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The structure of the nucleotide-binding site of kinesin

Jens Müller, Alexander Marx, Stefan Sack, Young Hwa Song, Eckhard Mandelkow*

*Korrespondierende/r Autor/-in für diese Arbeit

Abstract

Kinesin is a microtubule-based motor protein responsible for anterograde transport of vesicles and organelles in nerve axons and other cell types. The energy necessary for this transport is derived from the hydrolysis of ATP which is thought to induce conformational changes in the protein. We have solved the X-ray crystal structures of rat brain kinesin in three conditions intended to mimic different nucleotide states: (1) with ADP bound to the nucleotide-binding site, (2) with bound ADP in the presence of AIF4-, and (3) with ADP hydrolyzed to AMP by apyrase. In contrast to analogous cases observed in GTP-binding proteins or the muscle motor myosin, the structure of kinesin remained nearly unchanged. This highlights the stability of kinesin's ADP state in the absence of microtubules. Surprisingly, even after hydrolysis of ADP to AMP by apyrase a strong density peak remains at the position of the β-phosphate which is compatible either with a phosphate or a sulfate from the solvent and appears to stabilize the nucleotide-binding pocket through several hydrogen bonds.

OriginalspracheEnglisch
ZeitschriftBiological Chemistry
Jahrgang380
Ausgabenummer7-8
Seiten (von - bis)981-992
Seitenumfang12
ISSN1431-6730
DOIs
PublikationsstatusVeröffentlicht - 07.1999

Fördermittel

We thank H.D. Bartunik and G. Bourenko for help with MPG/GBF beamline BW6 at DESY, Hamburg. We are also grateful to J. Kull (MPI, Heidelberg), R. Hilgenfeld (Jena), R. Goody (Dortmund), E. Pai (Toronto), M. Thormählen and E.-M. Mandelkow for stimulating discussions and comments. This project was supported in part by the Deutsche Forschungsgemeinschaft. This work contains part of the doctoral thesis of J.M.

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