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Glutamine repeats and inherited neurodegenerative diseases: molecular aspects
Authors:MF Perutz
Institution:MRC Laboratory of Molecular Biology, Hills Road, Cambridge CB2 2QH, UK
Abstract:Several dominantly inherited, late onset, neurodegenerative diseases are due to expansion of CAG repeats, leading to expansion of glutamine repeats in the affected proteins. These proteins are of very different sizes and, with one exception, show no sequence homology to known proteins or to each other; their functions are unknown. In some, the glutamine repeat starts near the N-terminus, in another near the middle and in another near the C-terminus, but regardless of these differences, no disease has been observed in individuals with fewer than 37 repeats, and absence of disease has never been found in those with more than 41 repeats. Protein constructs with more than 41 repeats are toxic to E. coli and to CHO cells in culture, and they elicit ataxia in transgenic mice. These observations argue in favour of a distinct change of structure associated with elongation beyond 37–41 glutamine repeats. The review describes experiments designed to find out what these structures might be and how they could influence the properties of the proteins of which they form part. Poly- -glutamines form pleated sheets of β-strands held together by hydrogen bonds between their amides. Incorporation of glutamine repeats into a small protein of known structure made it associate irreversibly into oligomers. That association took place during the folding of the protein molecules and led to their becoming firmly interlocked by either strand- or domain-swapping. Thermodynamic considerations suggest that elongation of glutamine repeats beyond a certain length may lead to a phase change from random coils to hydrogen-bonded hairpins. Possible mechanisms of expansion of CAG repeats are discussed in the light of looped DNA model structures.
Keywords:Abbreviations: CHO cells Chinese hamster ovary cells  Cl2 chymotrypsin inhibitor-2  DRPLA dentatorubral-pallidoluysian atrophy  GAPDH glyceraldehyde phosphate dehydrogenase  GST glutathione-S-transferase  HD Huntington's disease  d-galactoside" target="_blank">IPTG isopropylthio-d-galactoside  MJD Machado-Joseph disease  SBMA spinal and bulbar muscular dystrophy  SCA spinocerebellar atrophy  SDS sodium dodecylsulfate
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