Department of Science and High Tech, C.N.I.S.M., University of Insubria, Como, Italy.
DNA Res. 2012;19(4):347-55. doi: 10.1093/dnares/dss017. Epub 2012 Jun 28.
This work concerns the identification of the alleles of the polymorphic DQB1 gene of the human leukocyte antigen system, conferring susceptibility to the development of insulin-dependent diabetes mellitus (IDDM) in non-PCR amplified DNA samples and, more importantly, in crude cell extracts. Our method is based on the time-resolved analysis of a Förster energy-transfer mechanism that occurs in a dual-labelled fluorescent probe specific for the IDDM-associated DQB1-0201 allele. Such an oligonucleotide probe is labelled, at the two ends, by a pair of chromophores that operate as donor and acceptor in a Förster resonant energy transfer. The donor fluorescence is quenched with an efficiency that is strongly dependent on the donor-to-acceptor distance, hence on the configuration of the probe after hybridization with the various DQB1 alleles. By time-correlated single-photon counting, performed with an excitation/detection system endowed with 30-ps resolution, we measure the time-resolved fluorescence decay of the donor and discriminate, by means of the decay-time value, the DNA bearing the 'susceptible' allele from the DNAs bearing any other sequence in the same region of the DQB1 gene. We could also distinguish the presence of the DQB1-0201 allele in a homozygous versus a heterozygous condition.
本工作涉及鉴定人类白细胞抗原系统多态性 DQB1 基因的等位基因,这些等位基因易导致非 PCR 扩增 DNA 样本中发生胰岛素依赖型糖尿病 (IDDM),更重要的是,在粗细胞提取物中也是如此。我们的方法基于对Förster 能量转移机制的时间分辨分析,该机制发生在针对与 IDDM 相关的 DQB1-0201 等位基因的双标记荧光探针中。这种寡核苷酸探针在两端用一对发色团标记,它们在 Förster 共振能量转移中充当供体和受体。供体荧光的猝灭效率强烈依赖于供体与受体之间的距离,因此取决于探针与各种 DQB1 等位基因杂交后的构象。通过具有 30-ps 分辨率的激发/检测系统进行时间相关单光子计数,我们测量供体的时间分辨荧光衰减,并通过衰减时间值来区分携带“易感”等位基因的 DNA 与同一 DQB1 基因区域中携带任何其他序列的 DNA。我们还可以区分 DQB1-0201 等位基因在纯合子与杂合子状态下的存在。