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Items: 1 to 20 of 161

1.

Molecular components required for resting and stimulated endocytosis of botulinum neurotoxins by glutamatergic and peptidergic neurons.

Meng J, Wang J, Lawrence GW, Dolly JO.

FASEB J. 2013 Aug;27(8):3167-80. doi: 10.1096/fj.13-228973. Epub 2013 May 2.

2.

Clathrin-dependent and clathrin-independent retrieval of synaptic vesicles in retinal bipolar cells.

Jockusch WJ, Praefcke GJ, McMahon HT, Lagnado L.

Neuron. 2005 Jun 16;46(6):869-78.

3.
4.

Dynamin inhibition blocks botulinum neurotoxin type A endocytosis in neurons and delays botulism.

Harper CB, Martin S, Nguyen TH, Daniels SJ, Lavidis NA, Popoff MR, Hadzic G, Mariana A, Chau N, McCluskey A, Robinson PJ, Meunier FA.

J Biol Chem. 2011 Oct 14;286(41):35966-76. doi: 10.1074/jbc.M111.283879. Epub 2011 Aug 5.

5.

Decreased synaptic vesicle recycling efficiency and cognitive deficits in amphiphysin 1 knockout mice.

Di Paolo G, Sankaranarayanan S, Wenk MR, Daniell L, Perucco E, Caldarone BJ, Flavell R, Picciotto MR, Ryan TA, Cremona O, De Camilli P.

Neuron. 2002 Feb 28;33(5):789-804.

6.

Dynamin photoinactivation blocks Clathrin and α-adaptin recruitment and induces bulk membrane retrieval.

Kasprowicz J, Kuenen S, Swerts J, Miskiewicz K, Verstreken P.

J Cell Biol. 2014 Mar 31;204(7):1141-56. doi: 10.1083/jcb.201310090. Epub 2014 Mar 24.

7.

Cophosphorylation of amphiphysin I and dynamin I by Cdk5 regulates clathrin-mediated endocytosis of synaptic vesicles.

Tomizawa K, Sunada S, Lu YF, Oda Y, Kinuta M, Ohshima T, Saito T, Wei FY, Matsushita M, Li ST, Tsutsui K, Hisanaga S, Mikoshiba K, Takei K, Matsui H.

J Cell Biol. 2003 Nov 24;163(4):813-24. Epub 2003 Nov 17.

8.

Dynamin and activity regulate synaptic vesicle recycling in sympathetic neurons.

Lu W, Ma H, Sheng ZH, Mochida S.

J Biol Chem. 2009 Jan 16;284(3):1930-7. doi: 10.1074/jbc.M803691200. Epub 2008 Nov 14.

9.

The synaptic vesicle cycle: a single vesicle budding step involving clathrin and dynamin.

Takei K, Mundigl O, Daniell L, De Camilli P.

J Cell Biol. 1996 Jun;133(6):1237-50.

10.

Molecular mechanism of constitutive endocytosis of Acid-sensing ion channel 1a and its protective function in acidosis-induced neuronal death.

Zeng WZ, Liu DS, Duan B, Song XL, Wang X, Wei D, Jiang W, Zhu MX, Li Y, Xu TL.

J Neurosci. 2013 Apr 17;33(16):7066-78. doi: 10.1523/JNEUROSCI.5206-12.2013.

11.

A role of amphiphysin in synaptic vesicle endocytosis suggested by its binding to dynamin in nerve terminals.

David C, McPherson PS, Mundigl O, de Camilli P.

Proc Natl Acad Sci U S A. 1996 Jan 9;93(1):331-5.

12.

Inhibition of receptor-mediated endocytosis by the amphiphysin SH3 domain.

Wigge P, Vallis Y, McMahon HT.

Curr Biol. 1997 Aug 1;7(8):554-60.

13.

The role of dynamin and its binding partners in coated pit invagination and scission.

Hill E, van Der Kaay J, Downes CP, Smythe E.

J Cell Biol. 2001 Jan 22;152(2):309-23.

14.

Clathrin interacts specifically with amphiphysin and is displaced by dynamin.

McMahon HT, Wigge P, Smith C.

FEBS Lett. 1997 Aug 18;413(2):319-22.

15.

FCHo proteins are nucleators of clathrin-mediated endocytosis.

Henne WM, Boucrot E, Meinecke M, Evergren E, Vallis Y, Mittal R, McMahon HT.

Science. 2010 Jun 4;328(5983):1281-4. doi: 10.1126/science.1188462. Epub 2010 May 6.

16.

Double receptor anchorage of botulinum neurotoxins accounts for their exquisite neurospecificity.

Rummel A.

Curr Top Microbiol Immunol. 2013;364:61-90. doi: 10.1007/978-3-642-33570-9_4.

PMID:
23239349
17.
18.

Identification and characterization of a nerve terminal-enriched amphiphysin isoform.

Ramjaun AR, Micheva KD, Bouchelet I, McPherson PS.

J Biol Chem. 1997 Jun 27;272(26):16700-6.

19.

Formation of an endophilin-Ca2+ channel complex is critical for clathrin-mediated synaptic vesicle endocytosis.

Chen Y, Deng L, Maeno-Hikichi Y, Lai M, Chang S, Chen G, Zhang JF.

Cell. 2003 Oct 3;115(1):37-48.

PMID:
14532001
20.

Amphiphysin I and regulation of synaptic vesicle endocytosis.

Wu Y, Matsui H, Tomizawa K.

Acta Med Okayama. 2009 Dec;63(6):305-23. Review.

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