Pages that link to "Q24294504"
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The following pages link to Targeting of U4/U6 small nuclear RNP assembly factor SART3/p110 to Cajal bodies (Q24294504):
Displaying 50 items.
- Spliceosome associated factor 3, U4/U6 recycling protein (Q21121239) (← links)
- A novel EB-1/AIDA-1 isoform, AIDA-1c, interacts with the Cajal body protein coilin (Q21284170) (← links)
- Squamous cell carcinoma antigen recognized by T cells 3 (Q21989505) (← links)
- CAJAL BODIES: A Long History of Discovery (Q22065410) (← links)
- Non-coding RNAs: lessons from the small nuclear and small nucleolar RNAs (Q22121992) (← links)
- Identification, cloning, and functional analysis of the human U6 snRNA-specific terminal uridylyl transferase (Q24294457) (← links)
- RNAi knockdown of hPrp31 leads to an accumulation of U4/U6 di-snRNPs in Cajal bodies (Q24299534) (← links)
- The human U5 snRNP 52K protein (CD2BP2) interacts with U5-102K (hPrp6), a U4/U6.U5 tri-snRNP bridging protein, but dissociates upon tri-snRNP formation (Q24300349) (← links)
- Human U4/U6 snRNP recycling factor p110: mutational analysis reveals the function of the tetratricopeptide repeat domain in recycling (Q24301474) (← links)
- Recycling of the U12-type spliceosome requires p110, a component of the U6atac snRNP (Q24306575) (← links)
- Ongoing U snRNP biogenesis is required for the integrity of Cajal bodies (Q24336921) (← links)
- The Prp19 complex and the Usp4Sart3 deubiquitinating enzyme control reversible ubiquitination at the spliceosome (Q24337075) (← links)
- The U4/U6 recycling factor SART3 has histone chaperone activity and associates with USP15 to regulate H2B deubiquitination (Q24337279) (← links)
- Human splicing factor SF3a, but not SF1, is essential for pre-mRNA splicing in vivo (Q24337926) (← links)
- The Cajal body and histone locus body (Q24630829) (← links)
- Identification of 13 novel human modification guide RNAs (Q24642043) (← links)
- Detection of snRNP assembly intermediates in Cajal bodies by fluorescence resonance energy transfer (Q24678068) (← links)
- A stochastic view of spliceosome assembly and recycling in the nucleus (Q27339309) (← links)
- A direct interaction between the Utp6 half-a-tetratricopeptide repeat domain and a specific peptide in Utp21 is essential for efficient pre-rRNA processing. (Q27940043) (← links)
- Coilin: The first 25 years (Q28084574) (← links)
- The architectural organization of human stem cell cycle regulatory machinery (Q28609122) (← links)
- The nuclear cap-binding complex interacts with the U4/U6·U5 tri-snRNP and promotes spliceosome assembly in mammalian cells (Q28910445) (← links)
- SMN in spinal muscular atrophy and snRNP biogenesis (Q29013847) (← links)
- In vivo kinetics of U4/U6·U5 tri-snRNP formation in Cajal bodies. (Q30498165) (← links)
- Role of Cajal bodies and nucleolus in the maturation of the U1 snRNP in Arabidopsis (Q33394762) (← links)
- Reduced viability, fertility and fecundity in mice lacking the cajal body marker protein, coilin. (Q33480004) (← links)
- The C-terminal domain of coilin interacts with Sm proteins and U snRNPs. (Q34425050) (← links)
- Nuclear bodies: random aggregates of sticky proteins or crucibles of macromolecular assembly? (Q35003162) (← links)
- In vivo kinetics of Cajal body components (Q35121375) (← links)
- A missense mutation in PRPF6 causes impairment of pre-mRNA splicing and autosomal-dominant retinitis pigmentosa (Q35136973) (← links)
- The ribonucleotidyl transferase USIP-1 acts with SART3 to promote U6 snRNA recycling (Q35237097) (← links)
- GW-Bodies and P-Bodies Constitute Two Separate Pools of Sequestered Non-Translating RNAs (Q35941461) (← links)
- NUFIP and the HSP90/R2TP chaperone bind the SMN complex and facilitate assembly of U4-specific proteins (Q36160639) (← links)
- Nuclear LSm8 affects number of cytoplasmic processing bodies via controlling cellular distribution of Like-Sm proteins. (Q36284488) (← links)
- U4 snRNA nucleolar localization requires the NHPX/15.5-kD protein binding site but not Sm protein or U6 snRNA association (Q36323286) (← links)
- The Cajal body: a meeting place for spliceosomal snRNPs in the nuclear maze (Q36436723) (← links)
- The abbreviated pluripotent cell cycle. (Q36886887) (← links)
- The assembly of a spliceosomal small nuclear ribonucleoprotein particle (Q36972150) (← links)
- A structural model for the HAT domain of Utp6 incorporating bioinformatics and genetics (Q37234716) (← links)
- Roles of eukaryotic Lsm proteins in the regulation of mRNA function (Q37361942) (← links)
- Phosphorylation and the Cajal body: modification in search of function (Q37700947) (← links)
- The function of spliceosome components in open mitosis (Q37843675) (← links)
- Biogenesis of spliceosomal small nuclear ribonucleoproteins (Q37913270) (← links)
- Cajal bodies: where form meets function (Q38050096) (← links)
- A day in the life of the spliceosome (Q38180972) (← links)
- The decapping activator Lsm1p-7p-Pat1p complex has the intrinsic ability to distinguish between oligoadenylated and polyadenylated RNAs (Q38301581) (← links)
- Spliceosomal small nuclear ribonucleoprotein particles repeatedly cycle through Cajal bodies (Q38629976) (← links)
- Dual RNA Processing Roles of Pat1b via Cytoplasmic Lsm1-7 and Nuclear Lsm2-8 Complexes (Q38646470) (← links)
- Towards an understanding of regulating Cajal body activity by protein modification (Q38797923) (← links)
- Cajal body function in genome organization and transcriptome diversity. (Q38808242) (← links)