New genetic associations in thiopurine-related bone marrow toxicity among inflammatory bowel disease patients
PHARMACOGENOMICS
Authors: Zabala, William; Cruz, Raquel; Barreiro-de Acosta, Manuel; Chaparro, Maria; Panes, Julian; Echarri, Ana; Esteve, Maria; Carpio, Daniel; Andreu, Montserrat; Garcia-Planella, Esther; Domenech, Eugeni; Carracedo, Angel; Gisbert, Javier P.; Barros, Francisco
Abstract
Background: The toxicity related to thiopurine drug therapy for inflammatory bowel disease (IBD) varies widely among patients. Almost 15-30% of patients with IBD develop side effects during treatment, often bone marrow suppression. Several factors have been implicated in determining this toxicity, mainly individual genetic variation related to formation of active thiopurine metabolites. The aim was to identify genes involved in thiopurine-related myelosuppression. Materials & methods: A two-stage investigation of 19,217 coding SNPs (cSNPs) was performed in a Spanish (Inflammatory Bowel Disease Group of Galicia [EIGA]) cohort of 173 IBD patients, 15 with bone marrow suppression. The top 20 cSNPs identified in the first stage with p < 10(-3) for allelic test association and SNPs that define the common TPMT alleles were replicated in a different Spanish (ENEIDA) cohort (87 patients, 29 with bone marrow suppression). Results: Several cSNPs showed a significant p-value in the allelic joint analysis (p-Cochran-Mantel-Haenszel test <= 2.55 x 10(-3)) despite no cSNP passing correction for multiple testing in the first cohort. Of note is rs3729961 in the gene IL6ST, a transducer signal chain shared by many cytokines including IL6 (p-value combined = 2.36 x 10(-4), odds ratio [95% CI]: 3.41 [1.71-6.78]). In addition, we detected association with rs3749598 in the FSTL5 gene that appears to interact with metalloproteases at the extracellular matrix level (p-value combined = 4.89 x 10(-4)), odds ratio (95% CI): 3.67 (1.68-8.01). Conclusion: We have identified IL6ST and FSLT5 as new bone marrow suppression susceptibility candidate genes after thiopurine treatment in IBD patients. This is the first report of variants associated with thiopurine- related myelosuppression that was identified by a genome-wide association study. Its validation awaits functional analyses and replication in additional studies.
RETRACTED: Protein-protein interaction and SNP analysis in intraductal papillary mucinous neoplasm (Retracted article. See vol. 578 pg. 139, 2016)
GENE
Authors: Jiang Pu; Zang Weidong; Wang Lishan; Xu Ying; Liu Yang; Deng Shi-xiong
Abstract
Intraductal papillary mutinous neoplasm (IPMN) is a type of tumor that grows within the pancreatic ducts. It is a progress from hyperplasia to intraductal adenoma (IPMA), to noninvasive carcinoma, and ultimately to invasive carcinoma (IPMC). The objective of this study was to explore the molecular mechanism of the progression from IPMA to IPMC. By using the GSE19650 affymetrix microarray data accessible from Gene Expression Omnibus (CEO) database, we first identified the differentially expressed genes (DEGs) between IPMA and IPMC, followed by the protein-protein interaction and single-nucleotide polymorphism (SNP) analysis of the DEGs. Our study identified thousands of DEGs which involved regulation of cell cycle and apoptosis in this progression from IPMA to IPMC. Protein-protein interaction network construction found that MYC, IL6ST, NR3C1, CREBBP, GATA1 and LRP1 might play an important role in the progression. Furthermore, the SNP analysis confirmed the association between BRAC1 and pancreas cancer. In conclusion, our data provide a comprehensive bioinformatics analysis of genes and pathways which may be involved in the progression of IPMN from IPMA to IPMC. (C) 2012 Elsevier B.V. All rights reserved.