Meiotic recombination and spatial proximity in the etiology of the recurrent t(11;22)

被引:36
作者
Ashley, Terry
Gaeth, Ann P.
Inagaki, Hidehito
Seftel, Allen
Cohen, Maimon M.
Anderson, Lorinda K.
Kurahashi, Hiroki
Emanuel, Beverly S.
机构
[1] Childrens Hosp Philadelphia, Div Human Genet, Philadelphia, PA 19104 USA
[2] Univ Penn, Sch Med, Philadelphia, PA 19104 USA
[3] Yale Univ, Sch Med, Dept Genet, New Haven, CT 06510 USA
[4] Fujita Hlth Univ, Inst Comprehens Med Sci, Div Mol Genet, Aichi, Japan
[5] Univ Hosp Cleveland, Cleveland, OH 44106 USA
[6] Case Western Reserve Univ, Dept Urol, Cleveland, OH 44106 USA
[7] Cleveland VA Med Ctr, Cleveland, OH USA
[8] Greater Baltimore Med Ctr, Harvey Inst Human Genet, Baltimore, MD USA
[9] Colorado State Univ, Dept Biol, Ft Collins, CO 80523 USA
关键词
D O I
10.1086/507652
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Although balanced translocations are among the most common human chromosomal aberrations, the constitutional t(11; 22)(q23;q11) is the only known recurrent non-Robertsonian translocation. Evidence indicates that de novo formation of the t( 11; 22) occurs during meiosis. To test the hypothesis that spatial proximity of chromosomes 11 and 22 in meiotic prophase oocytes and spermatocytes plays a role in the rearrangement, the positions of the 11q23 and 22q11 translocation breakpoints were examined. Fluorescence in situ hybridization with use of DNA probes for these sites demonstrates that 11q23 is closer to 22q11 in meiosis than to a control at 6q26. Although chromosome 21p11, another control, often lies as close to 11q23 as does 22q11 during meiosis, chromosome 21 rarely rearranges with 11q23, and the DNA sequence of chromosome 21 appears to be less susceptible than 22q11 to double-strand breaks (DSBs). It has been suggested that the rearrangement recurs as a result of the palindromic AT-rich repeats at both 11q23 and 22q11, which extrude hairpin structures that are susceptible to DSBs. To determine whether the DSBs at these sites coincide with normal hotspots of meiotic recombination, immunocytochemical mapping of MLH1, a protein involved in crossing over, was employed. The results indicate that the translocation breakpoints do not coincide with recombination hotspots and therefore are unlikely to be the result of meiotic programmed DSBs, although MRE11 is likely to be involved. Previous analysis indicated that the DSBs appear to be repaired by a mechanism similar to nonhomologous end joining (NHEJ), although NHEJ is normally suppressed during meiosis. Taken together, these studies support the hypothesis that physical proximity between 11q23 and 22q11 - but not typical meiotic recombinational activity in meiotic prophase - plays an important role in the generation of the constitutional t( 11; 22) rearrangement.
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页码:524 / 538
页数:15
相关论文
共 72 条
[21]   THE 11Q-22Q TRANSLOCATION - A EUROPEAN COLLABORATIVE ANALYSIS OF 43 CASES [J].
FRACCARO, M ;
LINDSTEN, J ;
FORD, CE ;
ISELIUS, L ;
ANTONELLI, A ;
AULA, P ;
AURIAS, A ;
BAIN, AD ;
BARTSCHSANDHOFF, M ;
BERNARDI, F ;
BOYD, E ;
BUCHANAN, LF ;
CAMERON, AH ;
DELACHAPELLE, A ;
CIUFFA, G ;
CUOCO, C ;
DUTRILLAUX, B ;
DUTTON, G ;
FERGUSONSMITH, MA ;
FRANCESCONI, D ;
GERAEDTS, JPM ;
GIMELLI, G ;
GUEGUEN, J ;
GARSNER, E ;
HAGEMEIJER, A ;
HANSEN, FJ ;
HOLLINGS, PE ;
HUSTINX, TWJ ;
KAAKINEN, A ;
VANDEKAMP, JJP ;
KOSKULL, HV ;
LEJEUNE, J ;
LINDENBAUM, RH ;
MCCREANOR, HR ;
MIKKELSEN, M ;
MITELMAN, F ;
NICOLETTI, B ;
NILSBY, I ;
NILSSON, A ;
NOEL, B ;
PADOVANI, E ;
PASQUALI, F ;
PATER, JD ;
PEDERSEN, C ;
PETERSEN, F ;
ROBSON, EB ;
ROTMAN, J ;
RYYNANEN, M ;
SACHS, E ;
SALAT, J .
HUMAN GENETICS, 1980, 56 (01) :21-51
[22]   Male mouse recombination maps for each autosome identified by chromosome painting [J].
Froenicke, L ;
Anderson, LK ;
Wienberg, J ;
Ashley, T .
AMERICAN JOURNAL OF HUMAN GENETICS, 2002, 71 (06) :1353-1368
[23]   Der(22) syndrome and velo-cardio-facial syndrome/DiGeorge syndrome share a 1.5-Mb region of overlap on chromosome 22q11 [J].
Funke, B ;
Edelmann, L ;
McCain, N ;
Pandita, RK ;
Ferreira, J ;
Merscher, S ;
Zohouri, M ;
Cannizzaro, L ;
Shanske, A ;
Morrow, BE .
AMERICAN JOURNAL OF HUMAN GENETICS, 1999, 64 (03) :747-758
[24]   V(D)J recombination: RAG proteins, repair factors, and regulation [J].
Gellert, M .
ANNUAL REVIEW OF BIOCHEMISTRY, 2002, 71 :101-132
[25]   Mre11 and Ku70 interact in somatic cells, but are differentially expressed in early meiosis [J].
Goedecke, W ;
Eijpe, M ;
Offenberg, HH ;
van Aalderen, M ;
Heyting, C .
NATURE GENETICS, 1999, 23 (02) :194-198
[26]   A palindrome-mediated mechanism distinguishes translocations involving LCR-B of chromosome 22q11.2 [J].
Gotter, AL ;
Shaikh, TH ;
Budarf, ML ;
Rhodes, CH ;
Emanuel, BS .
HUMAN MOLECULAR GENETICS, 2004, 13 (01) :103-115
[27]   Function of DNA-protein kinase catalytic subunit during the early meiotic prophase without Ku70 and Ku86 [J].
Hamer, G ;
Roepers-Gajadien, HL ;
van Duyn-Goedhart, A ;
Gademan, IS ;
Kal, HB ;
van Buul, PPW ;
Ashley, T ;
de Rooij, DG .
BIOLOGY OF REPRODUCTION, 2003, 68 (03) :717-721
[28]   Genetic variation affects de novo translocation frequency [J].
Kato, T ;
Inagaki, H ;
Yamada, K ;
Kogo, H ;
Ohye, T ;
Kowa, H ;
Nagaoka, K ;
Taniguchi, M ;
Emanuel, BS ;
Kurahashi, H .
SCIENCE, 2006, 311 (5763) :971-971
[29]   Meiosis-specific DNA double-strand breaks are catalyzed by Spo11, a member of a widely conserved protein family [J].
Keeney, S ;
Giroux, CN ;
Kleckner, N .
CELL, 1997, 88 (03) :375-384
[30]   The second case of a t(17;22) in a family with neurofibromatosis type 1: Sequence analysis of the breakpoint regions [J].
KehrerSawatzki, H ;
Haussler, J ;
Krone, W ;
Bode, H ;
Jenne, DE ;
Mehnert, KU ;
Tummers, U ;
Assum, G .
HUMAN GENETICS, 1997, 99 (02) :237-247