Single-Molecule LATE-PCR Analysis of Human Mitochondrial Genomic Sequence Variations

被引:10
作者
Osborne, Adam
Reis, Arthur H., Jr.
Bach, Loren
Wangh, Lawrence J.
机构
[1] Department of Biology, Brandeis University, Waltham, MA
关键词
THE-EXPONENTIAL (LATE)-PCR; POINT MUTATIONS; DNA; QUANTIFICATION; HETEROPLASMY;
D O I
10.1371/journal.pone.0005636
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
It is thought that changes in mitochondrial DNA are associated with many degenerative diseases, including Alzheimer's and diabetes. Much of the evidence, however, depends on correlating disease states with changing levels of heteroplasmy within populations of mitochondrial genomes, rather than individual mitochondrial genomes. Thus these measurements are likely to either overestimate the extent of heteroplasmy due to technical artifacts, or underestimate the actual level of heteroplasmy because only the most abundant changes are observable. In contrast, Single Molecule (SM) LATE-PCR analysis achieves efficient amplification of single-stranded amplicons from single target molecules. The product molecules, in turn, can be accurately sequenced using a convenient Dilute-'N'-Go protocol, as shown here. Using these novel technologies we have rigorously analyzed levels of mitochondrial genome heteroplasmy found in single hair shafts of healthy adult individuals. Two of the single molecule sequences (7% of the samples) were found to contain mutations. Most of the mtDNA sequence changes, however, were due to the presence of laboratory contaminants. Amplification and sequencing errors did not result in mis-identification of mutations. We conclude that SM-LATE-PCR in combination with Dilute-'N'-Go Sequencing are convenient technologies for detecting infrequent mutations in mitochondrial genomes, provided great care is taken to control and document contamination. We plan to use these technologies in the future to look for age, drug, and disease related mitochondrial genome changes in model systems and clinical samples.
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页数:8
相关论文
共 33 条
[21]   Linear-After-The-Exponential (LATE)-PCR: Primer design criteria for high yields of specific singlestranded DNA and improved real-time detection [J].
Pierce, KE ;
Sanchez, JA ;
Rice, JE ;
Wangh, LJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2005, 102 (24) :8609-8614
[22]   QuantiLyse™:: Reliable DNA amplification front single cells [J].
Pierce, KE ;
Rice, JE ;
Sanchez, JA ;
Wangh, LJ .
BIOTECHNIQUES, 2002, 32 (05) :1106-1111
[23]   Direct linkage of mitochondrial genome variation to risk factors for type 2 diabetes in conplastic strains [J].
Pravenec, Michal ;
Hyakukoku, Masaya ;
Houstek, Josef ;
Zidek, Vaclav ;
Landa, Vladimir ;
Mlejnek, Petr ;
Miksik, Ivan ;
Dudova-Mothejzikova, Kristyna ;
Pecina, Petr ;
Vrbacky, Marek ;
Drahota, Zdenek ;
Vojtiskova, Alena ;
Mracek, Tomas ;
Kazdova, Ludmila ;
Oliyarnyk, Olena ;
Wang, Jiaming ;
Ho, Christopher ;
Qi, Nathan ;
Sugimoto, Ken ;
Kurtz, Theodore .
GENOME RESEARCH, 2007, 17 (09) :1319-1326
[24]   Linear-After-The-Exponential (LATE)-PCR: An advanced method of asymmetric PCR and its uses in quantitative real-time analysis [J].
Sanchez, JA ;
Pierce, KE ;
Rice, JE ;
Wangh, LJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2004, 101 (07) :1933-1938
[25]   FLUORESCENCE DETECTION IN AUTOMATED DNA-SEQUENCE ANALYSIS [J].
SMITH, LM ;
SANDERS, JZ ;
KAISER, RJ ;
HUGHES, P ;
DODD, C ;
CONNELL, CR ;
HEINER, C ;
KENT, SBH ;
HOOD, LE .
NATURE, 1986, 321 (6071) :674-679
[26]   A "mitochondrial cascade hypthesis" for sporadic Alzheimer's disease [J].
Swerdlow, RH ;
Khan, SM .
MEDICAL HYPOTHESES, 2004, 63 (01) :8-20
[27]  
VANDENBOSCH BJ, 2000, NUCLEIC ACIDS RES, V28, P1
[28]   Mitochondrial point mutations do not limit the natural lifespan of mice [J].
Vermulst, Marc ;
Bielas, Jason H. ;
Kujoth, Gregory C. ;
Ladiges, Warren C. ;
Rabinovitch, Peter S. ;
Prolla, Tomas A. ;
Loeb, Lawrence A. .
NATURE GENETICS, 2007, 39 (04) :540-543
[29]   Quantification of random mutations in the mitochondrial genome [J].
Vermulst, Marc ;
Bielas, Jason H. ;
Loeb, Lawrence A. .
METHODS, 2008, 46 (04) :263-268
[30]   A family exhibiting heteroplasmy in the human mitochondrial DNA control region reveals both somatic mosaicism and pronounced segregation of mitotypes [J].
Wilson, MR ;
Polanskey, D ;
Replogle, J ;
DiZinno, JA ;
Budowle, B .
HUMAN GENETICS, 1997, 100 (02) :167-171