サインイン

DNA replication is initiated at sites containing predefined DNA sequences known as origins of replication. DNA is unwound at these sites by the minichromosome maintenance (MCM) helicase and other factors such as Cdc45 and the associated GINS complex.The unwound single strands are protected by replication protein A (RPA) until DNA polymerase starts synthesizing DNA at the 5’ end of the strand in the same direction as the replication fork. To prevent the replication fork from falling apart, a fork protection complex (FPC) travels with the growing fork. This conserved protein complex can be found in eukaryotes and is composed of proteins like Tim, Tipin, And1, and Claspin.

In the laboratory, replication forks can be stalled by the action of hydroxyurea. Hydroxyurea depletes the cellular pools of dNTPs, which are needed by DNA polymerase for DNA synthesis. When dNTPs are unavailable, DNA synthesis slows down and ultimately stops completely. Thus, the stalling of replication forks in living cells is linked to the inactivity of DNA polymerase.

FPC links the activity of the polymerase with that of the helicase. So even when the polymerase stops, the helicase keeps unwinding the DNA to produce an excess of single-stranded DNA (ssDNA) before coming to a halt. This excess ssDNA resembles resected overhangs from double-stranded break repair. To stabilize the structure, RPA proteins bind to the ssDNA and recruits the ATR proteins. ATR binding activates the cell cycle regulator protein Chk1 to block the firing of replication origins and stall the cell cycle for DNA repair. Thus, ssDNA serves as a potent signal that connects DNA damage to repair.

タグ
Replication ForkDNA PolymeraseHelicaseRPARad9 Rad1 Hus1 ComplexATRChk1Cdc25Rad51SMARCAL1Fork ReversalFork RegressionBRCA2

章から 7:

article

Now Playing

7.9 : Restarting Stalled Replication Forks

DNA修復と組換え

5.7K 閲覧数

article

7.1 : DNA修復の概要

DNA修復と組換え

26.8K 閲覧数

article

7.2 : ベースエクスキシジョンリペア

DNA修復と組換え

21.3K 閲覧数

article

7.3 : ロングパッチベース切除修理

DNA修復と組換え

6.9K 閲覧数

article

7.4 : ヌクレオチド除去修復

DNA修復と組換え

10.9K 閲覧数

article

7.5 : 病変間DNAポリメラーゼ

DNA修復と組換え

9.6K 閲覧数

article

7.6 : 2本鎖断線の修正

DNA修復と組換え

11.7K 閲覧数

article

7.7 : DNA損傷は細胞周期を失速させる可能性があります

DNA修復と組換え

8.9K 閲覧数

article

7.8 : 相同組換え

DNA修復と組換え

49.4K 閲覧数

article

7.10 : 遺伝子変換

DNA修復と組換え

9.5K 閲覧数

article

7.11 : 転置と組換えの概要

DNA修復と組換え

14.8K 閲覧数

article

7.12 : DNAのみのトランスポゾン

DNA修復と組換え

14.0K 閲覧数

article

7.13 : レトロウイルス

DNA修復と組換え

11.6K 閲覧数

article

7.14 : LTRレトロトランスポゾン

DNA修復と組換え

17.1K 閲覧数

article

7.15 : 非LTRレトロトランスポゾン

DNA修復と組換え

11.2K 閲覧数

See More

JoVE Logo

個人情報保護方針

利用規約

一般データ保護規則

研究

教育

JoVEについて

Copyright © 2023 MyJoVE Corporation. All rights reserved