Autosomal recessive mental retardation: homozygosity mapping identifies 27 single linkage intervals, at least 14 novel loci and several mutation hotspots

被引:51
作者
Kuss, Andreas Walter [1 ]
Garshasbi, Masoud [1 ,2 ]
Kahrizi, Kimia [2 ]
Tzschach, Andreas [1 ]
Behjati, Farkhondeh [2 ]
Darvish, Hossein [2 ]
Abbasi-Moheb, Lia [1 ,2 ]
Puettmann, Lucia [1 ]
Zecha, Agnes [1 ]
Weissmann, Robert [1 ]
Hu, Hao [1 ]
Mohseni, Marzieh [2 ]
Abedini, Seyedeh Sedigheh [2 ]
Rajab, Anna [3 ]
Hertzberg, Christoph [4 ]
Wieczorek, Dagmar [5 ]
Ullmann, Reinhard [1 ]
Ghasemi-Firouzabadi, Saghar [2 ]
Banihashemi, Susan [2 ]
Arzhangi, Sanaz [2 ]
Hadavi, Valeh [11 ]
Bahrami-Monajemi, Gholamreza [2 ]
Kasiri, Mahboubeh [6 ]
Falah, Masoumeh [2 ]
Nikuei, Pooneh [7 ]
Dehghan, Atefeh [8 ]
Sobhani, Masoumeh [9 ]
Jamali, Payman [10 ]
Ropers, Hans Hilger [1 ]
Najmabadi, Hossein [2 ]
机构
[1] Max Planck Inst Mol Genet, D-14195 Berlin, Germany
[2] Univ Social Welf & Rehabil Sci, Genet Res Ctr, Tehran, Iran
[3] Royal Hosp, Directorate Gen Hlth Affairs, Minist Hlth, Genet Unit, Muscat, Oman
[4] Vivantes Klinikum Neukolln, Berlin, Germany
[5] Univ Klinikum Essen, Inst Humangenet, Essen, Germany
[6] Welf Org, Share Kord, Iran
[7] Welf Org, Bandar Abbas, Iran
[8] Welf Org, Yazd, Iran
[9] Welf Org, Talesh, Iran
[10] Welf Org, Shahroud, Iran
[11] Kariminejad Najmabadi Pathol & Genet Ctr, Tehran, Iran
基金
美国国家科学基金会;
关键词
CONSANGUINEOUS FAMILIES; INTELLECTUAL DISABILITY; GENETICS; CHILDREN; PAKISTAN; DEFECT; GENES; IMPAIRMENT; PREVALENCE; TRAPPC9;
D O I
10.1007/s00439-010-0907-3
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
Mental retardation (MR) has a worldwide prevalence of around 2% and is a frequent cause of severe disability. Significant excess of MR in the progeny of consanguineous matings as well as functional considerations suggest that autosomal recessive forms of MR (ARMR) must be relatively common. To shed more light on the causes of autosomal recessive MR (ARMR), we have set out in 2003 to perform systematic clinical studies and autozygosity mapping in large consanguineous Iranian families with non-syndromic ARMR (NS-ARMR). As previously reported (Najmabadi et al. in Hum Genet 121:43-48, 2007), this led us to the identification of 12 novel ARMR loci, 8 of which had a significant LOD score (OMIM: MRT5-12). In the meantime, we and others have found causative gene defects in two of these intervals. Moreover, as reported here, tripling the size of our cohort has enabled us to identify 27 additional unrelated families with NS-ARMR and single-linkage intervals; 14 of these define novel loci for non-syndromic ARMR. Altogether, 13 out of 39 single linkage intervals observed in our cohort were found to cluster at 6 different loci on chromosomes, i.e., 1p34, 4q27, 5p15, 9q34, 11p11-q13 and 19q13, respectively. Five of these clusters consist of two significantly overlapping linkage intervals, and on chr 1p34, three single linkage intervals coincide, including the previously described MRT12 locus. The probability for this distribution to be due to chance is only 1.14 x 10(-5), as shown by Monte Carlo simulation. Thus, in contrast to our previous conclusions, these novel data indicate that common molecular causes of NS-ARMR do exist, and in the Iranian population, the most frequent ones may well account for several percent of the patients. These findings will be instrumental in the identification of the underlying genes.
引用
收藏
页码:141 / 148
页数:8
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