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Wild-type Blocking PCR Combined with Direct Sequencing as a Highly Sensitive Method for Detection of Low-Frequency Somatic Mutations
Published on: March 29, 2017
Nonradioactive arbitrarily primed polymerase chain reaction: a novel technique for detecting genetic defects in skin
T Vogt1, W Stolz, M Landthaler
1Sidney Kimmel Cancer Center, La Jolla, CA 92037, USA.
Abstract:
Initiation and progression of melanocytic and non-melanocytic skin tumors are accompanied and probably caused by a variety of genetic defects. In contrast to other human tumors, however, limited amounts of available tissue in skin cancer often hamper extensive genetic studies of native material of early lesions. Therefore, we applied a novel DNA fingerprinting technique based on polymerase chain reaction (PCR), the arbitrarily primed PCR (AP-PCR). This technique enabled us to scan large parts of the genome (about 30 kb/PCR reaction) for somatic mutations starting with minute amounts of tissue. In contrast to previous reports on AP-PCR, we were able to visualize PCR products by a rapid nonradioactive silver-staining technique using a simple device for staining of large polyacrylamide gels. In nine benign and malignant melanocytic skin tumors, the method provided a set of reproducible DNA fingerprints. Genetic defects were detected by comparing the fingerprints of tumor cells and constitutive DNA from blood leukocytes. Since nonradioactive AP-PCR fingerprinting also offers the unique capability to isolate and sequence polymorphic DNA fragments from fingerprint gels, we conclude that this technique seems to be important and practically feasible for elucidating the genetic roots of skin tumors.
Insights
This study introduces arbitrarily primed PCR (AP-PCR) for skin tumor genetics. This DNA fingerprinting method detects genetic defects in small tissue samples, aiding skin cancer research.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Skin tumors arise from genetic defects.
- Limited tissue in early skin lesions hinders genetic analysis.
- Novel techniques are needed to study genetic alterations in skin cancer.
Purpose of the Study:
- To apply arbitrarily primed PCR (AP-PCR) for genetic defect detection in skin tumors.
- To overcome limitations of small tissue sample sizes in skin cancer research.
- To establish a feasible method for elucidating genetic roots of skin tumors.
Main Methods:
- Utilized arbitrarily primed PCR (AP-PCR) for DNA fingerprinting.
- Employed a rapid, nonradioactive silver-staining technique for visualizing PCR products.
- Analyzed genetic differences between tumor cells and leukocyte DNA from nine skin tumors.
Main Results:
- AP-PCR generated reproducible DNA fingerprints from melanocytic skin tumors.
- The technique successfully detected genetic defects using minute tissue amounts.
- Nonradioactive AP-PCR enabled isolation and sequencing of polymorphic DNA fragments.
Conclusions:
- AP-PCR is a valuable tool for studying genetic defects in skin tumors.
- The method is practical and feasible for analyzing small tissue samples.
- This technique can significantly advance the understanding of skin cancer genetics.
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