Department of Biochemistry, University of Western Ontario, London, Ontario N6A 3K7, Canada.
Nucleic Acids Res. 2013 Apr;41(7):e81. doi: 10.1093/nar/gkt048. Epub 2013 Feb 1.
Diagnostic DNA hybridization relies on probes composed of single copy (sc) genomic sequences. Sc sequences in probe design ensure high specificity and avoid cross-hybridization to other regions of the genome, which could lead to ambiguous results that are difficult to interpret. We examine how the distribution and composition of repetitive sequences in the genome affects sc probe performance. A divide and conquer algorithm was implemented to design sc probes. With this approach, sc probes can include divergent repetitive elements, which hybridize to unique genomic targets under higher stringency experimental conditions. Genome-wide custom probe sets were created for fluorescent in situ hybridization (FISH) and microarray genomic hybridization. The scFISH probes were developed for detection of copy number changes within small tumour suppressor genes and oncogenes. The microarrays demonstrated increased reproducibility by eliminating cross-hybridization to repetitive sequences adjacent to probe targets. The genome-wide microarrays exhibited lower median coefficients of variation (17.8%) for two HapMap family trios. The coefficients of variations of commercial probes within 300 nt of a repetitive element were 48.3% higher than the nearest custom probe. Furthermore, the custom microarray called a chromosome 15q11.2q13 deletion more consistently. This method for sc probe design increases probe coverage for FISH and lowers variability in genomic microarrays.
诊断性 DNA 杂交依赖于由单拷贝(sc)基因组序列组成的探针。探针设计中的 sc 序列可确保高度特异性,并避免与基因组的其他区域发生交叉杂交,否则可能导致难以解释的模棱两可结果。我们研究了基因组中重复序列的分布和组成如何影响 sc 探针的性能。我们实施了一种分而治之的算法来设计 sc 探针。通过这种方法,sc 探针可以包含发散的重复元件,这些元件在更高严格的实验条件下与独特的基因组靶标杂交。为荧光原位杂交(FISH)和微阵列基因组杂交创建了定制的 sc 探针组。scFISH 探针用于检测小肿瘤抑制基因和癌基因内的拷贝数变化。通过消除与探针靶标相邻的重复序列的交叉杂交,微阵列提高了可重复性。全基因组微阵列在两个 HapMap 家族三人组中显示出较低的中位数变异系数(17.8%)。距离重复元件 300 个核苷酸以内的商业探针的变异系数比最近的定制探针高 48.3%。此外,定制微阵列更一致地检测到染色体 15q11.2q13 缺失。这种 sc 探针设计方法增加了 FISH 的探针覆盖率,并降低了基因组微阵列的变异性。