Identification of valid reference genes for gene expression studies of human stomach cancer by reverse transcription-qPCR. 2010

Hyun-Wook Rho, and Byoung-Chan Lee, and Eun-Seok Choi, and Il-Ju Choi, and Yeon-Su Lee, and Sung-Ho Goh
Research institute, National Cancer Center, 809 Madu-dong, Goyang, Gyeonggi-do 410-769, Republic of Korea.

BACKGROUND Reverse transcription quantitative real-time polymerase chain reaction (RT-qPCR) is a powerful method for the analysis of gene expression. Target gene expression levels are usually normalized to a consistently expressed reference gene also known as internal standard, in the same sample. However, much effort has not been expended thus far in the search for reference genes suitable for the study of stomach cancer using RT-qPCR, although selection of optimal reference genes is critical for interpretation of results. METHODS We assessed the suitability of six possible reference genes, beta-actin (ACTB), glyceraldehydes-3-phosphate dehydrogenase (GAPDH), hypoxanthine phosphoribosyl transferase 1 (HPRT1), beta-2-microglobulin (B2M), ribosomal subunit L29 (RPL29) and 18S ribosomal RNA (18S rRNA) in 20 normal and tumor stomach tissue pairs of stomach cancer patients and 6 stomach cancer cell lines, by RT-qPCR. Employing expression stability analyses using NormFinder and geNorm algorithms we determined the order of performance of these reference genes and their variation values. RESULTS This RT-qPCR study showed that there are statistically significant (p < 0.05) differences in the expression levels of HPRT1 and 18S rRNA in 'normal-' versus 'tumor stomach tissues'. The stability analyses by geNorm suggest B2M-GAPDH, as best reference gene combination for 'stomach cancer cell lines'; RPL29-HPRT1, for 'all stomach tissues'; and ACTB-18S rRNA, for 'all stomach cell lines and tissues'. NormFinder also identified B2M as the best reference gene for 'stomach cancer cell lines', RPL29-B2M for 'all stomach tissues', and 18S rRNA-ACTB for 'all stomach cell lines and tissues'. The comparisons of normalized expression of the target gene, GPNMB, showed different interpretation of target gene expression depend on best single reference gene or combination. CONCLUSIONS This study validated RPL29 and RPL29-B2M as the best single reference genes and combination, for RT-qPCR analysis of 'all stomach tissues', and B2M and B2M-GAPDH as the best single reference gene and combination, for 'stomach cancer cell lines'. Use of these validated reference genes should provide more exact interpretation of differential gene expressions at transcription level in stomach cancer.

UI MeSH Term Description Entries
D012015 Reference Standards A basis of value established for the measure of quantity, weight, extent or quality, e.g. weight standards, standard solutions, methods, techniques, and procedures used in diagnosis and therapy. Standard Preparations,Standards, Reference,Preparations, Standard,Standardization,Standards,Preparation, Standard,Reference Standard,Standard Preparation,Standard, Reference
D001779 Blood Coagulation Factors Endogenous substances, usually proteins, that are involved in the blood coagulation process. Clotting Factor,Coagulation Factors,Blood Coagulation Factor,Clotting Factors,Coagulation Factor,Coagulation Factor, Blood,Coagulation Factors, Blood,Factor, Coagulation,Factors, Coagulation,Factor, Blood Coagulation,Factor, Clotting,Factors, Blood Coagulation,Factors, Clotting
D005819 Genetic Markers A phenotypically recognizable genetic trait which can be used to identify a genetic locus, a linkage group, or a recombination event. Chromosome Markers,DNA Markers,Markers, DNA,Markers, Genetic,Genetic Marker,Marker, Genetic,Chromosome Marker,DNA Marker,Marker, Chromosome,Marker, DNA,Markers, Chromosome
D005987 Glyceraldehyde-3-Phosphate Dehydrogenases Enzymes that catalyze the dehydrogenation of GLYCERALDEHYDE 3-PHOSPHATE. Several types of glyceraldehyde-3-phosphate-dehydrogenase exist including phosphorylating and non-phosphorylating varieties and ones that transfer hydrogen to NADP and ones that transfer hydrogen to NAD. GAPD,Glyceraldehyde-3-Phosphate Dehydrogenase,Glyceraldehydephosphate Dehydrogenase,Phosphoglyceraldehyde Dehydrogenase,Triosephosphate Dehydrogenase,Dehydrogenase, Glyceraldehyde-3-Phosphate,Dehydrogenase, Glyceraldehydephosphate,Dehydrogenase, Phosphoglyceraldehyde,Dehydrogenase, Triosephosphate,Dehydrogenases, Glyceraldehyde-3-Phosphate,Glyceraldehyde 3 Phosphate Dehydrogenase
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000465 Algorithms A procedure consisting of a sequence of algebraic formulas and/or logical steps to calculate or determine a given task. Algorithm
D001613 beta 2-Microglobulin An 11-kDa protein associated with the outer membrane of many cells including LYMPHOCYTES. It is the small subunit of MHC CLASS I MOLECULES. Association with beta 2-microglobulin is generally required for the transport of class I heavy chains from the endoplasmic reticulum to the cell surface. Beta 2-microglobulin is present in small amounts in serum, CEREBROSPINAL FLUID, and urine of healthy individuals, and to a much greater degree in the urine and plasma of patients with tubular PROTEINURIA, renal failure, or kidney transplants. Thymotaxin,beta 2 Microglobulin
D012269 Ribosomal Proteins Proteins found in ribosomes. They are believed to have a catalytic function in reconstituting biologically active ribosomal subunits. Proteins, Ribosomal,Ribosomal Protein,Protein, Ribosomal
D013274 Stomach Neoplasms Tumors or cancer of the STOMACH. Cancer of Stomach,Gastric Cancer,Gastric Neoplasms,Stomach Cancer,Cancer of the Stomach,Gastric Cancer, Familial Diffuse,Neoplasms, Gastric,Neoplasms, Stomach,Cancer, Gastric,Cancer, Stomach,Cancers, Gastric,Cancers, Stomach,Gastric Cancers,Gastric Neoplasm,Neoplasm, Gastric,Neoplasm, Stomach,Stomach Cancers,Stomach Neoplasm
D015203 Reproducibility of Results The statistical reproducibility of measurements (often in a clinical context), including the testing of instrumentation or techniques to obtain reproducible results. The concept includes reproducibility of physiological measurements, which may be used to develop rules to assess probability or prognosis, or response to a stimulus; reproducibility of occurrence of a condition; and reproducibility of experimental results. Reliability and Validity,Reliability of Result,Reproducibility Of Result,Reproducibility of Finding,Validity of Result,Validity of Results,Face Validity,Reliability (Epidemiology),Reliability of Results,Reproducibility of Findings,Test-Retest Reliability,Validity (Epidemiology),Finding Reproducibilities,Finding Reproducibility,Of Result, Reproducibility,Of Results, Reproducibility,Reliabilities, Test-Retest,Reliability, Test-Retest,Result Reliabilities,Result Reliability,Result Validities,Result Validity,Result, Reproducibility Of,Results, Reproducibility Of,Test Retest Reliability,Validity and Reliability,Validity, Face

Related Publications

Hyun-Wook Rho, and Byoung-Chan Lee, and Eun-Seok Choi, and Il-Ju Choi, and Yeon-Su Lee, and Sung-Ho Goh
May 2008, BMC molecular biology,
Hyun-Wook Rho, and Byoung-Chan Lee, and Eun-Seok Choi, and Il-Ju Choi, and Yeon-Su Lee, and Sung-Ho Goh
November 2022, Scientific reports,
Hyun-Wook Rho, and Byoung-Chan Lee, and Eun-Seok Choi, and Il-Ju Choi, and Yeon-Su Lee, and Sung-Ho Goh
November 2018, Chronobiology international,
Hyun-Wook Rho, and Byoung-Chan Lee, and Eun-Seok Choi, and Il-Ju Choi, and Yeon-Su Lee, and Sung-Ho Goh
March 2013, Clinical & translational oncology : official publication of the Federation of Spanish Oncology Societies and of the National Cancer Institute of Mexico,
Hyun-Wook Rho, and Byoung-Chan Lee, and Eun-Seok Choi, and Il-Ju Choi, and Yeon-Su Lee, and Sung-Ho Goh
January 2015, PloS one,
Hyun-Wook Rho, and Byoung-Chan Lee, and Eun-Seok Choi, and Il-Ju Choi, and Yeon-Su Lee, and Sung-Ho Goh
September 2015, Antonie van Leeuwenhoek,
Hyun-Wook Rho, and Byoung-Chan Lee, and Eun-Seok Choi, and Il-Ju Choi, and Yeon-Su Lee, and Sung-Ho Goh
June 2011, Journal of insect physiology,
Hyun-Wook Rho, and Byoung-Chan Lee, and Eun-Seok Choi, and Il-Ju Choi, and Yeon-Su Lee, and Sung-Ho Goh
December 2015, Forensic science, medicine, and pathology,
Hyun-Wook Rho, and Byoung-Chan Lee, and Eun-Seok Choi, and Il-Ju Choi, and Yeon-Su Lee, and Sung-Ho Goh
March 2018, Gene reports,
Hyun-Wook Rho, and Byoung-Chan Lee, and Eun-Seok Choi, and Il-Ju Choi, and Yeon-Su Lee, and Sung-Ho Goh
April 2015, Molecular medicine reports,
Copied contents to your clipboard!