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-Structure paper
タイトル | High-resolution microtubule structures reveal the structural transitions in αβ-tubulin upon GTP hydrolysis. |
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ジャーナル・号・ページ | Cell, Vol. 157, Issue 5, Page 1117-1129, Year 2014 |
掲載日 | 2014年5月22日 |
著者 | Gregory M Alushin / Gabriel C Lander / Elizabeth H Kellogg / Rui Zhang / David Baker / Eva Nogales / |
PubMed 要旨 | Dynamic instability, the stochastic switching between growth and shrinkage, is essential for microtubule function. This behavior is driven by GTP hydrolysis in the microtubule lattice and is ...Dynamic instability, the stochastic switching between growth and shrinkage, is essential for microtubule function. This behavior is driven by GTP hydrolysis in the microtubule lattice and is inhibited by anticancer agents like Taxol. We provide insight into the mechanism of dynamic instability, based on high-resolution cryo-EM structures (4.7-5.6 Å) of dynamic microtubules and microtubules stabilized by GMPCPP or Taxol. We infer that hydrolysis leads to a compaction around the E-site nucleotide at longitudinal interfaces, as well as movement of the α-tubulin intermediate domain and H7 helix. Displacement of the C-terminal helices in both α- and β-tubulin subunits suggests an effect on interactions with binding partners that contact this region. Taxol inhibits most of these conformational changes, allosterically inducing a GMPCPP-like state. Lateral interactions are similar in all conditions we examined, suggesting that microtubule lattice stability is primarily modulated at longitudinal interfaces. |
リンク | Cell / PubMed:24855948 / PubMed Central |
手法 | EM (単粒子) |
解像度 | 4.7 - 6.6 Å |
構造データ | EMDB-5895: Cryo EM density of microtubules stabilized by GMPCPP EMDB-5896: Cryo EM density of GDP-bound dynamic microtubules EMDB-5897: Cryo EM density of microtubules stabilized by taxol EMDB-5898: EMDB-5899: |
化合物 | ChemComp-GTP: ChemComp-MG: ChemComp-G2P: ChemComp-HOH: ChemComp-GDP: ChemComp-TA1: |
由来 |
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キーワード | STRUCTURAL PROTEIN / microtubule / GmpCpp / GDP / dynamic / taxol |