntington Disease, Akinetic Rigid Variant,Huntington Disease, Juvenile Onset,Huntington Disease, Late-Onset,Juvenile Onset Huntington Disease,Late Onset Huntington Disease
D001703 Biophysics The study of PHYSICAL PHENOMENA and PHYSICAL PROCESSES as applied to living things. Mechanobiology
D013050 Spectrometry, Fluorescence Measurement of the intensity and quality of fluorescence. Fluorescence Spectrophotometry,Fluorescence Spectroscopy,Spectrofluorometry,Fluorescence Spectrometry,Spectrophotometry, Fluorescence,Spectroscopy, Fluorescence
D055592 Biophysical Phenomena The physical characteristics and processes of biological systems. Biophysical Concepts,Biophysical Processes,Biophysical Phenomenon,Biophysical Process,Biophysical Concept,Concept, Biophysical,Concepts, Biophysical,Phenomena, Biophysical,Phenomenon, Biophysical,Process, Biophysical,Processes, Biophysical

Related Publications

J W Pettegrew, and J S Nichols, and R M Stewart
January 1979, Transactions of the American Neurological Association,
J W Pettegrew, and J S Nichols, and R M Stewart
January 2013, Journal of Huntington's disease,
J W Pettegrew, and J S Nichols, and R M Stewart
January 1985, Photosynthesis research,
J W Pettegrew, and J S Nichols, and R M Stewart
September 1977, Biochemical and biophysical research communications,
J W Pettegrew, and J S Nichols, and R M Stewart
January 1994, Biochimica et biophysica acta,
J W Pettegrew, and J S Nichols, and R M Stewart
August 1982, Biophysical journal,
J W Pettegrew, and J S Nichols, and R M Stewart
February 1984, Biokhimiia (Moscow, Russia),
J W Pettegrew, and J S Nichols, and R M Stewart
August 1980, Life sciences,
J W Pettegrew, and J S Nichols, and R M Stewart
January 2002, Methods in molecular biology (Clifton, N.J.),
Copied contents to your clipboard!