Search Results - "Armstrong, Jennifer A."
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A key role for Chd1 in histone H3 dynamics at the 3' ends of long genes in yeast
Published in PLoS genetics (01-07-2012)“…Chd proteins are ATP-dependent chromatin remodeling enzymes implicated in biological functions from transcriptional elongation to control of pluripotency…”
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ISWI regulates higher-order chromatin structure and histone H1 assembly in vivo
Published in PLoS biology (01-09-2007)“…Imitation SWI (ISWI) and other ATP-dependent chromatin-remodeling factors play key roles in transcription and other processes by altering the structure and…”
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The Drosophila melanogaster CHD1 chromatin remodeling factor modulates global chromosome structure and counteracts HP1a and H3K9me2
Published in PloS one (22-03-2013)“…CHD1 is a conserved chromatin remodeling factor that localizes to active genes and functions in nucleosome assembly and positioning as well as histone…”
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The Drosophila trithorax group protein Kismet facilitates an early step in transcriptional elongation by RNA Polymerase II
Published in Development (Cambridge) (01-04-2005)“…The Drosophila trithorax group gene kismet ( kis ) was identified in a screen for extragenic suppressors of Polycomb ( Pc ) and subsequently shown to play…”
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The ISWI Chromatin-Remodeling Protein Is Required for Gene Expression and the Maintenance of Higher Order Chromatin Structure In Vivo
Published in Molecular cell (01-02-2000)“…Drosophila ISWI, a highly conserved member of the SWI2/SNF2 family of ATPases, is the catalytic subunit of three chromatin-remodeling complexes: NURF, CHRAC,…”
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Medical complications in children with achondroplasia
Published in Developmental medicine and child neurology (01-08-2022)“…Aim To determine the rates of medical investigations, complications, interventions, and outcomes in children with achondroplasia. Method Children and…”
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The Drosophila BRM complex facilitates global transcription by RNA polymerase II
Published in The EMBO journal (01-10-2002)“…Drosophila brahma (brm) encodes the ATPase subunit of a 2 MDa complex that is related to yeast SWI/SNF and other chromatin‐remodeling complexes. BRM was…”
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An RNAi-Based Candidate Screen for Modifiers of the CHD1 Chromatin Remodeler and Assembly Factor in Drosophila melanogaster
Published in G3 : genes - genomes - genetics (01-02-2016)“…The conserved chromatin remodeling and assembly factor CHD1 (chromodomains, helicase, DNA-binding domain) is present at active genes where it participates in…”
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Genetic identification of a network of factors that functionally interact with the nucleosome remodeling ATPase ISWI
Published in PLoS genetics (01-06-2008)“…Nucleosome remodeling and covalent modifications of histones play fundamental roles in chromatin structure and function. However, much remains to be learned…”
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Fluoride-Rich, Hydrofluorothermal Routes to Functional Transition Metal (Mn, Fe, Co, Cu) Fluorophosphates
Published in Journal of the American Chemical Society (01-06-2011)“…Hydrofluorothermal methods are shown to offer a facile route to a very large family of mid-late first row, transition metal fluorophosphates with 50 new…”
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Australian guidelines for the management of children with achondroplasia
Published in Journal of paediatrics and child health (01-02-2023)“…Achondroplasia is the most common form of skeletal dysplasia. In addition to altered growth, children and young people with achondroplasia may experience…”
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The HMG-Domain Protein BAP111 Is Important for the Function of the BRM Chromatin-Remodeling Complex in vivo
Published in Proceedings of the National Academy of Sciences - PNAS (08-05-2001)“…The Drosophila trithorax group gene brahma (brm) encodes the ATPase subunit of a SWI/SNF-like chromatin-remodeling complex. A key question about…”
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13
Beryllosilicate Frameworks and Zeolites
Published in Journal of the American Chemical Society (10-11-2010)“…Using inspiration derived from studying naturally occurring minerals, a series of framework beryllosilicates have been synthesized under hydrothermal…”
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Giant coronary artery aneurysms in a Japanese octogenarian: The oldest case of Kawasaki disease?
Published in Journal of cardiology cases (01-04-2010)“…Summary Kawasaki disease (KD) is a leading cause of non-atherosclerotic coronary artery aneurysms and, less commonly, peripheral artery aneurysms. We report an…”
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A SWI/SNF–Related Chromatin Remodeling Complex, E-RC1, Is Required for Tissue-Specific Transcriptional Regulation by EKLF In Vitro
Published in Cell (02-10-1998)“…Erythroid Krüppel-like factor (EKLF) is necessary for stage-specific expression of the human β-globin gene. We show that EKLF requires a SWI/SNF–related…”
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Negotiating the nucleosome: factors that allow RNA polymerase II to elongate through chromatin
Published in Biochemistry and cell biology (01-08-2007)“…Initiation by RNA polymerase II (Pol II) involves a host of enzymes, and the process of elongation appears similarly complex. Transcriptional elongation…”
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Investigations of CHD1 Function in Transcription and Development of Drosophila melanogaster
Published in Genetics (Austin) (2008)“…In this report we describe chd1 mutant alleles and show that the CHD1 chromatin-remodeling factor is important for wing development and fertility. While CHD1…”
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Histone chaperone ASF1 cooperates with the Brahma chromatin-remodelling machinery
Published in Genes & development (15-10-2002)“…De novo chromatin assembly into regularly spaced nucleosomal arrays is essential for eukaryotic genome maintenance and inheritance. The Anti-Silencing Function…”
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Genetic Screens for Enhancers of brahma Reveal Functional Interactions Between the BRM Chromatin-Remodeling Complex and the Delta-Notch Signal Transduction Pathway in Drosophila
Published in Genetics (Austin) (01-08-2005)“…The Drosophila trithorax group gene brahma (brm) encodes the ATPase subunit of a 2-MDa chromatin-remodeling complex. brm was identified in a screen for…”
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Transcription of chromatin: these are complex times
Published in Current opinion in genetics & development (01-04-1998)“…Transcription of chromatin-packaged genes involves highly regulated changes in nucleosomal structure that control DNA accessibility. Two systems that…”
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