BACKGROUND Helicobacter pylori(H.pylori)persistently colonizes the human gastric mucosa in more than 50%of the global population,leading to various gastroduodenal diseases ranging from chronic gastritis to gastric car...BACKGROUND Helicobacter pylori(H.pylori)persistently colonizes the human gastric mucosa in more than 50%of the global population,leading to various gastroduodenal diseases ranging from chronic gastritis to gastric carcinoma.Cytotoxin-associated gene A(CagA)protein,an important oncoprotein,has highly polymorphic Glu-Pro-Ile-Tyr-Ala segments at the carboxyl terminus,which play crucial roles in pathogenesis.Our previous study revealed a significant association between amino acid deletions at positions 893 and 894 and gastric cancer.AIM To investigate the impact of amino acid deletions at positions 893 and 894 on CagA function.METHODS We selected a representative HZT strain from a gastric cancer patient with amino acid deletions at positions 893 and 894.The cagA gene was amplified and mutated into cagA-NT and cagA-NE(sequence characteristics of strains from nongastric cancer patients),cloned and inserted into pAdtrack-CMV,and then transfected into AGS cells.The expression of cagA and its mutants was examined using realtime polymerase chain reaction and Western blotting,cell elongation via cell counting,F-actin cytoskeleton visualization using fluorescence staining,and interleukin-8(IL-8)secretion via enzyme-linked immunosorbent assay.RESULTS The results revealed that pAdtrack/cagA induced a more pronounced hummingbird phenotype than pAdtrack/cagA-NT and pAdtrack/cagA-NE(40.88±3.10 vs 32.50±3.17,P<0.001 and 40.88±3.10 vs 32.17±3.00,P<0.001)at 12 hours after transfection.At 24 hours,pAdtrack/cagA-NE induced significantly fewer hummingbird phenotypes than pAdtrack/cagA and pAdtrack/cagA-NT(46.02±2.12 vs 53.90±2.10,P<0.001 and 46.02±2.12 vs 51.15±3.74,P<0.001).The total amount of F-actin caused by pAdtrack/cagA was significantly lower than that caused by pAdtrack/cagA-NT and pAdtrack/cagA-NE(27.54±17.37 vs 41.51±11.90,P<0.001 and 27.54±17.37 vs 41.39±14.22,P<0.001)at 12 hours after transfection.Additionally,pAdtrack/cagA induced higher IL-8 secretion than pAdtrack/cagA-NT and pAdtrack/cagA-NE at different times after transfection.CONCLUSION Amino acid deletions at positions 893 and 894 enhance CagA pathogenicity,which is crucial for revealing the pathogenic mechanism of CagA and identifying biomarkers of highly pathogenic H.pylori.展开更多
Objective To develop a technique for simultaneous detection of various target genes in Roundup Ready soybean by combining multiplex PCR and low-density DNA microarray. Methods Two sets of the multiplex PCR system were...Objective To develop a technique for simultaneous detection of various target genes in Roundup Ready soybean by combining multiplex PCR and low-density DNA microarray. Methods Two sets of the multiplex PCR system were used to amplify the target genes in genetically modified (GM) soybean. Seventeen capture probes (PCR products) and 17 pairs of corresponding primers were designed according to the genetic characteristics of Rroundup Ready soybean (GTS40-3-2), maize (MonS10, Nk603, GA21), canola (T45, MS1/RF1), and rice (SCK) in many identified GM crops. All of the probes were categorized and identified as species-specific probes. One negative probe and one positive control probe were used to assess the efficiency of all reactions, and therefore eliminate any false positive and negative results. After multiplex PCR reaction, amplicons were adulterated with Cy5-dUTP and hybridized with DNA microarray. The array was then scanned to display the specific hybridization signals of target genes. The assay was applied to the analysis of sample of certified transgenic soybean (Roundup Ready GTS40-3-2) and canola (MS1/RF1). Results A combination technique of multiplex PCR and DNA microarray was successfully developed to identify multi-target genes in Roundup Ready soybean and MS 1/RF1 canola with a great specificity and reliability. Reliable identification of genetic characteristics of Roundup Ready of GM soybean from genetically modified crops was achieved at 0.5% transgenic events, indicating a high sensitivity. Conclusion A combination technique of multiplex PCR and low-density DNA microarray can reliably detect and identify the genetically modified crops.展开更多
Objective The quality of microarray data influences the accuracy of comparative genomic analyses to a large extent.To ensure that the results obtained by using an in situ synthesized microarray are accurate,data quali...Objective The quality of microarray data influences the accuracy of comparative genomic analyses to a large extent.To ensure that the results obtained by using an in situ synthesized microarray are accurate,data quality is to be assessed by evaluating the melting temperature (Tm) of probes,probability of false synthesis rates,and fragmentation of labeled targets.Methods DNA from the Yersinia pestis vaccine strain EV76 was used for microarray analyses.Microarray results were confirmed by PCR.Statistical and bioinformatics methods were employed to perform microarray data analyses and evaluation.Results Correlation coefficients of the three datasets were above 0.95 after two-time stripping and hybridization with a labeled DNA with the size of fragmentation being 200 bp-2 kb,which showed that the hybridization results were highly reproducible.Correlation coefficients were lower with the values ranging from 0.87 to 0.92 between the datasets generated from hybridization with different sizes of the labeled DNA fragment.For the relationship between Tm and signal intensity,there was a different distribution of Tm in the lowest 300 or 3 000 probes with a range of 70 ℃-72 ℃ and the highest 300 or 3 000 probes with a range of 72 ℃-74 ℃.Conclusion The results of this study suggest that the initial microarray design may affect the accuracy of final analyses and that the probe Tm and the size of the labeled fragment may be the two factors of the greatest importance.展开更多
基金Supported by the Shandong Medical and Health Science and Technology Development Plan Project,No.202202080452.
文摘BACKGROUND Helicobacter pylori(H.pylori)persistently colonizes the human gastric mucosa in more than 50%of the global population,leading to various gastroduodenal diseases ranging from chronic gastritis to gastric carcinoma.Cytotoxin-associated gene A(CagA)protein,an important oncoprotein,has highly polymorphic Glu-Pro-Ile-Tyr-Ala segments at the carboxyl terminus,which play crucial roles in pathogenesis.Our previous study revealed a significant association between amino acid deletions at positions 893 and 894 and gastric cancer.AIM To investigate the impact of amino acid deletions at positions 893 and 894 on CagA function.METHODS We selected a representative HZT strain from a gastric cancer patient with amino acid deletions at positions 893 and 894.The cagA gene was amplified and mutated into cagA-NT and cagA-NE(sequence characteristics of strains from nongastric cancer patients),cloned and inserted into pAdtrack-CMV,and then transfected into AGS cells.The expression of cagA and its mutants was examined using realtime polymerase chain reaction and Western blotting,cell elongation via cell counting,F-actin cytoskeleton visualization using fluorescence staining,and interleukin-8(IL-8)secretion via enzyme-linked immunosorbent assay.RESULTS The results revealed that pAdtrack/cagA induced a more pronounced hummingbird phenotype than pAdtrack/cagA-NT and pAdtrack/cagA-NE(40.88±3.10 vs 32.50±3.17,P<0.001 and 40.88±3.10 vs 32.17±3.00,P<0.001)at 12 hours after transfection.At 24 hours,pAdtrack/cagA-NE induced significantly fewer hummingbird phenotypes than pAdtrack/cagA and pAdtrack/cagA-NT(46.02±2.12 vs 53.90±2.10,P<0.001 and 46.02±2.12 vs 51.15±3.74,P<0.001).The total amount of F-actin caused by pAdtrack/cagA was significantly lower than that caused by pAdtrack/cagA-NT and pAdtrack/cagA-NE(27.54±17.37 vs 41.51±11.90,P<0.001 and 27.54±17.37 vs 41.39±14.22,P<0.001)at 12 hours after transfection.Additionally,pAdtrack/cagA induced higher IL-8 secretion than pAdtrack/cagA-NT and pAdtrack/cagA-NE at different times after transfection.CONCLUSION Amino acid deletions at positions 893 and 894 enhance CagA pathogenicity,which is crucial for revealing the pathogenic mechanism of CagA and identifying biomarkers of highly pathogenic H.pylori.
基金National Basic Research Program of China (No. 2001CB109001)National High-Tech Research Program of China (No. 2002AA212041)
文摘Objective To develop a technique for simultaneous detection of various target genes in Roundup Ready soybean by combining multiplex PCR and low-density DNA microarray. Methods Two sets of the multiplex PCR system were used to amplify the target genes in genetically modified (GM) soybean. Seventeen capture probes (PCR products) and 17 pairs of corresponding primers were designed according to the genetic characteristics of Rroundup Ready soybean (GTS40-3-2), maize (MonS10, Nk603, GA21), canola (T45, MS1/RF1), and rice (SCK) in many identified GM crops. All of the probes were categorized and identified as species-specific probes. One negative probe and one positive control probe were used to assess the efficiency of all reactions, and therefore eliminate any false positive and negative results. After multiplex PCR reaction, amplicons were adulterated with Cy5-dUTP and hybridized with DNA microarray. The array was then scanned to display the specific hybridization signals of target genes. The assay was applied to the analysis of sample of certified transgenic soybean (Roundup Ready GTS40-3-2) and canola (MS1/RF1). Results A combination technique of multiplex PCR and DNA microarray was successfully developed to identify multi-target genes in Roundup Ready soybean and MS 1/RF1 canola with a great specificity and reliability. Reliable identification of genetic characteristics of Roundup Ready of GM soybean from genetically modified crops was achieved at 0.5% transgenic events, indicating a high sensitivity. Conclusion A combination technique of multiplex PCR and low-density DNA microarray can reliably detect and identify the genetically modified crops.
基金supported by a grant from the National High Technology Research and Development Program of China(863 Program,No. 2006AA2Z4A7)
文摘Objective The quality of microarray data influences the accuracy of comparative genomic analyses to a large extent.To ensure that the results obtained by using an in situ synthesized microarray are accurate,data quality is to be assessed by evaluating the melting temperature (Tm) of probes,probability of false synthesis rates,and fragmentation of labeled targets.Methods DNA from the Yersinia pestis vaccine strain EV76 was used for microarray analyses.Microarray results were confirmed by PCR.Statistical and bioinformatics methods were employed to perform microarray data analyses and evaluation.Results Correlation coefficients of the three datasets were above 0.95 after two-time stripping and hybridization with a labeled DNA with the size of fragmentation being 200 bp-2 kb,which showed that the hybridization results were highly reproducible.Correlation coefficients were lower with the values ranging from 0.87 to 0.92 between the datasets generated from hybridization with different sizes of the labeled DNA fragment.For the relationship between Tm and signal intensity,there was a different distribution of Tm in the lowest 300 or 3 000 probes with a range of 70 ℃-72 ℃ and the highest 300 or 3 000 probes with a range of 72 ℃-74 ℃.Conclusion The results of this study suggest that the initial microarray design may affect the accuracy of final analyses and that the probe Tm and the size of the labeled fragment may be the two factors of the greatest importance.