Huntington’s disease (HD), with its selective neuronal cell loss, is caused by an elongated glutamine tract in the huntingtin protein. To discover the pathways that are candidates for the protein’s normal and/or abnormal function, we surveyed 19 classes of organelle in Hdhex4/5/Hdhex4/5 knock-out compared with wild-type embryonic stem cells to identify any that might be affected by huntingtin deficiency. Although the majority did not differ, dramatic changes in six classes revealed that huntingtin’s function is essential for the normal nuclear (nucleoli, transcription factor-speckles) and perinuclear membrane (mitochondria, endoplasmic reticulum, Golgi and recycling endosomes) organelles and for proper regulation of the iron pathway. Moreover, upmodulation by deferoxamine mesylate implicates huntingtin as an iron-response protein. However, excess huntingtin produced abnormal organelles that resemble the deficiency phenotype, suggesting the importance of huntingtin level to the protein’s normal pathway. Thus, organelles that require huntingtin to function suggest roles for the protein in RNA biogenesis, trafficking and iron homeostasis to be explored in HD pathogenesis.

Huntingtin: an iron-regulated protein essential for normal nuclear and perinuclear organelles / HILDTICH MAGUIRE, P; Trettel, Flavia; PASSANI L., A; Auerbach, A; Persichetti, F. AND MACDONALD M. E.. - In: HUMAN MOLECULAR GENETICS. - ISSN 0964-6906. - STAMPA. - 9:(2000), pp. 2789-2797. [10.1093/hmg/9.19.2789]

Huntingtin: an iron-regulated protein essential for normal nuclear and perinuclear organelles

TRETTEL, Flavia;
2000

Abstract

Huntington’s disease (HD), with its selective neuronal cell loss, is caused by an elongated glutamine tract in the huntingtin protein. To discover the pathways that are candidates for the protein’s normal and/or abnormal function, we surveyed 19 classes of organelle in Hdhex4/5/Hdhex4/5 knock-out compared with wild-type embryonic stem cells to identify any that might be affected by huntingtin deficiency. Although the majority did not differ, dramatic changes in six classes revealed that huntingtin’s function is essential for the normal nuclear (nucleoli, transcription factor-speckles) and perinuclear membrane (mitochondria, endoplasmic reticulum, Golgi and recycling endosomes) organelles and for proper regulation of the iron pathway. Moreover, upmodulation by deferoxamine mesylate implicates huntingtin as an iron-response protein. However, excess huntingtin produced abnormal organelles that resemble the deficiency phenotype, suggesting the importance of huntingtin level to the protein’s normal pathway. Thus, organelles that require huntingtin to function suggest roles for the protein in RNA biogenesis, trafficking and iron homeostasis to be explored in HD pathogenesis.
2000
DISEASE GENE-PRODUCT, EMBRYONIC LETHALITY, MUTANT HUNTINGTIN, CELL-LINES, WILD-TYPE, IN-VIVO, LOCALIZATION, HOMOLOG, BRAIN, IDENTIFICATION
01 Pubblicazione su rivista::01a Articolo in rivista
Huntingtin: an iron-regulated protein essential for normal nuclear and perinuclear organelles / HILDTICH MAGUIRE, P; Trettel, Flavia; PASSANI L., A; Auerbach, A; Persichetti, F. AND MACDONALD M. E.. - In: HUMAN MOLECULAR GENETICS. - ISSN 0964-6906. - STAMPA. - 9:(2000), pp. 2789-2797. [10.1093/hmg/9.19.2789]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/142041
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