TY - JOUR
T1 - Dominant phenotypes produced by the HD mutation in STHdh(Q111) striatal cells
AU - Trettel, Flavia
AU - Rigamonti, Dorotea
AU - Hilditch-Maguire, Paige
AU - Wheeler, Vanessa C.
AU - Sharp, Alan H.
AU - Persichetti, Francesca
AU - Cattaneo, Elena
AU - MacDonald, Marcy E.
PY - 2000/11/22
Y1 - 2000/11/22
N2 - Lengthening a glutamine tract in huntingtin confers a dominant attribute that initiates degeneration of striatal neurons in Huntington's disease (HD). To identify pathways that are candidates for the mutant protein's abnormal function, we compared striatal cell lines established from wild-type and Hdh(Q111) knock-in embryos. Alternate versions of full-length huntingtin, distinguished by epitope accessibility, were localized to different sets of nuclear and perinuclear organelles involved in RNA biogenesis and membrane trafficking. However, mutant ST Hdh(Q111) cells also exhibited additional forms of the full-length mutant protein and displayed dominant phenotypes that did not mirror phenotypes caused by either huntingtin deficiency or excess. These phenotypes indicate a disruption of striatal cell homeostasis by the mutant protein, via a mechanism that is separate from its normal activity. They also support specific stress pathways, including elevated p53, endoplasmic reticulum stress response and hypoxia, as potential players in HD.
AB - Lengthening a glutamine tract in huntingtin confers a dominant attribute that initiates degeneration of striatal neurons in Huntington's disease (HD). To identify pathways that are candidates for the mutant protein's abnormal function, we compared striatal cell lines established from wild-type and Hdh(Q111) knock-in embryos. Alternate versions of full-length huntingtin, distinguished by epitope accessibility, were localized to different sets of nuclear and perinuclear organelles involved in RNA biogenesis and membrane trafficking. However, mutant ST Hdh(Q111) cells also exhibited additional forms of the full-length mutant protein and displayed dominant phenotypes that did not mirror phenotypes caused by either huntingtin deficiency or excess. These phenotypes indicate a disruption of striatal cell homeostasis by the mutant protein, via a mechanism that is separate from its normal activity. They also support specific stress pathways, including elevated p53, endoplasmic reticulum stress response and hypoxia, as potential players in HD.
UR - http://www.scopus.com/inward/record.url?scp=0034703869&partnerID=8YFLogxK
U2 - 10.1093/hmg/9.19.2799
DO - 10.1093/hmg/9.19.2799
M3 - Article
SN - 0964-6906
VL - 9
SP - 2799
EP - 2809
JO - Human Molecular Genetics
JF - Human Molecular Genetics
IS - 19
ER -