Vyshkina Tamara, Kalman Bernadette
Department of Neurology, Saint Luke's Roosevelt Hospital Center, Columbia University, 432 West 58th Street, Room 226, New York, NY, 10019, USA.
Hum Genet. 2005 Oct;118(1):67-75. doi: 10.1007/s00439-005-0003-2. Epub 2005 Aug 3.
We previously defined haplotypes of single nucleotide polymorphisms (SNP) with possible relevance to multiple sclerosis (MS) in 2 CC chemokine ligand (CCL) clusters in chromosome 17q11. The 17q11 region was also identified as a susceptibility locus by a meta-analysis of linkage studies. To confirm and refine the previous finding in a second, high resolution SNP scan in a new set of families. We genotyped 232 SNPs in 1369 individuals in 361 MS families. Transmission of marker alleles and haplotypes from unaffected parents to affected offspring was tested by using the pedigree disequilibrium test, the TRANSMIT 2.5 program, and the family and haplotype based association tests. Distribution of linkage disequilibrium (LD) was assessed by ldmax. In consensus with observations in the first scan, the present study identified haplotypes within CCL3 and CCL15 in the telomeric CCL cluster. There was also an overlap in the findings in the centromeric CCL cluster. Strong and extensive LD was detected both within the centromeric and telomeric CCL gene clusters. The present study replicates our previous findings and further suggests the existence of MS associated haplotypes within genes of CCL3 and CCL15. Haplotypes of interest are also present within the centromeric gene cluster (including CCL2, CCL7, CCL11, CCL8, and CCL13), but extensive LD prevents further refinement of these haplotypes by using the methods applied. Sequencing of the identified chromosomal segments and their flanking regions will be necessary to define specific variants with direct relevance to MS pathogenesis.
我们之前在17号染色体q11区域的2个CC趋化因子配体(CCL)簇中定义了可能与多发性硬化症(MS)相关的单核苷酸多态性(SNP)单倍型。通过连锁研究的荟萃分析,17q11区域也被确定为一个易感位点。为了在一组新的家族中进行第二次高分辨率SNP扫描以证实和完善之前的发现,我们对361个MS家族的1369名个体中的232个SNP进行了基因分型。使用家系不平衡检验、TRANSMIT 2.5程序以及基于家族和单倍型的关联检验,来检测标记等位基因和单倍型从未受影响的父母向受影响后代的传递情况。通过ldmax评估连锁不平衡(LD)的分布。与首次扫描的观察结果一致,本研究在端粒CCL簇中的CCL3和CCL15内鉴定出了单倍型。在着丝粒CCL簇的研究结果中也存在重叠。在着丝粒和端粒CCL基因簇内均检测到强烈且广泛的LD。本研究重复了我们之前的发现,并进一步表明在CCL3和CCL15基因内存在与MS相关的单倍型。在着丝粒基因簇(包括CCL2、CCL7、CCL11、CCL8和CCL13)中也存在感兴趣的单倍型,但广泛的LD使得无法通过所应用的方法进一步细化这些单倍型。对已鉴定的染色体片段及其侧翼区域进行测序,对于确定与MS发病机制直接相关的特定变异是必要的。