Poddar S K
Pediatric Pharmacology Research Unit (PPRU), University of California at San Diego (UCSD), La jolla, CA 92093-0808, USA.
Mol Cell Probes. 2003 Apr-Jun;17(2-3):91-8. doi: 10.1016/s0890-8508(03)00026-4.
A beacon probe was designed to detect one of the two documented single nucleotide changes in IS481 target allele of Bordetella holmesii genome as compared to Bordetella pertussis. PCR amplified product targeting a region of IS481 in presence of the probe was subjected to a post-PCR hybridization and melting cycle. Hybrid of the probe with B. pertussis specific target had a different thermal stability than that with allele having the single nucleotide change in B. holmesii. The melting of B. pertussis-probe hybrid occurred in a single phase; while that of B. holmesii-probe hybrid was biphasic-one for allele identical to that in B. pertussis and the other for that with a single nucleotide change in B. holmesii genome, with a difference in melting temperature (T(m)) of 6.5 degrees C. The characteristic melting profile and T(m) analysis was the basis for discriminatory detection of B. pertussis from B. holmesii. The method was applied in a representative set of clinical isolates of B. pertussis and B. holmesii and the result was in agreement with conventional culture method.
设计了一种信标探针,用于检测霍氏鲍特菌基因组IS481靶等位基因中与百日咳鲍特菌相比已记录的两个单核苷酸变化之一。在探针存在的情况下,针对IS481区域的PCR扩增产物进行PCR后杂交和解链循环。探针与百日咳鲍特菌特异性靶标的杂交体具有与与霍氏鲍特菌中具有单核苷酸变化的等位基因不同的热稳定性。百日咳鲍特菌-探针杂交体的解链是单相的;而霍氏鲍特菌-探针杂交体的解链是双相的,一个是与百日咳鲍特菌中相同的等位基因,另一个是与霍氏鲍特菌基因组中具有单核苷酸变化的等位基因,解链温度(T(m))相差6.5℃。特征性的解链曲线和T(m)分析是区分百日咳鲍特菌和霍氏鲍特菌的基础。该方法应用于一组具有代表性的百日咳鲍特菌和霍氏鲍特菌临床分离株,结果与传统培养方法一致。