Condensin, master organizer of the genome

被引:39
作者
Kalitsis, Paul [1 ,2 ]
Zhang, Tao [1 ,2 ]
Marshall, Kathryn M. [3 ]
Nielsen, Christian F. [1 ,2 ]
Hudson, Damien F. [1 ,2 ]
机构
[1] Royal Childrens Hosp, Murdoch Childrens Res Inst, Melbourne, Vic 3052, Australia
[2] Univ Melbourne, Royal Childrens Hosp, Dept Paediat, Melbourne, Vic 3052, Australia
[3] Univ Melbourne, Austin Hlth, Dept Surg, Heidelberg, Vic 3084, Australia
基金
英国医学研究理事会;
关键词
Chromosome condensation; Condensin; Chromosome segregation; Genome; MITOTIC CHROMOSOME CONDENSATION; TOPOISOMERASE-II; STRUCTURAL MAINTENANCE; ATP HYDROLYSIS; 13S CONDENSIN; COHESIN RING; DNA-BINDING; PROTEIN; COMPLEX; SEGREGATION;
D O I
10.1007/s10577-017-9553-0
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A fundamental requirement in nature is for a cell to correctly package and divide its replicated genome. Condensin is a mechanical multisubunit complex critical to this process. Condensin uses ATP to power conformational changes in DNA to enable to correct DNA compaction, organization, and segregation of DNA from the simplest bacteria to humans. The highly conserved nature of the condensin complex and the structural similarities it shares with the related cohesin complex have provided important clues as to how it functions in cells. The fundamental requirement for condensin in mitosis and meiosis is well established, yet the precise mechanism of action is still an open question. Mutation or removal of condensin subunits across a range of species disrupts orderly chromosome condensation leading to errors in chromosome segregation and likely death of the cell. There are divergences in function across species for condensin. Once considered to function solely in mitosis and meiosis, an accumulating body of evidence suggests that condensin has key roles in also regulating the interphase genome. This review will examine how condensin organizes our genomes, explain where and how it binds the genome at a mechanical level, and highlight controversies and future directions as the complex continues to fascinate and baffle biologists.
引用
收藏
页码:61 / 76
页数:16
相关论文
共 115 条
  • [1] The initial phase of chromosome condensation requires Cdk1-mediated phosphorylation of the CAP-D3 subunit of condensin II
    Abe, Satoshi
    Nagasaka, Kota
    Hirayama, Youko
    Kozuka-Hata, Hiroko
    Oyama, Masaaki
    Aoyagi, Yutaka
    Obuse, Chikashi
    Hirota, Toru
    [J]. GENES & DEVELOPMENT, 2011, 25 (08) : 863 - 874
  • [2] Opposing role of condensin hinge against replication protein A in mitosis and interphase through promoting DNA annealing
    Akai, Yuko
    Kurokawa, Yumiko
    Nakazawa, Norihiko
    Tonami-Murakami, Yuko
    Suzuki, Yuki
    Yoshimura, Shige H.
    Iwasaki, Hiroshi
    Shiroiwa, Yoshiharu
    Nakamura, Takahiro
    Shibata, Eri
    Yanagida, Mitsuhiro
    [J]. OPEN BIOLOGY, 2011, 1
  • [3] Condensin and cohesin display different arm conformations with characteristic hinge angles
    Anderson, DE
    Losada, A
    Erickson, HP
    Hirano, T
    [J]. JOURNAL OF CELL BIOLOGY, 2002, 156 (03) : 419 - 424
  • [4] Chromosome condensation and decondensation during mitosis
    Antonin, Wolfram
    Neumann, Heinz
    [J]. CURRENT OPINION IN CELL BIOLOGY, 2016, 40 : 15 - 22
  • [5] ATP hydrolysis is required for cohesin's association with chromosomes
    Arumugam, P
    Gruber, S
    Tanaka, K
    Haering, CH
    Mechtler, K
    Nasmyth, K
    [J]. CURRENT BIOLOGY, 2003, 13 (22) : 1941 - 1953
  • [6] In Vivo Architecture and Action of Bacterial Structural Maintenance of Chromosome Proteins
    Badrinarayanan, Anjana
    Reyes-Lamothe, Rodrigo
    Uphoff, Stephan
    Leake, Mark C.
    Sherratt, David J.
    [J]. SCIENCE, 2012, 338 (6106) : 528 - 531
  • [7] Disruption of a Conserved CAP-D3 Threonine Alters Condensin Loading on Mitotic Chromosomes Leading to Chromosome Hypercondensation
    Bakhrebah, Muhammed
    Zhang, Tao
    Mann, Jeff R.
    Kalitsis, Paul
    Hudson, Damien F.
    [J]. JOURNAL OF BIOLOGICAL CHEMISTRY, 2015, 290 (10) : 6156 - 6167
  • [8] Three-dimensional topology of the SMC2/SMC4 subcomplex from chicken condensin I revealed by cross-linking and molecular modelling
    Barysz, Helena
    Kim, Ji Hun
    Chen, Zhuo Angel
    Hudson, Damien F.
    Rappsilber, Juri
    Gerloff, Dietlind L.
    Earnshaw, William C.
    [J]. OPEN BIOLOGY, 2015, 5 (02)
  • [9] Condensin II Promotes the Formation of Chromosome Territories by Inducing Axial Compaction of Polyploid Interphase Chromosomes
    Bauer, Christopher R.
    Hartl, Tom A.
    Bosco, Giovanni
    [J]. PLOS GENETICS, 2012, 8 (08):
  • [10] Positive Supercoiling of Mitotic DNA Drives Decatenation by Topoisomerase II in Eukaryotes
    Baxter, J.
    Sen, N.
    Lopez Martinez, V.
    Monturus De Carandini, M. E.
    Schvartzman, J. B.
    Diffley, J. F. X.
    Aragon, L.
    [J]. SCIENCE, 2011, 331 (6022) : 1328 - 1332