Human chromokinesin KIF4A functions in chromosome condensation and segregation

被引:179
作者
Mazumdar, M
Sundareshan, S
Misteli, T
机构
[1] NCI, NIH, Bethesda, MD 20892 USA
[2] Bangalore Genev Pvt Ltd, BDA Ind Suburb, Bangalore 560058, Karnataka, India
关键词
chromokinesin; spindle; chromosome condensation; molecular motor;
D O I
10.1083/jcb.200401142
中图分类号
Q2 [细胞生物学];
学科分类号
071009 [细胞生物学]; 090102 [作物遗传育种];
摘要
Accurate chromosome alignment at metaphase and subsequent segregation of condensed chromosomes is a complex process involving elaborate and only partially characterized molecular machinery. Although several spindle associated molecular motors have been shown to be essential for mitotic function, only a few chromosome arm-associated motors have been described. Here, we show that human chromokinesin human HKIF4A (HKIF4A) is an essential chromosome-associated molecular motor involved in faithful chromosome segregation. HKIF4A localizes in the nucleoplasm during interphase and on condensed chromosome arms during mitosis. It accumulates in the mid-zone from late anaphase and localizes to the cytokinetic ring during cytokinesis. RNA interference-mediated depletion of HKIF4A in human cells results in defective prometaphase organization, chromosome mis-alignment at metaphase, spindle defects, and chromosome mis-segregation. HKIF4A interacts with the condensin I and II complexes and HKIF4A depletion results in chromosome hypercondensation, suggesting that HKIF4A is required for maintaining normal chromosome architecture. Our results provide functional evidence that human KIF4A is a novel component of the chromosome condensation and segregation machinery functioning in multiple steps of mitotic division.
引用
收藏
页码:613 / 620
页数:8
相关论文
共 45 条
[1]
Xkid, a chromokinesin required for chromosome alignment on the metaphase plate [J].
Antonio, C ;
Ferby, I ;
Wilhelm, H ;
Jones, M ;
Karsenti, E ;
Nebreda, AR ;
Vernos, I .
CELL, 2000, 102 (04) :425-435
[2]
A kinesin-like motor inhibits microtubule dynamic instability [J].
Bringmann, H ;
Skiniotis, G ;
Spilker, A ;
Kandels-Lewis, S ;
Vernos, I ;
Surrey, T .
SCIENCE, 2004, 303 (5663) :1519-1522
[3]
RNAi analysis reveals an unexpected role for topoisomerase II in chromosome arm congression to a metaphase plate [J].
Chang, CJ ;
Goulding, S ;
Earnshaw, WC ;
Carmena, M .
JOURNAL OF CELL SCIENCE, 2003, 116 (23) :4715-4726
[4]
Condensin-dependent localisation of topoisomerase II to an axial chromosomal structure is required for sister chromatid resolution during mitosis [J].
Coelho, PA ;
Queiroz-Machado, J ;
Sunkel, CE .
JOURNAL OF CELL SCIENCE, 2003, 116 (23) :4763-4776
[5]
ARCHITECTURE OF METAPHASE CHROMOSOMES AND CHROMOSOME SCAFFOLDS [J].
EARNSHAW, WC ;
LAEMMLI, UK .
JOURNAL OF CELL BIOLOGY, 1983, 96 (01) :84-93
[6]
Analysis of gene function in somatic mammalian cells using small interfering RNAs [J].
Elbashir, SM ;
Harborth, J ;
Weber, K ;
Tuschl, T .
METHODS, 2002, 26 (02) :199-213
[7]
The Xenopus chromokinesin Xkid is essential for metaphase chromosome alignment and must be degraded to allow anaphase chromosome movement [J].
Funabiki, H ;
Murray, AW .
CELL, 2000, 102 (04) :411-424
[8]
NUMA IS REQUIRED FOR THE ORGANIZATION OF MICROTUBULES INTO ASTER-LIKE MITOTIC ARRAYS [J].
GAGLIO, T ;
SAREDI, A ;
COMPTON, DA .
JOURNAL OF CELL BIOLOGY, 1995, 131 (03) :693-708
[9]
Mitotic chromosome formation and the condensin paradox [J].
Gassmann, R ;
Vagnarelli, P ;
Hudson, D ;
Earnshaw, WC .
EXPERIMENTAL CELL RESEARCH, 2004, 296 (01) :35-42
[10]
Isolation and characterization of a novel DNA methyltransferase complex linking DNMT3B with components of the mitotic chromosome condensation machinery [J].
Geiman, TM ;
Sankpal, UT ;
Robertson, AK ;
Chen, Y ;
Mazumdar, M ;
Heale, JT ;
Schmiesing, JA ;
Kim, W ;
Yokomori, K ;
Zhao, YM ;
Robertson, KD .
NUCLEIC ACIDS RESEARCH, 2004, 32 (09) :2716-2729