P54nrb forms a heterodimer with PSP1 that localizes to paraspeckles in an RNA-dependent manner.
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Functional studies of BCL11A: characterization of the conserved BCL11A-XL splice variant and its interaction with BCL6 in nuclear paraspeckles of germinal center B cellsA screen for nuclear transcripts identifies two linked noncoding RNAs associated with SC35 splicing domainsThe rise of regulatory RNAAn architectural role for a nuclear noncoding RNA: NEAT1 RNA is essential for the structure of paraspecklesDirect visualization of the co-transcriptional assembly of a nuclear body by noncoding RNAsMENepsilon/beta noncoding RNAs are essential for structural integrity of nuclear paraspecklesAltered nuclear retention of mRNAs containing inverted repeats in human embryonic stem cells: functional role of a nuclear noncoding RNAMEN epsilon/beta nuclear-retained non-coding RNAs are up-regulated upon muscle differentiation and are essential components of paraspecklesSubnuclear localization and dynamics of the Pre-mRNA 3' end processing factor mammalian cleavage factor I 68-kDa subunitParaspeckle formation during the biogenesis of long non-coding RNAsStructure of the heterodimer of human NONO and paraspeckle protein component 1 and analysis of its role in subnuclear body formationLong noncoding RNAs in mammalian cells: what, where, and why?Phase separation in biology; functional organization of a higher orderThe structure of human SFPQ reveals a coiled-coil mediated polymer essential for functional aggregation in gene regulationSets of RNA repeated tags and hybridization-sensitive fluorescent probes for distinct images of RNA in a living cellDistinct roles of DBHS family members in the circadian transcriptional feedback loopLong noncoding RNAs: functional surprises from the RNA worldCaenorhabditis elegans NONO-1: Insights into DBHS protein structure, architecture, and function.Cancer biomarker discovery: the entropic hallmark.LMX1B is part of a transcriptional complex with PSPC1 and PSF.Mutations in NONO lead to syndromic intellectual disability and inhibitory synaptic defectsA crystallographic study of human NONO (p54(nrb)): overcoming pathological problems with purification, data collection and noncrystallographic symmetryParaspeckle protein p54nrb links Sox9-mediated transcription with RNA processing during chondrogenesis in mice.Functional dissection of NEAT1 using genome editing reveals substantial localization of the NEAT1_1 isoform outside paraspeckles.Evidence for somatic gene conversion and deletion in bipolar disorder, Crohn's disease, coronary artery disease, hypertension, rheumatoid arthritis, type-1 diabetes, and type-2 diabetes.Paraspeckles.Rasd1 modulates the coactivator function of NonO in the cyclic AMP pathway.The role of nuclear bodies in gene expression and disease.Decoding the function of nuclear long non-coding RNAsDouble-strand break repair deficiency in NONO knockout murine embryonic fibroblasts and compensation by spontaneous upregulation of the PSPC1 paralog.Highly ordered spatial organization of the structural long noncoding NEAT1 RNAs within paraspeckle nuclear bodies.Biogenesis of nuclear bodiesThe long arm of long noncoding RNAs: roles as sensors regulating gene transcriptional programsSplicing speckles are not reservoirs of RNA polymerase II, but contain an inactive form, phosphorylated on serine2 residues of the C-terminal domain.The DBHS proteins SFPQ, NONO and PSPC1: a multipurpose molecular scaffoldAlanine repeats influence protein localization in splicing speckles and paraspecklesDynamic localisation of mature microRNAs in Human nucleoli is influenced by exogenous genetic materials.Compromised paraspeckle formation as a pathogenic factor in FUSopathies.Arginine methylation and citrullination of splicing factor proline- and glutamine-rich (SFPQ/PSF) regulates its association with mRNA.p54nrb/NONO regulates cyclic AMP-dependent glucocorticoid production by modulating phosphodiesterase mRNA splicing and degradation.
P2860
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P2860
P54nrb forms a heterodimer with PSP1 that localizes to paraspeckles in an RNA-dependent manner.
description
2005 nî lūn-bûn
@nan
2005 թուականի Սեպտեմբերին հրատարակուած գիտական յօդուած
@hyw
2005 թվականի սեպտեմբերին հրատարակված գիտական հոդված
@hy
2005年の論文
@ja
2005年論文
@yue
2005年論文
@zh-hant
2005年論文
@zh-hk
2005年論文
@zh-mo
2005年論文
@zh-tw
2005年论文
@wuu
name
P54nrb Forms a Heterodimer wit ...... les in an RNA-dependent Manner
@nl
P54nrb forms a heterodimer wit ...... es in an RNA-dependent manner.
@ast
P54nrb forms a heterodimer wit ...... es in an RNA-dependent manner.
@en
P54nrb forms a heterodimer wit ...... es in an RNA-dependent manner.
@en-gb
type
label
P54nrb Forms a Heterodimer wit ...... les in an RNA-dependent Manner
@nl
P54nrb forms a heterodimer wit ...... es in an RNA-dependent manner.
@ast
P54nrb forms a heterodimer wit ...... es in an RNA-dependent manner.
@en
P54nrb forms a heterodimer wit ...... es in an RNA-dependent manner.
@en-gb
altLabel
P54nrb forms a heterodimer wit ...... les in an RNA-dependent manner
@en
prefLabel
P54nrb Forms a Heterodimer wit ...... les in an RNA-dependent Manner
@nl
P54nrb forms a heterodimer wit ...... es in an RNA-dependent manner.
@ast
P54nrb forms a heterodimer wit ...... es in an RNA-dependent manner.
@en
P54nrb forms a heterodimer wit ...... es in an RNA-dependent manner.
@en-gb
P2860
P50
P921
P3181
P356
P1476
P54nrb forms a heterodimer wit ...... es in an RNA-dependent manner.
@en
P2860
P304
P3181
P356
10.1091/MBC.E05-06-0587
P407
P577
2005-09-07T00:00:00Z