Functional and structural basis of the nuclear localization signal in the ZIC3 zinc finger domain

被引:55
作者
Hatayama, Minoru [1 ]
Tomizawa, Tadashi [3 ]
Sakai-Kato, Kumiko [4 ]
Bouvagnet, Patrice [5 ]
Kose, Shingo [6 ]
Imamoto, Naoko [6 ]
Yokoyama, Shigeyuki [3 ,7 ]
Utsunomiya-Tate, Naoko [4 ]
Mikoshiba, Katsuhiko [2 ]
Kigawa, Takanori [8 ]
Aruga, Jun [1 ]
机构
[1] RIKEN, Brain Sci Inst, Lab Behav & Dev Disorders, Wako, Saitama 3510198, Japan
[2] RIKEN, Brain Sci Inst, Dev Neurobiol Lab, Wako, Saitama 3510198, Japan
[3] RIKEN, Yokohama Inst, SSBC, Yokohama, Kanagawa 2300045, Japan
[4] Musashino Univ Nishitokyo Shi, Pharmaceut Sci Res Inst, Tokyo 2028585, Japan
[5] INSERM, ERM, F-69677 Bron, France
[6] RIKEN, Discovery Res Inst, Cellular Dynam Lab, Wako, Saitama 3510198, Japan
[7] Univ Tokyo, Grad Sch Sci, Bunkyo Ku, Tokyo 1130033, Japan
[8] Tokyo Inst Technol, Interdisciplinary Grad Sch Sci & Engn, Yokohama, Kanagawa 2268502, Japan
关键词
D O I
10.1093/hmg/ddn239
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
Disruptions in ZIC3 cause heterotaxy, a congenital anomaly of the left-right axis. ZIC3 encodes a nuclear protein with a zinc finger (ZF) domain that contains five tandem C2H2 ZF motifs. Missense mutations in the first ZF motif (ZF1) result in defective nuclear localization, which may underlie the pathogenesis of heterotaxy. Here we revealed the structural and functional basis of the nuclear localization signal (NLS) of ZIC3 and investigated its relationship to the defect caused by ZF1 mutation. The ZIC3 NLS was located in the ZF2 and ZF3 regions, rather than ZF1. Several basic residues interspersed throughout these regions were responsible for the nuclear localization, but R320, K337 and R350 were particularly important. NMR structure analysis revealed that ZF1-4 had a similar structure to GLI ZF, and the basic side chains of the NLS clustered together in two regions on the protein surface, similar to classical bipartite NLSs. Among the residues for the ZF1 mutations, C253 and H286 were positioned for the metal chelation, whereas W255 was positioned in the hydrophobic core formed by ZF1 and ZF2. Tryptophan 255 was a highly conserved inter-finger connector and formed part of a structural motif (tandem CXW-C-H-H) that is shared with GLI, Glis and some fungal ZF proteins. Furthermore, we found that knockdown of Karyopherin alpha 1/alpha 6 impaired ZIC3 nuclear localization, and physical interactions between the NLS and the nuclear import adapter proteins were disturbed by mutations in the NLS but not by W255G. These results indicate that ZIC3 is imported into the cell nucleus by the Karyopherin (Importin) system and that the impaired nuclear localization by the ZF1 mutation is not due to a direct influence on the NLS.
引用
收藏
页码:3459 / 3473
页数:15
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