Synthesis of U1 RNA in a DNA-dependent system from sea urchin embryos.
about
In vivo and in vitro expression of U7 snRNA genes: cis- and trans-acting elements required for RNA polymerase II-directed transcriptionSpCOUP-TF: a sea urchin member of the steroid/thyroid hormone receptor family.The sea urchin stem-loop-binding protein: a maternally expressed protein that probably functions in expression of multiple classes of histone mRNA.In vitro synthesis of vertebrate U1 snRNA.Expression of the U1 RNA gene repeat during early sea urchin development: evidence for a switch in U1 RNA genes during developmentA conserved region in the sea urchin U1 snRNA promoter interacts with a developmentally regulated factor.Comparison of the late H1 histone genes of the sea urchins Lytechinus pictus and Strongelocentrotus purpuratus.Insect small nuclear RNA gene promoters evolve rapidly yet retain conserved features involved in determining promoter activity and RNA polymerase specificity.Positive and negative transcriptional regulatory elements in the early H4 histone gene of the sea urchin, Strongylocentrotus purpuratusStructure and expression of a second sea urchin U1 RNA gene repeat.Common factors direct transcription through the proximal sequence elements (PSEs) of the embryonic sea urchin U1, U2, and U6 genes despite minimal similarity among the PSEs.UHF-1, a factor required for maximal transcription of early and late sea urchin histone H4 genes: analysis of promoter-binding sitesIn vitro transcription of a Drosophila U1 small nuclear RNA gene requires TATA box-binding protein and two proximal cis-acting elements with stringent spacing requirements.Sea urchin early and late H4 histone genes bind a specific transcription factor in a stable preinitiation complex.Synthesis of U1 RNA in isolated mouse cell nuclei: initiation and 3'-end formationAccurate and efficient RNA polymerase II transcription with a soluble nuclear fraction derived from Drosophila embryos.Transcription and cap trimethylation of a nematode spliced leader RNA in a cell-free system.Cell biology of the snRNP particles.Transcription of the sea urchin U6 gene in vitro requires a TATA-like box, a proximal sequence element, and sea urchin USF, which binds an essential E boxIdentification of developmentally regulated sea urchin U5 snRNA genes.Transcription of the Schizosaccharomyces pombe U2 gene in vivo and in vitro is directed by two essential promoter elements.Formation of the 3' end of sea urchin U1 small nuclear RNA occurs independently of the conserved 3' box and on transcripts initiated from a histone promoter.
P2860
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P2860
Synthesis of U1 RNA in a DNA-dependent system from sea urchin embryos.
description
1986 nî lūn-bûn
@nan
1986年の論文
@ja
1986年論文
@yue
1986年論文
@zh-hant
1986年論文
@zh-hk
1986年論文
@zh-mo
1986年論文
@zh-tw
1986年论文
@wuu
1986年论文
@zh
1986年论文
@zh-cn
name
Synthesis of U1 RNA in a DNA-dependent system from sea urchin embryos.
@ast
Synthesis of U1 RNA in a DNA-dependent system from sea urchin embryos.
@en
type
label
Synthesis of U1 RNA in a DNA-dependent system from sea urchin embryos.
@ast
Synthesis of U1 RNA in a DNA-dependent system from sea urchin embryos.
@en
prefLabel
Synthesis of U1 RNA in a DNA-dependent system from sea urchin embryos.
@ast
Synthesis of U1 RNA in a DNA-dependent system from sea urchin embryos.
@en
P2093
P2860
P356
P1476
Synthesis of U1 RNA in a DNA-dependent system from sea urchin embryos.
@en
P2093
G F Morris
W F Marzluff
P2860
P304
P356
10.1073/PNAS.83.11.3674
P407
P577
1986-06-01T00:00:00Z