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1 e control region DNA of the put regulon (put intergenic DNA).
2 e control region DNA of the put regulon (put intergenic DNA).
3 n introns, exons, untranslated trailers, and intergenic DNA.
4 n comparison to that of functional genes and intergenic DNA.
5 on intermediate between genes and translated intergenic DNA.
6 ng multiple genes and significant amounts of intergenic DNA.
7 t be primarily because of the functioning of intergenic DNA.
8  is in introns, with 75% of the genome being intergenic DNA.
9 ce of Dt-to-At conversion than does adjacent intergenic DNA.
10  genes but does not occur at I-PpoI sites in intergenic DNA.
11  not overlap known genes and appear to be in intergenic DNA.
12 enes, as well as to assess the rate at which intergenic DNA accumulates mutations.
13 e selection (about 20% for most intronic and intergenic DNA, and 60% for UTRs).
14                      By contrast, promoters, intergenic DNA, and transposons are not preferentially t
15 A.Z is preferentially crosslinked in vivo to intergenic DNA at the PH05 and GAL1 loci, and this assoc
16  subcluster, there is approximately 12 kb of intergenic DNA between KAL and PCI and approximately 19
17                               Deletion of an intergenic DNA-binding site for this complex from a huma
18  (VZV) ORF 28 and ORF 29 genes from a common intergenic DNA element, the ORF 28/29 promoter, is of in
19 ochondrial and plastid targeting may involve intergenic DNA exchange coupled with the incorporation o
20 ve revealed that transcription of noncoding, intergenic DNA is abundant among eukaryotes.
21 gaster bithorax complex (BX-C) over 330kb of intergenic DNA is responsible for directing the transcri
22 ction against single-nucleotide mutations in intergenic DNA makes a substantial contribution to the m
23                          Conservation within intergenic DNA often highlights regulatory elements that
24 trate that the beta-alpha myosin heavy chain intergenic DNA possesses a bidirectional transcriptional
25 PutA redox properties in the presence of put intergenic DNA revealed an E(m)(E(DNA)--FAD/E(DNA)--FADH
26      Here, we derive a fitness landscape for intergenic DNA segments in yeast as a function of two mo
27 ent of a quantitative evolutionary model for intergenic DNA segments.
28                  Comparative analyses of the intergenic DNA sequence across five mammalian species re
29  schemes to obtain the best performance over intergenic DNA sequence data.
30 ensities of H3K27me3 covering both genes and intergenic DNA, together with very low levels of the rep
31 olving standard, constraint in the 500 bp of intergenic DNA upstream and downstream regions of protei
32 n that of genes and (translations of) random intergenic DNA, with enrichment of Phe, Ile, Leu and Lys

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