Ligase-based multiple DNA analysis by using an electrochemical sensor array

被引:47
作者
Wan, Ying [1 ]
Zhang, Jiong [1 ]
Liu, Gang [1 ]
Pan, Dun [1 ]
Wang, Lihua [1 ]
Song, Shiping [1 ]
Fan, Chunhai [1 ]
机构
[1] Chinese Acad Sci, Shanghai Inst Appl Phys, Shanghai 201800, Peoples R China
关键词
Electrochemical detection; DNA sensors array; Ligase; SNP; SEQUENCE-SPECIFIC DETECTION; NANOPARTICLE PROBES; HYBRIDIZATION; BIOSENSORS; TARGETS;
D O I
10.1016/j.bios.2008.07.004
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
We herein report an electrochemical biosensor for the sequence-specific detection of DNA with high discrimination ability for single-nucleotide polymorphisms (SNPs). This DNA sensor was constructed by a pair of flanking probes that "sandwiched" the target. A 16-electrode electrochemical sensor array was employed, each having one individual DNA capture probe immobilized at gold electrodes via gold-thiol chemistry. By coupling with a biotin-tagged detection probe, we were able to detect multiple DNA targets with a single array. In order to realize SNP detection, a ligase-based approach was employed. In this method, both the capture probe and the detection probe were in tandem upon being hybridized with the target. Importantly, we employed a ligase that specifically could ligate tandem sequences only in the absence of mismatches. As a result, when both probes were complementary to the target, they were ligated in the presence of the ligase, thus being retained at the surface during the subsequent stringent washing steps. In contrast, if there existed 1-base mismatch, which could be efficiently recognized by the ligase, the detection probe was not ligated and subsequently washed away. A conjugate of avidin-horseradish peroxidase was then attached to the biotin label at the end of the detection probe via the biotin-avidin bridge. We then electrochemically interrogated the electrical current for the peroxidase-catalyzed reduction of hydrogen peroxide. We demonstrated that the electrochemical signal for the wild-type DNA was significantly larger than that for the sequence harboring the SNP. (c) 2008 Elsevier B.V. All rights reserved.
引用
收藏
页码:1209 / 1212
页数:4
相关论文
共 23 条
[1]  
Boon EM, 2000, NAT BIOTECHNOL, V18, P1318
[2]   Stem-loop oligonucleotides: a robust tool for molecular biology and biotechnology [J].
Broude, NE .
TRENDS IN BIOTECHNOLOGY, 2002, 20 (06) :249-256
[3]   An electrochemical DNA hybridization detection assay based on a silver nanoparticle label [J].
Cai, H ;
Xu, Y ;
Zhu, NN ;
He, PG ;
Fang, YZ .
ANALYST, 2002, 127 (06) :803-808
[4]   Electrochemical DNA sensors [J].
Drummond, TG ;
Hill, MG ;
Barton, JK .
NATURE BIOTECHNOLOGY, 2003, 21 (10) :1192-1199
[5]   Biosensors based on binding-modulated donor-acceptor distances [J].
Fan, CH ;
Plaxco, KW ;
Heeger, AJ .
TRENDS IN BIOTECHNOLOGY, 2005, 23 (04) :186-192
[6]   Electrochemical interrogation of conformational changes as a reagentless method for the sequence-specific detection of DNA [J].
Fan, CH ;
Plaxco, KW ;
Heeger, AJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2003, 100 (16) :9134-9137
[7]   Characterization of PNA and DNA immobilization and subsequent hybridization with DNA using acoustic-shear-wave attenuation measurements [J].
Höök, F ;
Ray, A ;
Nordén, B ;
Kasemo, B .
LANGMUIR, 2001, 17 (26) :8305-8312
[8]   Interference-based detection of nucleic acid targets on optically coated silicon [J].
Jenison, R ;
Yang, S ;
Haeberli, A ;
Polisky, B .
NATURE BIOTECHNOLOGY, 2001, 19 (01) :62-65
[9]   Electrochemical biosensors for DNA analysis [J].
Ju, HX ;
Zhao, HT .
FRONTIERS IN BIOSCIENCE-LANDMARK, 2005, 10 :37-46
[10]  
McGlennen RC, 2001, CLIN CHEM, V47, P393