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1 that decreased rDNA function is caused by a chromosomal position effect.
2 r that can protect a transgene from negative chromosomal position effects.
3 transgene locus structures and influenced by chromosomal position effects.
4 due to differences in vector copy number and chromosomal position effects.
5 romatin insulator to protect expression from chromosomal position effects.
6 apy vectors by protecting these vectors from chromosomal position effects.
7 s and promoters and protects transgenes from chromosomal position effects.
8 erimental examination of gene expression and chromosomal position effects.
9 cer action, as well as positive and negative chromosomal position effects.
10 these sequences can buffer a transgene from chromosomal position effects.
11 ion can insulate reporter transgenes against chromosomal position effects and can block enhancer-prom
12 xpression can be subject to variability from chromosomal position effects and from epigenetic effects
13 a-globin HS4 insulator are protected against chromosomal position effects and gradual extinction of e
14 function as an autonomous unit resistant to chromosomal position effects, as evidenced by numerous t
16 ich transgenic constructs are protected from chromosomal position effects by flanking insulator eleme
17 transgenic construct that was buffered from chromosomal position effects by flanking insulator eleme
18 enhancer blocking") and acts as a barrier to chromosomal position effect (CPE) when it surrounds a st
19 as been achieved, certain factors, including chromosomal position effects due to random integration o
20 by allowing the locus to become sensitive to chromosomal position effects emanating from distal seque
21 4 has proven effective in reducing silencing chromosomal position effects in a variety of settings.
22 MARs) can insulate transgene expression from chromosomal position effects in Drosophila melanogaster.
26 e elements that protect a reporter gene from chromosomal position effects or that block enhancer-acti
27 ession was also not directly attributable to chromosomal position effects, since addition of chromati
28 this step can therefore be more sensitive to chromosomal position effects than the rate-determining s
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