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Items: 1 to 20 of 48

1.

Long single alpha-helical tail domains bridge the gap between structure and function of myosin VI.

Spink BJ, Sivaramakrishnan S, Lipfert J, Doniach S, Spudich JA.

Nat Struct Mol Biol. 2008 Jun;15(6):591-7. doi: 10.1038/nsmb.1429. Epub 2008 May 30.

2.

Folding and regulation in myosins II and V.

Sellers JR, Knight PJ.

J Muscle Res Cell Motil. 2007;28(7-8):363-70. doi: 10.1007/s10974-008-9134-0. Epub 2008 Apr 22. Review.

PMID:
18427938
3.

The globular tail domain puts on the brake to stop the ATPase cycle of myosin Va.

Li XD, Jung HS, Wang Q, Ikebe R, Craig R, Ikebe M.

Proc Natl Acad Sci U S A. 2008 Jan 29;105(4):1140-5. doi: 10.1073/pnas.0709741105. Epub 2008 Jan 23. Erratum in: Proc Natl Acad Sci U S A. 2008 Mar 4;105(9):3658.

4.

Reversible and irreversible coiled coils in the stalk domain of ncd motor protein.

Makino T, Morii H, Shimizu T, Arisaka F, Kato Y, Nagata K, Tanokura M.

Biochemistry. 2007 Aug 21;46(33):9523-32. Epub 2007 Jul 27.

PMID:
17655278
5.

Identification of a minimal myosin Va binding site within an intrinsically unstructured domain of melanophilin.

Geething NC, Spudich JA.

J Biol Chem. 2007 Jul 20;282(29):21518-28. Epub 2007 May 19.

6.

Alternatively spliced exon B of myosin Va is essential for binding the tail-associated light chain shared by dynein.

Hódi Z, Németh AL, Radnai L, Hetényi C, Schlett K, Bodor A, Perczel A, Nyitray L.

Biochemistry. 2006 Oct 17;45(41):12582-95.

PMID:
17029413
7.

Regulation of myosin V processivity by calcium at the single molecule level.

Lu H, Krementsova EB, Trybus KM.

J Biol Chem. 2006 Oct 20;281(42):31987-94. Epub 2006 Aug 18.

8.

Spectroscopic and calorimetric analyses of invasion plasmid antigen D (IpaD) from Shigella flexneri reveal the presence of two structural domains.

Espina M, Ausar SF, Middaugh CR, Picking WD, Picking WL.

Biochemistry. 2006 Aug 1;45(30):9219-27.

PMID:
16866368
10.

The cargo-binding domain regulates structure and activity of myosin 5.

Thirumurugan K, Sakamoto T, Hammer JA 3rd, Sellers JR, Knight PJ.

Nature. 2006 Jul 13;442(7099):212-5.

11.

Flexibility of the neck domain enhances Kinesin-1 motility under load.

Jaud J, Bathe F, Schliwa M, Rief M, Woehlke G.

Biophys J. 2006 Aug 15;91(4):1407-12. Epub 2006 May 19.

12.

Three-dimensional structure of the myosin V inhibited state by cryoelectron tomography.

Liu J, Taylor DW, Krementsova EB, Trybus KM, Taylor KA.

Nature. 2006 Jul 13;442(7099):208-11. Epub 2006 Apr 16.

PMID:
16625208
13.

Coiled-coil nanomechanics and uncoiling and unfolding of the superhelix and alpha-helices of myosin.

Root DD, Yadavalli VK, Forbes JG, Wang K.

Biophys J. 2006 Apr 15;90(8):2852-66. Epub 2006 Jan 26.

14.

Walking with myosin V.

Sellers JR, Veigel C.

Curr Opin Cell Biol. 2006 Feb;18(1):68-73. Epub 2005 Dec 27. Review.

PMID:
16378722
15.

A force-dependent state controls the coordination of processive myosin V.

Purcell TJ, Sweeney HL, Spudich JA.

Proc Natl Acad Sci U S A. 2005 Sep 27;102(39):13873-8. Epub 2005 Sep 6.

16.

Load-dependent kinetics of myosin-V can explain its high processivity.

Veigel C, Schmitz S, Wang F, Sellers JR.

Nat Cell Biol. 2005 Sep;7(9):861-9. Epub 2005 Aug 14.

PMID:
16100513
17.

Myosin V from Drosophila reveals diversity of motor mechanisms within the myosin V family.

Tóth J, Kovács M, Wang F, Nyitray L, Sellers JR.

J Biol Chem. 2005 Aug 26;280(34):30594-603. Epub 2005 Jun 26.

18.

Force-dependent stepping kinetics of myosin-V.

Clemen AE, Vilfan M, Jaud J, Zhang J, Bärmann M, Rief M.

Biophys J. 2005 Jun;88(6):4402-10. Epub 2005 Mar 11.

19.

A flexible domain is essential for the large step size and processivity of myosin VI.

Rock RS, Ramamurthy B, Dunn AR, Beccafico S, Rami BR, Morris C, Spink BJ, Franzini-Armstrong C, Spudich JA, Sweeney HL.

Mol Cell. 2005 Feb 18;17(4):603-9.

20.

A model of myosin V processivity.

Rosenfeld SS, Sweeney HL.

J Biol Chem. 2004 Sep 17;279(38):40100-11. Epub 2004 Jul 14.

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