GAMETIC AND SOMATIC TISSUE-SPECIFIC HETEROGENEITY OF THE EXPANDED SCA1 CAG REPEAT IN SPINOCEREBELLAR ATAXIA TYPE-1

被引:166
作者
CHONG, SS
MCCALL, AE
COTA, J
SUBRAMONY, SH
ORR, HT
HUGHES, MR
ZOGHBI, HY
机构
[1] BAYLOR COLL MED,DEPT MOLEC & HUMAN GENET,HOUSTON,TX 77030
[2] BAYLOR COLL MED,DEPT PEDIAT,HOUSTON,TX 77030
[3] BAYLOR COLL MED,DEPT CELL BIOL,HOUSTON,TX 77030
[4] NIH,NATL CTR HUMAN GENOME RES,BETHESDA,MD 20892
[5] UNIV MISSISSIPPI,MED CTR,JACKSON,MS 39216
[6] UNIV MINNESOTA,INST HUMAN GENET,DEPT LAB MED & PATHOL,MINNEAPOLIS,MN 55455
关键词
D O I
10.1038/ng0795-344
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Spinocerebellar ataxia type 1 is associated with expansion of an unstable CAG repeat within the SCA1 gene. Male gametic heterogeneity of the expanded repeat is demonstrated using single sperm and low-copy genome analysis. Low-copy genome analysis of peripheral blood also reveals somatic heterogeneity of the expanded SCA1 allele, thus establishing mitotic instability at this locus. Comparative analysis of a large normal allele and a small affected allele suggests a role of midstream CAT interspersions in stabilizing long (CAG)(n) stretches. Within the brain, tissue-specific mosaicism of the expanded allele is also observed. The differences in SCA1 allele heterogeneity between sperm and blood and within the brain parallels the findings in Huntington disease, suggesting that both disorders share a common mechanism for tissue-specific instability.
引用
收藏
页码:344 / 350
页数:7
相关论文
共 40 条
[1]  
ANDREW SE, 1993, NAT GENET, V4, P387
[2]   IDENTIFICATION AND CHARACTERIZATION OF THE GENE CAUSING TYPE-1 SPINOCEREBELLAR ATAXIA [J].
BANFI, S ;
SERVADIO, A ;
CHUNG, MY ;
KWIATKOWSKI, TJ ;
MCCALL, AE ;
DUVICK, LA ;
SHEN, Y ;
ROTH, EJ ;
ORR, HT ;
ZOGHBI, HY .
NATURE GENETICS, 1994, 7 (04) :513-520
[3]   THE HAW-RIVER-SYNDROME - DENTATORUBROPALLIDOLUYSIAN ATROPHY (DRPLA) IN AN AFRICAN-AMERICAN FAMILY [J].
BURKE, JR ;
WINGFIELD, MS ;
LEWIS, KE ;
ROSES, AD ;
LEE, JE ;
HULETTE, C ;
PERICAKVANCE, MA ;
VANCE, JM .
NATURE GENETICS, 1994, 7 (04) :521-524
[4]   PREIMPLANTATION PREVENTION OF X-LINKED DISEASE - RELIABLE AND RAPID SEX DETERMINATION OF SINGLE HUMAN-CELLS BY RESTRICTION ANALYSIS OF SIMULTANEOUSLY AMPLIFIED ZFX AND ZFY SEQUENCES [J].
CHONG, SS ;
KRISTJANSSON, K ;
COTA, J ;
HANDYSIDE, AH ;
HUGHES, MR .
HUMAN MOLECULAR GENETICS, 1993, 2 (08) :1187-1191
[5]   EVIDENCE FOR A MECHANISM PREDISPOSING TO INTERGENERATIONAL CAG REPEAT INSTABILITY IN SPINOCEREBELLAR ATAXIA TYPE-I [J].
CHUNG, MY ;
RANUM, LPW ;
DUVICK, LA ;
SERVADIO, A ;
ZOGHBI, HY ;
ORR, HT .
NATURE GENETICS, 1993, 5 (03) :254-258
[6]   SPINOCEREBELLAR ATAXIA - STUDY OF A LARGE KINDRED .1. GENERAL INFORMATION AND GENETICS [J].
CURRIER, RD ;
TIPTON, AC ;
GLOVER, G ;
JACKSON, JF .
NEUROLOGY, 1972, 22 (10) :1040-&
[7]   TRINUCLEOTIDE REPEAT LENGTH INSTABILITY AND AGE-OF-ONSET IN HUNTINGTONS-DISEASE [J].
DUYAO, M ;
AMBROSE, C ;
MYERS, R ;
NOVELLETTO, A ;
PERSICHETTI, F ;
FRONTALI, M ;
FOLSTEIN, S ;
ROSS, C ;
FRANZ, M ;
ABBOTT, M ;
GRAY, J ;
CONNEALLY, P ;
YOUNG, A ;
PENNEY, J ;
HOLLINGSWORTH, Z ;
SHOULSON, I ;
LAZZARINI, A ;
FALEK, A ;
KOROSHETZ, W ;
SAX, D ;
BIRD, E ;
VONSATTEL, J ;
BONILLA, E ;
ALVIR, J ;
CONDE, JB ;
CHA, JH ;
DURE, L ;
GOMEZ, F ;
RAMOS, M ;
SANCHEZRAMOS, J ;
SNODGRASS, S ;
DEYOUNG, M ;
WEXLER, N ;
MOSCOWITZ, C ;
PENCHASZADEH, G ;
MACFARLANE, H ;
ANDERSON, M ;
JENKINS, B ;
SRINIDHI, J ;
BARNES, G ;
GUSELLA, J ;
MACDONALD, M .
NATURE GENETICS, 1993, 4 (04) :387-392
[8]   LENGTH OF UNINTERRUPTED CGG REPEATS DETERMINES INSTABILITY IN THE FMR1 GENE [J].
EICHLER, EE ;
HOLDEN, JJA ;
POPOVICH, BW ;
REISS, AL ;
SNOW, K ;
THIBODEAU, SN ;
RICHARDS, CS ;
WARD, PA ;
NELSON, DL .
NATURE GENETICS, 1994, 8 (01) :88-94
[9]   MOLECULAR ANALYSIS OF NEW MUTATIONS FOR HUNTINGTONS-DISEASE - INTERMEDIATE ALLELES AND SEX OF ORIGIN EFFECTS [J].
GOLDBERG, YP ;
KREMER, B ;
ANDREW, SE ;
THEILMANN, J ;
GRAHAM, RK ;
SQUITIERI, F ;
TELENIUS, H ;
ADAM, S ;
SAJOO, A ;
STARR, E ;
HEIBERG, A ;
WOLFF, G ;
HAYDEN, MR .
NATURE GENETICS, 1993, 5 (02) :174-179
[10]  
Greenfield JG., 1954, SPINO CEREBELLAR DEG