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1 nked by a 1.2-kb 5' promoter and a 1.2-kb 3' terminator region.
2 bryonic stem cells, with a minor peak in the terminator region.
3 ion through the gene, and termination in the terminator region.
4 ex and facilitating their recruitment to the terminator region.
5 ctively bringing together their promoter and terminator regions.
6 physical interaction of the promoter and the terminator regions.
7                  These include transcription terminators, "region 0" repeats, "region 1" repeats, dup
8                    TFIIB also cross-links to terminator regions and is required for gene loops that j
9            However, the distinct behavior of terminator regions and their corresponding coding region
10 ce (UAS) and promoter elements, promoter and terminator regions, and regulatory and coding regions (g
11 l2, like TFIIB, associates with promoter and terminator regions, and the diminished association of TF
12  RNAP II transcription in which promoter and terminator regions are juxtaposed, and that the resultin
13 ongly depleted of nucleosomes, but find that terminator regions are much less depleted than expected.
14 ase (MNase) suggests that yeast promoter and terminator regions are very depleted of nucleosomes, pre
15 nd processing factors with both promoter and terminator regions, challenge this concept.
16 IB cross-linked to both the promoter and the terminator regions during the transcriptionally activate
17  the portion of the atmosphere it probes-the terminator region-is homogeneous.
18 last rbcL, psbA, petD and rpoA genes and the terminator region of the Escherichia coli rrnB operon we
19  and mutation at the NF1-binding site in the terminator region of the VA1 gene selectively affects mu
20 d as the interaction of the promoter and the terminator regions of a gene during transcription, requi
21 f gene loops that juxtapose the promoter and terminator regions of genes with exceptionally long ORFs
22 und outside of transcription start sites and terminator regions of genes.
23 onserved genic hotspots such as promoter and terminator regions of poly(A)-dependent genes.
24    DNA loops that juxtapose the promoter and terminator regions of RNA polymerase II-transcribed gene
25     Gene looping juxtaposes the promoter and terminator regions of RNA polymerase II-transcribed gene
26 D18 associates with the promoter, coding and terminator regions of target genes suggesting its functi
27    TFIIB crosslinks to both the promoter and terminator regions of the PMA1 and BLM10 genes, and its
28 ation, Ess1 associates with the promoter and terminator regions of the PMA1 and PHO5 genes.
29 ically with the NF1-binding sites within the terminator regions of the VA1 gene and with two subunits
30 eport a physical association of promoter and terminator regions of the yeast BUD3 and SEN1 genes.
31  promoter preferentially associates with the terminator region only.
32 nce of such sequences in 70% of the putative terminator regions (PTRs) genome-wide.
33 heir coding sequence by inserting into their terminator region single-guide RNAs that activate downst
34 fraction interacts specifically with the VA1 terminator regions to affect both termination and initia
35       A putative ribosomal promoter and anti-terminator regions were also identified and described.