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Geometric catalysis of membrane fission driven by flexible dynamin rings.

Shnyrova AV, Bashkirov PV, Akimov SA, Pucadyil TJ, Zimmerberg J, Schmid SL, Frolov VA.

Science. 2013 Mar 22;339(6126):1433-6. doi: 10.1126/science.1233920.


Dynamin: functional design of a membrane fission catalyst.

Schmid SL, Frolov VA.

Annu Rev Cell Dev Biol. 2011;27:79-105. doi: 10.1146/annurev-cellbio-100109-104016. Epub 2011 May 18. Review.


GTPase cycle of dynamin is coupled to membrane squeeze and release, leading to spontaneous fission.

Bashkirov PV, Akimov SA, Evseev AI, Schmid SL, Zimmerberg J, Frolov VA.

Cell. 2008 Dec 26;135(7):1276-86. doi: 10.1016/j.cell.2008.11.028. Epub 2008 Dec 11.


A hemi-fission intermediate links two mechanistically distinct stages of membrane fission.

Mattila JP, Shnyrova AV, Sundborger AC, Hortelano ER, Fuhrmans M, Neumann S, Müller M, Hinshaw JE, Schmid SL, Frolov VA.

Nature. 2015 Aug 6;524(7563):109-113. doi: 10.1038/nature14509. Epub 2015 Jun 29.


Alternate pleckstrin homology domain orientations regulate dynamin-catalyzed membrane fission.

Mehrotra N, Nichols J, Ramachandran R.

Mol Biol Cell. 2014 Mar;25(6):879-90. doi: 10.1091/mbc.E13-09-0548. Epub 2014 Jan 29.


The mechanoenzymatic core of dynamin-related protein 1 comprises the minimal machinery required for membrane constriction.

Francy CA, Alvarez FJ, Zhou L, Ramachandran R, Mears JA.

J Biol Chem. 2015 May 1;290(18):11692-703. doi: 10.1074/jbc.M114.610881. Epub 2015 Mar 13.


A high-throughput platform for real-time analysis of membrane fission reactions reveals dynamin function.

Dar S, Kamerkar SC, Pucadyil TJ.

Nat Cell Biol. 2015 Dec;17(12):1588-96. doi: 10.1038/ncb3254. Epub 2015 Oct 19.


A pseudoatomic model of the dynamin polymer identifies a hydrolysis-dependent powerstroke.

Chappie JS, Mears JA, Fang S, Leonard M, Schmid SL, Milligan RA, Hinshaw JE, Dyda F.

Cell. 2011 Sep 30;147(1):209-22. doi: 10.1016/j.cell.2011.09.003.


Dynamin-catalyzed membrane fission requires coordinated GTP hydrolysis.

Liu YW, Mattila JP, Schmid SL.

PLoS One. 2013;8(1):e55691. doi: 10.1371/journal.pone.0055691. Epub 2013 Jan 31.


Crystal structure of nucleotide-free dynamin.

Faelber K, Posor Y, Gao S, Held M, Roske Y, Schulze D, Haucke V, Noé F, Daumke O.

Nature. 2011 Sep 18;477(7366):556-60. doi: 10.1038/nature10369.


The crystal structure of dynamin.

Ford MG, Jenni S, Nunnari J.

Nature. 2011 Sep 18;477(7366):561-6. doi: 10.1038/nature10441.


An intramolecular signaling element that modulates dynamin function in vitro and in vivo.

Chappie JS, Acharya S, Liu YW, Leonard M, Pucadyil TJ, Schmid SL.

Mol Biol Cell. 2009 Aug;20(15):3561-71. doi: 10.1091/mbc.E09-04-0318. Epub 2009 Jun 10.


G domain dimerization controls dynamin's assembly-stimulated GTPase activity.

Chappie JS, Acharya S, Leonard M, Schmid SL, Dyda F.

Nature. 2010 May 27;465(7297):435-40. doi: 10.1038/nature09032. Epub 2010 Apr 28.


Membrane insertion of the pleckstrin homology domain variable loop 1 is critical for dynamin-catalyzed vesicle scission.

Ramachandran R, Pucadyil TJ, Liu YW, Acharya S, Leonard M, Lukiyanchuk V, Schmid SL.

Mol Biol Cell. 2009 Nov;20(22):4630-9. doi: 10.1091/mbc.E09-08-0683. Epub 2009 Sep 23.


Membrane shape at the edge of the dynamin helix sets location and duration of the fission reaction.

Morlot S, Galli V, Klein M, Chiaruttini N, Manzi J, Humbert F, Dinis L, Lenz M, Cappello G, Roux A.

Cell. 2012 Oct 26;151(3):619-29. doi: 10.1016/j.cell.2012.09.017.


A dynamin mutant defines a superconstricted prefission state.

Sundborger AC, Fang S, Heymann JA, Ray P, Chappie JS, Hinshaw JE.

Cell Rep. 2014 Aug 7;8(3):734-42. doi: 10.1016/j.celrep.2014.06.054. Epub 2014 Jul 31.


Dynamin: possible mechanism of "Pinchase" action.

Kozlov MM.

Biophys J. 1999 Jul;77(1):604-16.


Building a fission machine--structural insights into dynamin assembly and activation.

Chappie JS, Dyda F.

J Cell Sci. 2013 Jul 1;126(Pt 13):2773-84. doi: 10.1242/jcs.108845. Epub 2013 Jun 18. Review.

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