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- W3148538166 abstract "It is observed that the regulation sequences at the two ends of every active of the heart nuclear DNA fragments may differentially combine with active regulation factors such as some specific binding proteins by using AFM and other experimental technologies. These active genes form different gene which are separated by intervals. Using AFM, occasionally, it is also discovered that during the transcription stage, the heart nuclear DNA fragments consist of 3-4-5 gene and related intervals, which form various gene respectively by some permutation and Each lineage is likely to form nRNA chain-like complexes that are 3 times the quantity of knots, and each nRNA chain-like complex is connected with both ends of corresponding lineage. One knot of the DNA fragments participates the formation of different lineage and corresponding RNA chain-like complexes by different combination. By posttranscriptional modification, they can form nmRNA linear chain-like complexes that show the speciality of tissues. The beginnings of transcription units have the same number as lineages, and all lineages in DNA molecules may transcribe efficiently from corresponding beginnings of transcription unit simultaneously. Our work shows the prospective application of AFM in the research of the diversity of lineages formation from knots in the transcription stage and the efficiency of knots transcription." @default.
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- W3148538166 date "2002-01-01" @default.
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- W3148538166 title "Observation of the in vitro Transcription of the Mouse (Balb/c) Heart Nuclear DNA Fragments by AFM" @default.
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