A DNA replication mechanism for generating nonrecurrent rearrangements associated with genomic disorders

被引:693
作者
Lee, Jennifer A. [1 ]
Carvalho, Claudia M. B. [1 ]
Lupski, James R. [1 ,2 ,3 ]
机构
[1] Baylor Coll Med, Dept Mol & Human Genet, Houston, TX 77030 USA
[2] Baylor Coll Med, Dept Pediat, Houston, TX 77030 USA
[3] Texas Childrens Hosp, Houston, TX 77030 USA
关键词
D O I
10.1016/j.cell.2007.11.037
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The prevailing mechanism for recurrent and some nonrecurrent rearrangements causing genomic disorders is nonallelic homologous recombination (NAHR) between region-specific low-copy repeats (LCRs). For other nonrecurrent rearrangements, nonhomologous end joining (NHEJ) is implicated. Pelizaeus-Merzbacher disease (PMD) is an X-linked dysmyelinating disorder caused most frequently (60%-70%) by nonrecurrent duplication of the dosage-sensitive proteolipid protein 1 (PLP1) gene but also by nonrecurrent deletion or point mutations. Many PLP1 duplication junctions are refractory to breakpoint sequence analysis, an observation inconsistent with a simple recombination mechanism. Our current analysis of junction sequences in PMD patients confirms the occurrence of simple tandem PLP1 duplications but also uncovers evidence for sequence complexity at some junctions. These data are consistent with a replication-based mechanism that we term FoSTeS, for replication Fork Stalling and Template Switching. We propose that complex duplication and deletion rearrangements associated with PMD, and potentially other nonrecurrent rearrangements, may be explained by this replication-based mechanism.
引用
收藏
页码:1235 / 1247
页数:13
相关论文
共 51 条
[1]   Non-B DNA conformations, genomic rearrangements, and human disease [J].
Bacolla, A ;
Wells, RD .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2004, 279 (46) :47411-47414
[2]  
Blanco-Rodríguez J, 2002, J ANDROL, V23, P484
[3]  
Blanco-Rodríguez J, 2002, J ANDROL, V23, P182
[4]   Phenotype associated with APP duplication in five families [J].
Cabrejo, Lucie ;
Guyant-Marechal, Lucie ;
Laquerriere, Annie ;
Vercelletto, Martine ;
De la Fourniere, Francois ;
Thomas-Anterion, Catherine ;
Verny, Christophe ;
Letournel, Franck ;
Pasquier, Florence ;
Vital, Anne ;
Checler, Frederic ;
Frebourg, Thierry ;
Campion, Dominique ;
Hannequin, Didier .
BRAIN, 2006, 129 :2966-2976
[5]   α-synuclein locus duplication as a cause of familial Parkinson's disease [J].
Chartier-Harlin, MC ;
Kachergus, J ;
Roumier, C ;
Mouroux, V ;
Douay, X ;
Lincoln, S ;
Levecque, C ;
Larvor, L ;
Andrieux, J ;
Hulihan, M ;
Waucquier, N ;
Defebvre, L ;
Amouyel, P ;
Farrer, M ;
Destée, A .
LANCET, 2004, 364 (9440) :1167-1169
[6]   Intrachromosomal serial replication slippage in trans gives rise to diverse genomic rearrangements involving inversions [J].
Chen, JM ;
Chuzhanova, N ;
Stenson, PD ;
Férec, C ;
Cooper, DN .
HUMAN MUTATION, 2005, 26 (04) :362-373
[7]   Increased MECP2 gene copy number as the result of genomic duplication in neurodevelopmentally delayed males [J].
del Gaudio, Daniela ;
Fang, Ping ;
Scaglia, Fernando ;
Ward, Patricia A. ;
Craigen, William J. ;
Glaze, Daniel G. ;
Neul, Jeffrey L. ;
Patel, Ankita ;
Lee, Jennifer A. ;
Irons, Mira ;
Berry, Susan A. ;
Pursley, Amber A. ;
Grebe, Theresa A. ;
Freedenberg, Debra ;
Martin, Rick A. ;
Hsich, Gary E. ;
Khera, Jena R. ;
Friedman, Neil R. ;
Zoghbi, Huda Y. ;
Eng, Christine M. ;
Lupski, James R. ;
Beaudet, Arthur L. ;
Cheung, Sau Wai ;
Roa, Benjamin B. .
GENETICS IN MEDICINE, 2006, 8 (12) :784-792
[8]   Gene copy number variation spanning 60 million years of human and primate evolution [J].
Dumas, Laura ;
Kim, Young H. ;
Karimpour-Fard, Anis ;
Cox, Michael ;
Hopkins, Janet ;
Pollack, Jonathan R. ;
Sikela, James M. .
GENOME RESEARCH, 2007, 17 (09) :1266-1277
[9]   Comparison of kindreds with parkinsonism and α-synuclein genomic multiplications [J].
Farrer, M ;
Kachergus, J ;
Forno, L ;
Lincoln, S ;
Wang, DS ;
Hulihan, M ;
Maraganore, D ;
Gwinn-Hardy, K ;
Wszolek, Z ;
Dickson, D ;
Langston, JW .
ANNALS OF NEUROLOGY, 2004, 55 (02) :174-179
[10]   DNA repeat rearrangements mediated by DnaK-dependent replication fork repair [J].
Goldfless, SJ ;
Morag, AS ;
Belisle, KA ;
Sutera, VA ;
Lovett, ST .
MOLECULAR CELL, 2006, 21 (05) :595-604