نتایج جستجو برای: msh6

تعداد نتایج: 881  

2009
Mohamed Labazi Lahcen Jaafar Hernan Flores-Rozas

DNA mismatch repair corrects mispaired bases and small insertions/deletions in DNA. In eukaryotes, the mismatch repair complex MSH2-MSH6 binds to mispairs with only slightly higher affinity than to fully paired DNA in vitro. Recently, the high-mobility group box1 protein, (HMGB1), has been shown to stimulate the mismatch repair reaction in vitro. In yeast, the closest homologs of HMGB1 are NHP6...

Journal: :Hereditary Cancer in Clinical Practice 2008

2016
Jung Wook Huh Hee Cheol Kim Seok Hyung Kim Yoon Ah Park Yong Beom Cho Seong Hyeon Yun Woo Yong Lee Hee Chul Park Doo Ho Choi Joon Oh Park Young Suk Park Ho-Kyung Chun

This study evaluated the predictive and prognostic value of expression of mismatch repair (MMR) protein, including MLH1, MSH2, and MSH6 in rectal cancer patients with preoperative chemoradiotherapy.MMR protein expression was measured by immunohistochemistry in both pretreatment biopsies (pre-) and pathologic specimens (post-) from 209 patients with locally advanced rectal cancer who underwent p...

Journal: :The Journal of biological chemistry 2012
Victoria V Hargreaves Christopher D Putnam Richard D Kolodner

ATP binding causes the mispair-bound Msh2-Msh6 mismatch recognition complex to slide along the DNA away from the mismatch, and ATP is required for the mispair-dependent interaction between Msh2-Msh6 and Mlh1-Pms1. It has been inferred from these observations that ATP induces conformational changes in Msh2-Msh6; however, the nature of these conformational changes and their requirement in mismatc...

Journal: :Carcinogenesis 2007
Leah C Young Angela M Keuling Raymond Lai Patrick N Nation Victor A Tron Susan E Andrew

DNA mismatch repair (MMR) is a highly conserved system that repairs DNA adducts acquired during replication, as well as some forms of exogenous/endogenous DNA damage. Additionally, MMR proteins bind to DNA adducts that are not removed by MMR and influence damage-response mechanisms other than repair. Hereditary non-polyposis colorectal cancer, as well as mouse models for MMR deficiency, illustr...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2010
Jie Zhai Manju M Hingorani

The DNA mismatch repair system (MMR) identifies replication errors and damaged bases in DNA and functions to preserve genomic integrity. MutS performs the task of locating mismatched base pairs, loops and lesions and initiating MMR, and the fundamental question of how this protein targets specific sites in DNA is unresolved. To address this question, we examined the interactions between Sacchar...

Journal: :Journal of medical genetics 2001
A Wagner Y Hendriks E J Meijers-Heijboer W J de Leeuw H Morreau R Hofstra C Tops E Bik A H Bröcker-Vriends C van Der Meer D Lindhout H F Vasen M H Breuning C J Cornelisse C van Krimpen M F Niermeijer A H Zwinderman J Wijnen R Fodde

Hereditary non-polyposis colorectal cancer (HNPCC) is the most common genetic susceptibility syndrome for colorectal cancer. HNPCC is most frequently caused by germline mutations in the DNA mismatch repair (MMR) genes MSH2 and MLH1. Recently, mutations in another MMR gene, MSH6 (also known as GTBP), have also been shown to result in HNPCC. Preliminary data indicate that the phenotype related to...

Journal: :Cell 2011
Hans Hombauer Christopher S. Campbell Catherine E. Smith Arshad Desai Richard D. Kolodner

DNA mismatch repair (MMR) increases replication fidelity by eliminating mispaired bases resulting from replication errors. In Saccharomyces cerevisiae, mispairs are primarily detected by the Msh2-Msh6 complex and corrected following recruitment of the Mlh1-Pms1 complex. Here, we visualized functional fluorescent versions of Msh2-Msh6 and Mlh1-Pms1 in living cells. We found that the Msh2-Msh6 co...

Journal: :Clinical genetics 2011
L Raskin F Schwenter M Freytsis M Tischkowitz N Wong G Chong S A Narod D A Levine F Bogomolniy M Aronson S N Thibodeau K S Hunt G Rennert S Gallinger S B Gruber W D Foulkes

Founder mutations are an important cause of Lynch syndrome and facilitate genetic testing in specific ethnic populations. Two putative founder mutations in MSH6 were analyzed in 2685 colorectal cancer (CRC) cases, 337 endometrial cancer (EnCa) cases and 3310 healthy controls of Ashkenazi Jewish (AJ) descent from population-based and hospital-based case–control studies in Israel, Canada and the ...

2017
Dong-dong Cheng He-chun Lin Shi-jie Li Ming Yao Qing-cheng Yang Cun-yi Fan

To discover tumor-associated proteins in osteosarcoma, a quantitative proteomic analysis was performed to identify proteins that were differentially expressed between osteosarcoma and human osteoblastic cells. Through clinical screening and a functional evaluation, chromosome segregation 1-like (CSE1L) protein was found to be related to the growth of osteosarcoma cells. To date, little is known...

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