Literature DB >> 8709152

Three-dimensional structure of ncd-decorated microtubules obtained by a back-projection method.

H Sosa1, R A Milligan.   

Abstract

We have used cryo-electron microscopy and image analysis to obtain the three-dimensional (3D) structure of 11, 12, 14 and 15 protofilament microtubules decorated with the motor domain of ncd. To obtain the 3D maps, we developed a back-projection method that does not require a helical arrangement of the tubulin heterodimers. This method allows the calculation of 3D maps even when lattice discontinuities (seams) are present. The maps show that the microtubules we studied conform to a B-type lattice with one or more seams. In the presence of 5'-adenylim-idodiphosphate (AMP-PNP), the motor domain of ncd binds to the microtubule protofilament crest interacting with only one protofilament. Viewing the structures along the microtubule axis shows that the ncd motor domain and the tubulin are titled in opposite directions. We determined that a clockwise tilt of the tubulin subunits corresponds to a view from the minus end towards the plus end of the microtubule.

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Year:  1996        PMID: 8709152     DOI: 10.1006/jmbi.1996.0434

Source DB:  PubMed          Journal:  J Mol Biol        ISSN: 0022-2836            Impact factor:   5.469


  12 in total

1.  Cryo-electron microscopy structure of an SH3 amyloid fibril and model of the molecular packing.

Authors:  J L Jiménez; J I Guijarro; E Orlova; J Zurdo; C M Dobson; M Sunde; H R Saibil
Journal:  EMBO J       Date:  1999-02-15       Impact factor: 11.598

2.  Kinesin-13s form rings around microtubules.

Authors:  Dongyan Tan; Ana B Asenjo; Vito Mennella; David J Sharp; Hernando Sosa
Journal:  J Cell Biol       Date:  2006-10-02       Impact factor: 10.539

3.  Structural basis of interprotofilament interaction and lateral deformation of microtubules.

Authors:  Haixin Sui; Kenneth H Downing
Journal:  Structure       Date:  2010-08-11       Impact factor: 5.006

4.  Working stroke of the kinesin-14, ncd, comprises two substeps of different direction.

Authors:  Bert Nitzsche; Elzbieta Dudek; Lukasz Hajdo; Andrzej A Kasprzak; Andrej Vilfan; Stefan Diez
Journal:  Proc Natl Acad Sci U S A       Date:  2016-10-11       Impact factor: 11.205

5.  Structure of the kinesin13-microtubule ring complex.

Authors:  Dongyan Tan; William J Rice; Hernando Sosa
Journal:  Structure       Date:  2008-11-12       Impact factor: 5.006

Review 6.  Cryo-EM studies of microtubule structural intermediates and kinetochore-microtubule interactions.

Authors:  Eva Nogales; Vincent H Ramey; Hong-Wei Wang
Journal:  Methods Cell Biol       Date:  2010       Impact factor: 1.441

7.  A new protocol to accurately determine microtubule lattice seam location.

Authors:  Rui Zhang; Eva Nogales
Journal:  J Struct Biol       Date:  2015-09-28       Impact factor: 2.867

8.  Image reconstructions of microtubules decorated with monomeric and dimeric kinesins: comparison with x-ray structure and implications for motility.

Authors:  A Hoenger; S Sack; M Thormählen; A Marx; J Müller; H Gross; E Mandelkow
Journal:  J Cell Biol       Date:  1998-04-20       Impact factor: 10.539

9.  Four-stranded mini microtubules formed by Prosthecobacter BtubAB show dynamic instability.

Authors:  Xian Deng; Gero Fink; Tanmay A M Bharat; Shaoda He; Danguole Kureisaite-Ciziene; Jan Löwe
Journal:  Proc Natl Acad Sci U S A       Date:  2017-07-03       Impact factor: 11.205

10.  Conserved mechanisms of microtubule-stimulated ADP release, ATP binding, and force generation in transport kinesins.

Authors:  Joseph Atherton; Irene Farabella; I-Mei Yu; Steven S Rosenfeld; Anne Houdusse; Maya Topf; Carolyn A Moores
Journal:  Elife       Date:  2014-09-10       Impact factor: 8.140

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