Modulation of age at onset of Huntington disease patients by variations in TP53 and human caspase activated DNase (hCAD) genes

被引:31
作者
Chattopadhyay, B [1 ]
Baksi, K [1 ]
Mukhopadhyay, S [1 ]
Bhattacharyya, NP [1 ]
机构
[1] Saha Inst Nucl Phys, Crystallog & Mol Biol Div, Kolkata 700064, W Bengal, India
关键词
Huntingtin; TP53; hCAD; polymorphism;
D O I
10.1016/j.neulet.2004.10.018
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Variation of age at onset (AO) in Huntington's disease (HD) cannot be explained by the number of CAG repeats alone in the mutant alleles of the gene huntingtin (Htt). Given the ability of expanded polyglutamine (poly-Q) tract present in Htt protein to interact with other proteins and increased neuronal cell death by apoptosis, variations in the genes coding for htt-interacting proteins and those involved in apoptosis are likely to alter the AO in HI). In the present investigation, we studied two single nucleotide polymorphisms (SNPs), namely, R72P in TP53 gene coding for transcription factor p53, which interacts with Htt protein and R196K in human caspase activated DNase (hCAD) gene involved in apoptosis to investigate their role as genetic modifiers of the AO of HD. Multiple linear regression analysis revealed that variations in TP53 and hCAD genes explained 12.6% and 6%, respectively, of the variance in the AO of HD after accounting for the effect of expanded CAG repeats. Statistical analysis further showed a significant effect of the interaction term between expanded CAG repeats and variations at each of TP53 and hCAD genes upon the AO. This data demonstrated that variations in TP53 and hCAD genes modulate the AO of HD. (c) 2004 Published by Elsevier Ireland Ltd.
引用
收藏
页码:81 / 86
页数:6
相关论文
共 21 条
[1]   Ciliary neurotrophic factor protects striatal output neurons in an animal model of Huntington disease [J].
Anderson, KD ;
Panayotatos, N ;
Corcoran, TL ;
Lindsay, RM ;
Wiegand, SJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1996, 93 (14) :7346-7351
[2]   Expression of brain-derived neurotrophic factor in cortical neurons is regulated by striatal target area [J].
Canals, JM ;
Checa, N ;
Marco, S ;
Åkerud, P ;
Michels, A ;
Pérez-Navarro, E ;
Tolosa, E ;
Arenas, E ;
Alberch, J .
JOURNAL OF NEUROSCIENCE, 2001, 21 (01) :117-124
[3]   Modulation of age at onset in Huntington's disease and spinocerebellar ataxia type 2 patients originated from eastern India [J].
Chattopadhyay, B ;
Ghosh, S ;
Gangopadhyay, PK ;
Das, SK ;
Roy, T ;
Sinha, KK ;
Jha, DK ;
Mukherjee, SC ;
Chakraborty, A ;
Singhal, BS ;
Bhattacharya, AK ;
Bhattacharyya, NP .
NEUROSCIENCE LETTERS, 2003, 345 (02) :93-96
[4]   Interaction of normal and expanded CAG repeat sizes influences age at onset of Huntington disease [J].
Djoussé, L ;
Knowlton, B ;
Hayden, M ;
Almqvist, EW ;
Brinkman, R ;
Ross, C ;
Margolis, R ;
Rosenblatt, A ;
Durr, A ;
Dode, C ;
Morrison, PJ ;
Novelletto, A ;
Frontali, M ;
Trent, RJA ;
McCusker, E ;
Gómez-Tortosa, E ;
Mayo, D ;
Jones, R ;
Zanko, A ;
Nance, M ;
Abramson, R ;
Suchowersky, O ;
Paulsen, J ;
Harrison, M ;
Yang, Q ;
Cupples, LA ;
Gusella, JF ;
MacDonald, ME ;
Myers, RH .
AMERICAN JOURNAL OF MEDICAL GENETICS PART A, 2003, 119A (03) :279-282
[5]   The codon 72 polymorphic variants of p53 have markedly different apoptotic potential [J].
Dumont, P ;
Leu, JIJ ;
Della Pietra, AC ;
George, DL ;
Murphy, M .
NATURE GENETICS, 2003, 33 (03) :357-365
[6]   A caspase-activated DNase that degrades DNA during apoptosis, and its inhibitor ICAD [J].
Enari, M ;
Sakahira, H ;
Yokoyama, H ;
Okawa, K ;
Iwamatsu, A ;
Nagata, S .
NATURE, 1998, 391 (6662) :43-50
[7]   Protein aggregation in Huntington's disease [J].
Hoffner, G ;
Djian, P .
BIOCHIMIE, 2002, 84 (04) :273-278
[8]   The Gln-Ala repeat transcriptional activator CA150 interacts with huntingtin:: Neuropathologic and genetic evidence for a role in Huntington's disease pathogenesis [J].
Holbert, S ;
Denghien, I ;
Kiechle, T ;
Rosenblatt, A ;
Wellington, C ;
Hayden, MR ;
Margolis, RL ;
Ross, CA ;
Dausset, J ;
Ferrante, RJ ;
Néri, C .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (04) :1811-1816
[9]   MOLECULAR ANALYSIS OF LATE-ONSET HUNTINGTONS-DISEASE [J].
KREMER, B ;
SQUITIERI, F ;
TELENIUS, H ;
ANDREW, SE ;
THEILMANN, J ;
SPENCE, N ;
GOLDBERG, YP ;
HAYDEN, MR .
JOURNAL OF MEDICAL GENETICS, 1993, 30 (12) :991-995
[10]   A genome scan for modifiers of age at onset in Huntington disease:: The HD MAPS study [J].
Li, JL ;
Hayden, MR ;
Almqvist, EW ;
Brinkman, RR ;
Durr, A ;
Dodé, C ;
Morrison, PJ ;
Suchowersky, O ;
Ross, CA ;
Margolis, RL ;
Rosenblatt, A ;
Gómez-Tortosa, E ;
Cabrero, DM ;
Novelletto, A ;
Frontali, M ;
Nance, M ;
Trent, RJA ;
McCusker, E ;
Jones, R ;
Paulsen, JS ;
Harrison, M ;
Zanko, A ;
Abramson, RK ;
Russ, AL ;
Knowlton, B ;
Djoussé, L ;
Mysore, JS ;
Tariot, S ;
Gusella, MF ;
Wheeler, VC ;
Atwood, LD ;
Cupples, LA ;
Saint-Hilaire, M ;
Cha, JHJ ;
Hersch, SM ;
Koroshetz, WJ ;
Gusella, JF ;
MacDonald, ME ;
Myers, RH .
AMERICAN JOURNAL OF HUMAN GENETICS, 2003, 73 (03) :682-687