نتایج جستجو برای: pms2

تعداد نتایج: 505  

Journal: :Molecular cancer therapeutics 2005
Giulio Francia Shane K Green Guido Bocci Shan Man Urban Emmenegger John M L Ebos Adina Weinerman Yuval Shaked Robert S Kerbel

Similar to other anticancer agents, intrinsic or acquired resistance to DNA-damaging chemotherapeutics is a major obstacle for cancer therapy. Current strategies aimed at overcoming this problem are mostly based on the premise that tumor cells acquire heritable genetic mutations that contribute to drug resistance. Here, we present evidence for an epigenetic, tumor cell adhesion-mediated, and re...

2016
Belinda Nghiem Xiaotun Zhang Hung-Ming Lam Lawrence D. True Ilsa Coleman Celestia S. Higano Peter S. Nelson Colin C. Pritchard Colm Morrissey

Objective Although the utility of immunohistochemistry (IHC) for assessing mismatch repair (MMR) protein expression has been demonstrated in solid tumors including primary prostate cancer (PCa), its utility has not been assessed in castration-resistant PCa (CRPC). Methods Tissue microarrays were constructed from 127 radical prostatectomies and 155 CRPC metastases from 50 patients. MMR (MLH1, ...

2014
Maria A. Loizidou Ioanna Neophytou Demetris Papamichael Panteleimon Kountourakis Vassilios Vassiliou Yiola Marcou Eleni Kakouri Georgios Ioannidis Chrystalla Philippou Elena Spanou George A. Tanteles Violetta Anastasiadou Andreas Hadjisavvas Kyriacos Kyriacou

Lynch syndrome is the most common form of hereditary colorectal cancer and is caused by germline mutations in the mismatch repair (MMR) genes MLH1, MSH2, MSH6 and PMS2. Mutation carriers have an increased lifetime risk of developing colorectal cancer as well as other extracolonic tumours. The aim of the current study was to evaluate the frequency and distribution of mutations in the MLH1, MSH2 ...

2017
Bin Wu Wuyang Ji Shengran Liang Chao Ling Yan You Lai Xu Min-Er Zhong Yi Xiao Hui-Zhong Qiu Jun-Yang Lu Santasree Banerjee

Lynch syndrome (LS) is one of the most common familial forms of colorectal cancer predisposing syndrome with an autosomal dominant mode of inheritance. LS is caused by the germline mutations in DNA mismatch repair (MMR) genes including MSH2, MLH1, MSH6 and PMS2. Clinically, LS is characterized by high incidence of early-onset colorectal cancer as well as endometrial, small intestinal and urinar...

2017
Micaela Mathiak Viktoria S. Warneke Hans-Michael Behrens Jochen Haag Christine Böger Sandra Krüger Christoph Röcken

Microsatellite instable gastric cancer (MSI-GC) is a specific molecular subtype of GC. We studied the phenotypes, genotypes, and clinicopathologic characteristics of MSI-GC in a white GC cohort and compared our findings with an extended literature review. The study cohort consisted of 482 patients. Specimens were available from 452 cases and were used for immunostaining (MLH1, PMS2, MSH2, MSH6)...

Journal: :Genetics and molecular research : GMR 2016
H X Peng X Xu R Yang Y M Chu D M Yang Y Xu F L Zhou W Z Ma X J Zhang M Guan Z H Yang Z D Jin

Single nucleotide polymorphisms (SNPs) in mismatch repair genes, especially in the MLH1 gene, are closely associated with susceptibility to hereditary nonpolyposis colorectal cancer. However, few relevant findings are available regarding the association between sporadic colorectal cancer (SCRC) and SNPs of MLH1 in Chinese patients. Therefore, the present study aimed to describe the pathogenic a...

Journal: :Mutation research 2002
Carol Bernstein Harris Bernstein Claire M Payne Harinder Garewal

Two systems are essential in humans for genome integrity, DNA repair and apoptosis. Cells that are defective in DNA repair tend to accumulate excess DNA damage. Cells defective in apoptosis tend to survive with excess DNA damage and thus allow DNA replication past DNA damages, causing mutations leading to carcinogenesis. It has recently become apparent that key proteins which contribute to cell...

2006
Frank R. Jirik R. Michael Liskay

The DNA mismatch repair (MMR) system in mammalian cells not only serves to correct base mispairs and other replication errors, but it also influences the cellular response to certain forms of DNA damage. Cells that are deficient in MMR are relatively resistant to alkylatlon damage because, in wild-type cells, the MMR system is thought to promote toxicity @fia futile repair of alkylated mispairs...

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