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Items: 1 to 20 of 133

1.

Force generation by kinesin and myosin cytoskeletal motor proteins.

Kull FJ, Endow SA.

J Cell Sci. 2013 Jan 1;126(Pt 1):9-19. doi: 10.1242/jcs.103911. Epub 2013 Mar 13. Review.

2.

Kinesin: switch I & II and the motor mechanism.

Kull FJ, Endow SA.

J Cell Sci. 2002 Jan 1;115(Pt 1):15-23. Review.

3.

A kinesin motor in a force-producing conformation.

Heuston E, Bronner CE, Kull FJ, Endow SA.

BMC Struct Biol. 2010 Jul 5;10:19. doi: 10.1186/1472-6807-10-19.

4.

Insights into the mechanisms of myosin and kinesin molecular motors from the single-molecule unbinding force measurements.

Mikhailenko SV, Oguchi Y, Ishiwata S.

J R Soc Interface. 2010 Jun 6;7 Suppl 3:S295-306. doi: 10.1098/rsif.2010.0107.focus. Epub 2010 Mar 31. Review.

5.

Cooperativity in the motor activities of the ATP-fueled molecular motors.

Liu MS, Todd BD, Sadus RJ.

Biochim Biophys Acta. 2005 Sep 25;1752(2):111-23.

PMID:
16140597
6.

Altered nucleotide-microtubule coupling and increased mechanical output by a kinesin mutant.

Liu HL, Hallen MA, Endow SA.

PLoS One. 2012;7(10):e47148. doi: 10.1371/journal.pone.0047148. Epub 2012 Oct 16.

7.

Force and number of myosin motors during muscle shortening and the coupling with the release of the ATP hydrolysis products.

Caremani M, Melli L, Dolfi M, Lombardi V, Linari M.

J Physiol. 2015 Aug 1;593(15):3313-32. doi: 10.1113/JP270265. Epub 2015 Jul 7.

PMID:
26041599
8.

A deterministic mechanism producing the loose coupling phenomenon observed in an actomyosin system.

Masuda T.

Biosystems. 2009 Feb;95(2):104-13. doi: 10.1016/j.biosystems.2008.08.003. Epub 2008 Aug 27.

PMID:
18793694
9.

A simulation model of the conventional kinesin based on the Driven-by-Detachment mechanism.

Masuda T.

Biosystems. 2009 Aug;97(2):121-6. doi: 10.1016/j.biosystems.2009.05.007. Epub 2009 May 21.

PMID:
19464341
10.

How myosin motors power cellular functions: an exciting journey from structure to function: based on a lecture delivered at the 34th FEBS Congress in Prague, Czech Republic, July 2009.

Llinas P, Pylypenko O, Isabet T, Mukherjea M, Sweeney HL, Houdusse AM.

FEBS J. 2012 Feb;279(4):551-62. doi: 10.1111/j.1742-4658.2011.08449.x. Epub 2012 Jan 9.

11.

Motor proteins of the kinesin family. Structures, variations, and nucleotide binding sites.

Sack S, Kull FJ, Mandelkow E.

Eur J Biochem. 1999 May;262(1):1-11. Review.

12.

A new structural state of myosin.

Kull FJ, Endow SA.

Trends Biochem Sci. 2004 Mar;29(3):103-6. Review.

PMID:
15055201
13.

Chemomechanical cycle of kinesin differs from that of myosin.

Romberg L, Vale RD.

Nature. 1993 Jan 14;361(6408):168-70.

PMID:
8421522
14.

Switch-based mechanism of kinesin motors.

Kikkawa M, Sablin EP, Okada Y, Yajima H, Fletterick RJ, Hirokawa N.

Nature. 2001 May 24;411(6836):439-45.

PMID:
11373668
15.

A lever-arm rotation drives motility of the minus-end-directed kinesin Ncd.

Endres NF, Yoshioka C, Milligan RA, Vale RD.

Nature. 2006 Feb 16;439(7078):875-8. Epub 2005 Dec 28.

16.

Regulation of molecular motor proteins.

Reilein AR, Rogers SL, Tuma MC, Gelfand VI.

Int Rev Cytol. 2001;204:179-238. Review.

PMID:
11243595
17.

Three myosin V structures delineate essential features of chemo-mechanical transduction.

Coureux PD, Sweeney HL, Houdusse A.

EMBO J. 2004 Nov 24;23(23):4527-37. Epub 2004 Oct 28.

18.

How actin initiates the motor activity of Myosin.

Llinas P, Isabet T, Song L, Ropars V, Zong B, Benisty H, Sirigu S, Morris C, Kikuti C, Safer D, Sweeney HL, Houdusse A.

Dev Cell. 2015 May 26;33(4):401-12. doi: 10.1016/j.devcel.2015.03.025. Epub 2015 Apr 30.

19.

Mechanochemical coupling in the myosin motor domain. I. Insights from equilibrium active-site simulations.

Yu H, Ma L, Yang Y, Cui Q.

PLoS Comput Biol. 2007 Feb 9;3(2):e21. Epub 2006 Dec 21.

20.

Kinesin and myosin ATPases: variations on a theme.

Hackney DD.

Philos Trans R Soc Lond B Biol Sci. 1992 Apr 29;336(1276):13-7; discussion 17-8. Review.

PMID:
1351290
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