نتایج جستجو برای: mag1

تعداد نتایج: 52  

Journal: :EMBO reports 2011
Suraj Adhikary Brandt F Eichman

DNA glycosylases specialized for the repair of alkylation damage must identify, with fine specificity, a diverse array of subtle modifications within DNA. The current mechanism involves damage sensing through interrogation of the DNA duplex, followed by more specific recognition of the target base inside the active site pocket. To better understand the physical basis for alkylpurine detection, ...

Journal: :Mutation research 2014
Christopher J Troll Suraj Adhikary Marie Cueff Ileena Mitra Brandt F Eichman Manel Camps

DNA glycosylases carry out the first step of base excision repair by removing damaged bases from DNA. The N3-methyladenine (3MeA) DNA glycosylases specialize in alkylation repair and are either constitutively expressed or induced by exposure to alkylating agents. To study the functional and evolutionary significance of constitutive versus inducible expression, we expressed two closely related y...

2013
Shawn P. Finney-Manchester Narendra Maheshri

A major hurdle to evolutionary engineering approaches for multigenic phenotypes is the ability to simultaneously modify multiple genes rapidly and selectively. Here, we describe a method for in vivo-targeted mutagenesis in yeast, targeting glycosylases to embedded arrays for mutagenesis (TaGTEAM). By fusing the yeast 3-methyladenine DNA glycosylase MAG1 to a tetR DNA-binding domain, we are able...

2016
Stephen K Godin Zhuying Zhang Benjamin W Herken James W Westmoreland Alison G Lee Michael J Mihalevic Zhongxun Yu Robert W Sobol Michael A Resnick Kara A Bernstein

Here, we investigate the role of the budding yeast Shu complex in promoting homologous recombination (HR) upon replication fork damage. We recently found that the Shu complex stimulates Rad51 filament formation during HR through its physical interactions with Rad55-Rad57. Unlike other HR factors, Shu complex mutants are primarily sensitive to replicative stress caused by MMS and not to more dir...

Journal: :Plant & cell physiology 2008
Misako Yamazaki Tomoo Shimada Hideyuki Takahashi Kentaro Tamura Maki Kondo Mikio Nishimura Ikuko Hara-Nishimura

The retromer complex is responsible for retrograde transport, which is coordinated with anterograde transport in the secretory pathway including vacuolar protein sorting. Yeast VPS35 is a component of the retromer complex that is essential for recognition of specific cargo molecules. The physiological function of VPS35 has not been determined in vacuolar protein sorting in higher organisms. Ara...

Journal: :Genetics 2000
J Scheller A Schürer C Rudolph S Hettwer W Kramer

We have characterized the MPH1 gene from Saccharomyces cerevisiae. mph1 mutants display a spontaneous mutator phenotype. Homologs were found in archaea and in the EST libraries of Drosophila, mouse, and man. Mph1 carries the signature motifs of the DEAH family of helicases. Selected motifs were shown to be necessary for MPH1 function by introducing missense mutations. Possible indirect effects ...

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