نتایج جستجو برای: nuclear localization

تعداد نتایج: 363249  

Journal: :Journal of proteome research 2007
John Hawkins Lynne Davis Mikael Bodén

Nuclear localization of proteins is a crucial element in the dynamic life of the cell. It is complicated by the massive diversity of targeting signals and the existence of proteins that shuttle between the nucleus and cytoplasm. Nevertheless, a majority of subcellular localization tools that predict nuclear proteins have been developed without involving dual localized proteins in the data sets....

Journal: :International journal of clinical and experimental pathology 2014
Minh M Nguyen Robert M Harmon Zhou Wang

BACKGROUND Mechanisms regulating androgen receptor (AR) subcellular localization represent an essential component of AR signaling. Karyopherins are a family of nucleocytoplasmic trafficking factors. In this paper, we used the yeast model to study the effects of karyopherins on the subcellular localization of the AR. METHODS Yeast mutants deficient in different nuclear transport factors were t...

2014
Amelia E Firor Alexander Jares

in 2006, yamanaka et al. reported the generation of induced pluripotent stem cells (iPsc) from somatic tissue with the introduction of just 4 transcription factors: Oct4, sox2, Klf4, and c-Myc.1 The finding, with its promise of autologous therapy, was the beginning of a vast and unprecedented effort to better understand the epigenetic basis of pluripotency and of “stemness.”2 sALL4 is a zinc fi...

Journal: :The Plant journal : for cell and molecular biology 2009
Xiping Wang Wenjun Li Raquel Piqueras Kaiming Cao Xing Wang Deng Ning Wei

COP1 and COP9 signalosome (CSN) are key regulators of plant light responses and development. Deficiency in either COP1 or CSN causes a constitutive photomorphogenic phenotype. Through coordinated actions of nuclear- and cytoplasmic-localization signals, COP1 can respond to light signals by differentially partitions between nuclear and cytoplasmic compartments. Previous genetic analysis in Arabi...

2014
Caghan Kizil Beate Küchler Jia-Jiun Yan Günes Özhan Enrico Moro Francesco Argenton Michael Brand Gilbert Weidinger Christopher L. Antos

Canonical β-catenin-dependent Wnt signal transduction is important for several biological phenomena, such as cell fate determination, cell proliferation, stem cell maintenance and anterior-posterior axis formation. The hallmark of canonical Wnt signaling is the translocation of β-catenin into the nucleus where it activates gene transcription. However, the mechanisms regulating β-catenin nuclear...

Journal: :Molecular biology of the cell 1999
S G Pasion S L Forsburg

The minichromosome maintenance (MCM) proteins MCM2-MCM7 are conserved eukaryotic replication factors that assemble in a heterohexameric complex. In fission yeast, these proteins are nuclear throughout the cell cycle. In studying the mechanism that regulates assembly of the MCM complex, we analyzed the cis and trans elements required for nuclear localization of a single subunit, Mcm2p. Mutation ...

Journal: :Nucleic Acids Research 2005
Elias B. Jackson Corey A. Theriot Ranajoy Chattopadhyay Sankar Mitra Tadahide Izumi

The mammalian abasic-endonuclease1/redox-factor1 (APE1/Ref1) is an essential protein whose subcellular distribution depends on the cellular physiological status. However, its nuclear localization signals have not been studied in detail. We examined nuclear translocation of APE1, by monitoring enhanced green fluorescent protein (EGFP) fused to APE1. APE1's nuclear localization was significantly ...

Journal: :The Journal of pharmacology and experimental therapeutics 2001
M D Maines J F Ewing T J Huang N Panahian

Biliverdin reductase catalyzes the reduction of biliverdin, the product of heme oxygenase (HO) activity, to bilirubin. The reductase is unique among all enzymes characterized to date in being dual pH/cofactor-dependent. Until now the enzyme was assumed to be a noninducible cytosolic protein. This report, for the first time, demonstrates induction and nuclear localization of reductase in rat kid...

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