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A rice tubulin tyrosine ligase-like 12 protein affects the dynamic and orientation of microtubules
被引:0
|作者:
Kunxi Zhang
[1
]
Xin Zhu
[1
]
Steffen Durst
[1
]
Petra Hohenberger
[1
]
Min-Jung Han
[2
]
Gynheung An
[3
]
Vaidurya P.Sahi
[1
]
Michael Riemann
[1
]
Peter Nick
[1
]
机构:
[1] Molecular Cell Biology, Botanical Institute, Karlsruhe Institute of Technology
[2] Aptamer Initiative, Postech Biotech Center, Pohang University of Science and Technology
[3] Department of Plant Molecular Systems Biotech, Kyung Hee University
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中图分类号:
S511 [稻];
学科分类号:
0901 ;
摘要:
The detyrosination/retyrosination cycle is the most common post-translational modification of α-tubulin.Removal of the conserved C-terminal tyrosine of α-tubulin by a still elusive tubulin tyrosine carboxypeptidase, and religation of this tyrosine by a tubulin tyrosine ligase(TTL), are probably common to all eukaryotes. Interestingly, for plants, the only candidates qualifying as potential TTL homologs are the tubulin tyrosine ligase-like 12 proteins. To get insight into the biological functions of these potential TTL homologs, we cloned the rice TTL-like 12 protein(Os TTLL12)andgeneratedoverexpression Os TTLL12-RFP lines in both rice and tobacco BY-2 cells. We found, unexpectedly, that overexpression of this Os TTLL12-RFP increased the relative abundance of detyrosinated α-tubulin in both coleoptile and seminal root, correlated with more stable microtubules. This was independent of the respective orientation of cortical microtubule, and followed by correspondingly changing growth of coleoptiles and seminal roots. A perturbed organization of phragmoplast microtubules and disoriented cell walls were further characteristics of this phenotype. Thus, the elevated tubulin detyrosination in consequence of Os TTLL12 overexpression affects structural and dynamic features of microtubules, followed by changes in the axiality of cell plate deposition and, consequently, plant growth.
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页码:848 / 864
页数:17
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