The effects of purified recombinant microtubule-associated protein 2c (rMAP2c) on the dynamic instability of microtubules were examined by direct observation of individual microtubules irt vitro by video-enhanced differential interference contrast light microscopy. Microtubules were grown in the absence or presence of varying concentrations of rMAP2c and were analyzed to determine growth rates, shortening rates, and the frequencies of conversion between growing and shortening phases. We found rMAP2c to stabilize microtubules dramatically. The most notable effect is a reduction in both the frequency of catastrophes (transitions from growth to shortening) and the mean length of shortening events: no microtubule catastrophes were observed at concentrations of rMAP2c as low as 1.06 mu M in a solution of 10 mu M tubulin. Even at lower rMAP2c concentrations, there is a marked stabilizing effect. As the concentration of rMAP2c increases, average growth rates increase slightly, shortening rates decrease, and the frequency of rescues (transitions from shortening to growth) increases significantly. Together, these changes in parameters produce a population of extremely stable microtubules in the presence of rMAP2c. This stabilization is consistent with a structural role for MAP2c during early postnatal neural development.
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Univ Chinese Acad Sci, Savaid Sch Med, Beijing 100049, Peoples R China
Chinese Acad Sci, Inst Zool, State Key Lab Integrated Management Pest Insects, Beijing 100101, Peoples R ChinaUniv Chinese Acad Sci, Savaid Sch Med, Beijing 100049, Peoples R China
Jing, Zhenli
Yin, Huilong
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Univ Chinese Acad Sci, Savaid Sch Med, Beijing 100049, Peoples R ChinaUniv Chinese Acad Sci, Savaid Sch Med, Beijing 100049, Peoples R China
Yin, Huilong
Wang, Pan
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Chinese Acad Sci, Inst Zool, State Key Lab Integrated Management Pest Insects, Beijing 100101, Peoples R ChinaUniv Chinese Acad Sci, Savaid Sch Med, Beijing 100049, Peoples R China
Wang, Pan
Gao, Juntao
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Tsinghua Univ, MOE Key Lab Bioinformat, Bioinformat Div, Beijing 100084, Peoples R China
Tsinghua Univ, Dept Automat, TNLIST, Ctr Synthet & Syst Biol, Beijing 100084, Peoples R ChinaUniv Chinese Acad Sci, Savaid Sch Med, Beijing 100049, Peoples R China
Gao, Juntao
Yuan, Li
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Univ Chinese Acad Sci, Savaid Sch Med, Beijing 100049, Peoples R ChinaUniv Chinese Acad Sci, Savaid Sch Med, Beijing 100049, Peoples R China
机构:
Med Univ Vienna, Dept Med Biochem, Max F Perutz Labs, Univ Dept,Vienna Bioctr, A-1030 Vienna, AustriaMed Univ Vienna, Dept Med Biochem, Max F Perutz Labs, Univ Dept,Vienna Bioctr, A-1030 Vienna, Austria
Ruggenthaler, Pia
Fichtenbauer, Daniela
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Med Univ Vienna, Dept Med Biochem, Max F Perutz Labs, Univ Dept,Vienna Bioctr, A-1030 Vienna, AustriaMed Univ Vienna, Dept Med Biochem, Max F Perutz Labs, Univ Dept,Vienna Bioctr, A-1030 Vienna, Austria
Fichtenbauer, Daniela
Krasensky, Julia
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Austrian Acad Sci, Gregor Mendel Inst Mol Plant Biol, A-1030 Vienna, AustriaMed Univ Vienna, Dept Med Biochem, Max F Perutz Labs, Univ Dept,Vienna Bioctr, A-1030 Vienna, Austria
Krasensky, Julia
Jonak, Claudia
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Austrian Acad Sci, Gregor Mendel Inst Mol Plant Biol, A-1030 Vienna, AustriaMed Univ Vienna, Dept Med Biochem, Max F Perutz Labs, Univ Dept,Vienna Bioctr, A-1030 Vienna, Austria
Jonak, Claudia
Waigmann, Elisabeth
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Med Univ Vienna, Dept Med Biochem, Max F Perutz Labs, Univ Dept,Vienna Bioctr, A-1030 Vienna, AustriaMed Univ Vienna, Dept Med Biochem, Max F Perutz Labs, Univ Dept,Vienna Bioctr, A-1030 Vienna, Austria