TY - JOUR
T1 - Mutational scanning of large genes by extensive PCR multiplexing and two-dimensional electrophoresis
T2 - Application to the RB1 gene
AU - Van Orsouw, Nathalie J.
AU - Li, Daizong
AU - Van Der Vlies, Pieter
AU - Scheffer, Hans
AU - Eng, Charis
AU - Buys, Charles H.C.M.
AU - Li, Frederick P.
AU - Vijg, Jan
PY - 1996/6
Y1 - 1996/6
N2 - With the rapid increase in the number of identified human disease genes, the development of accurate and cost-efficient mutation tests has become opportune. Here we present a combination of extensive PCR multiplexing and two-dimensional (2-D) DNA electrophoresis to screen for mutations in 26 exons of the retinoblastoma (RB1) tumor suppressor gene. In 2-D electrophoresis, fragments are separated according to size and base pair sequence in non-denaturing and denaturing gradient gels, respectively. All target fragments, designed to have optimal melting characteristics, were prepared in a two-step PCR (a 6-plex long-PCR pre-amplification and a subsequent 25-plex short-PCR) followed by heteroduplexing. The mixture of PCR amplicons was then subjected to 2-D electrophoresis under a single set of experimental conditions. With this design, 35 previously identified mutations in 18 different exons were detected in 33 bilateral retinoblastoma patients. These results suggest that 2-D electrophoresis in this format provides a generally applicable, practical and fast way to diagnose with high accuracy large genes for a broad spectrum of possible disease-causing mutations.
AB - With the rapid increase in the number of identified human disease genes, the development of accurate and cost-efficient mutation tests has become opportune. Here we present a combination of extensive PCR multiplexing and two-dimensional (2-D) DNA electrophoresis to screen for mutations in 26 exons of the retinoblastoma (RB1) tumor suppressor gene. In 2-D electrophoresis, fragments are separated according to size and base pair sequence in non-denaturing and denaturing gradient gels, respectively. All target fragments, designed to have optimal melting characteristics, were prepared in a two-step PCR (a 6-plex long-PCR pre-amplification and a subsequent 25-plex short-PCR) followed by heteroduplexing. The mixture of PCR amplicons was then subjected to 2-D electrophoresis under a single set of experimental conditions. With this design, 35 previously identified mutations in 18 different exons were detected in 33 bilateral retinoblastoma patients. These results suggest that 2-D electrophoresis in this format provides a generally applicable, practical and fast way to diagnose with high accuracy large genes for a broad spectrum of possible disease-causing mutations.
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U2 - 10.1093/hmg/5.6.755
DO - 10.1093/hmg/5.6.755
M3 - Article
C2 - 8776589
AN - SCOPUS:0029943489
SN - 0964-6906
VL - 5
SP - 755
EP - 761
JO - Human Molecular Genetics
JF - Human Molecular Genetics
IS - 6
ER -