Fourteen neurological diseases are known to be caused by anomalous expansion of unstable trinucleotide repeats. The mechanism that links such expansions to the corresponding pathologies is still unknown. It is thought to cover a variety of mechanisms ranging from interference with nucleic acid structure and transcription to alterations in protein structure and functions. Understanding the cellular role of the proteins involved in these diseases is of primary importance to design possible therapeutical approaches. Structural biology is a powerful tool for providing a detailed description at atomic resolution of protein functions and suggesting working hypotheses which can then be tested experimentally. In this review we discuss the available structural knowledge about proteins involved in trinucleotide expansion diseases and how this may influence our current means of investigation.

A structural approach to trinucleotide expansion diseases

PASTORE, ANNALISA
2001-01-01

Abstract

Fourteen neurological diseases are known to be caused by anomalous expansion of unstable trinucleotide repeats. The mechanism that links such expansions to the corresponding pathologies is still unknown. It is thought to cover a variety of mechanisms ranging from interference with nucleic acid structure and transcription to alterations in protein structure and functions. Understanding the cellular role of the proteins involved in these diseases is of primary importance to design possible therapeutical approaches. Structural biology is a powerful tool for providing a detailed description at atomic resolution of protein functions and suggesting working hypotheses which can then be tested experimentally. In this review we discuss the available structural knowledge about proteins involved in trinucleotide expansion diseases and how this may influence our current means of investigation.
2001
Molecular Biology & Genetics considers all aspects of basic and applied genetics, including molecular genetics, prokaryotic and eukaryotic gene expression, mechanisms of mutagenesis, structure, function and regulation of genetic material. Also included are resources concerned with clinical genetics, patterns of inheritance, genetic cause, and screening and treatment of disease. Resources dealing specifically with developmentally regulated gene expression, or with signal transduction pathways that modulate gene expression at the cellular level are excluded and are covered in the Cell and Developmental Biology category.
Esperti anonimi
Inglese
Internazionale
STAMPA
56
3-4
183
189
7
2
info:eu-repo/semantics/article
262
Masino, L; Pastore, Annalisa
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1106958
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