Ten short DNA fragments have been selected from a library of the nuclear matrix-attached DNA (nmDNA) from chicken erythrocytes by their ability to hybridize with the fraction of chicken replication origins isolated by nascent DNA strand extrusion. The primary structure of these fragments has been de
Initiation of DNA replication at a nuclear matrix-attached chromatin fraction
✍ Scribed by Ilian Radichev; Anastassia Parashkevova; Boyka Anachkova
- Publisher
- John Wiley and Sons
- Year
- 2005
- Tongue
- English
- Weight
- 215 KB
- Volume
- 203
- Category
- Article
- ISSN
- 0021-9541
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
It is still unclear what nuclear components support initiation of DNA replication. To address this issue, we developed a cell‐free replication system in which the nuclear matrix along with the residual matrix‐attached chromatin was used as a substrate for DNA replication. We found out that initiation occurred at late G1 residual chromatin but not at early G1 chromatin and depended on cytosolic and nuclear factors present in S phase cells but not in G1 cells. Initiation of DNA replication occurred at discrete replication foci in a pattern typical for early S phase. To prove that the observed initiation takes place at legitimate DNA replication origins, the in vitro synthesized nascent DNA strands were isolated and analyzed. It was shown that they were enriched in sequences from the core origin region of the early firing, dihydrofolate reductase origin of replication ori‐β and not in distal to the origin sequences. A conclusion is drawn that initiation of DNA replication occurs at discrete sub‐chromosomal structures attached to the nuclear matrix. © 2004 Wiley‐Liss, Inc.
📜 SIMILAR VOLUMES
Matrix-attached regions (MARs) have been demonstrated to nest origins of replication and transcriptional enhancers. A set of 13 rules is proposed aimed at facilitating the classification of a DNA sequence as a matrix attachment region. These rules, which were deduced from a study of known MARs from