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Items: 1 to 20 of 30

1.

ESCRT-dependent cargo sorting at multivesicular endosomes.

Frankel EB, Audhya A.

Semin Cell Dev Biol. 2018 Feb;74:4-10. doi: 10.1016/j.semcdb.2017.08.020. Epub 2017 Aug 8. Review.

PMID:
28797838
2.

Polyphosphoinositide binding domains: Key to inositol lipid biology.

Hammond GR, Balla T.

Biochim Biophys Acta. 2015 Jun;1851(6):746-58. doi: 10.1016/j.bbalip.2015.02.013. Epub 2015 Feb 27. Review. Erratum in: Biochim Biophys Acta. 2015 Sep;1851(9):1283.

3.

A multi-colour/multi-affinity marker set to visualize phosphoinositide dynamics in Arabidopsis.

Simon ML, Platre MP, Assil S, van Wijk R, Chen WY, Chory J, Dreux M, Munnik T, Jaillais Y.

Plant J. 2014 Jan;77(2):322-37. doi: 10.1111/tpj.12358. Epub 2013 Dec 6.

4.

PtdIns5P: news and views of its appearance, disappearance and deeds.

Shisheva A.

Arch Biochem Biophys. 2013 Oct 15;538(2):171-80. doi: 10.1016/j.abb.2013.07.023. Epub 2013 Aug 2. Review.

5.

Production of phosphatidylinositol 5-phosphate via PIKfyve and MTMR3 regulates cell migration.

Oppelt A, Lobert VH, Haglund K, Mackey AM, Rameh LE, Liestøl K, Schink KO, Pedersen NM, Wenzel EM, Haugsten EM, Brech A, Rusten TE, Stenmark H, Wesche J.

EMBO Rep. 2013 Jan;14(1):57-64. doi: 10.1038/embor.2012.183. Epub 2012 Nov 16.

6.

Molecular analysis of protein-phosphoinositide interactions.

Kutateladze TG.

Curr Top Microbiol Immunol. 2012;362:111-26. doi: 10.1007/978-94-007-5025-8_6. Review.

7.

NMR analyses of the interaction between the FYVE domain of early endosome antigen 1 (EEA1) and phosphoinositide embedded in a lipid bilayer.

Yokogawa M, Kobashigawa Y, Yoshida N, Ogura K, Harada K, Inagaki F.

J Biol Chem. 2012 Oct 12;287(42):34936-45. doi: 10.1074/jbc.M112.398255. Epub 2012 Aug 22.

8.

Phosphoinositides in the mammalian endo-lysosomal network.

Cullen PJ, Carlton JG.

Subcell Biochem. 2012;59:65-110. doi: 10.1007/978-94-007-3015-1_3. Review.

9.

Structural basis for membrane targeting by the MVB12-associated β-prism domain of the human ESCRT-I MVB12 subunit.

Boura E, Hurley JH.

Proc Natl Acad Sci U S A. 2012 Feb 7;109(6):1901-6. doi: 10.1073/pnas.1117597109. Epub 2012 Jan 9.

10.

The ESCRT complexes.

Hurley JH.

Crit Rev Biochem Mol Biol. 2010 Dec;45(6):463-87. doi: 10.3109/10409238.2010.502516. Epub 2010 Jul 23. Review.

11.

Translation of the phosphoinositide code by PI effectors.

Kutateladze TG.

Nat Chem Biol. 2010 Jul;6(7):507-13. doi: 10.1038/nchembio.390. Review.

12.
13.

Coordination of cytokinesis and cell separation by endosomal targeting of a Cdc42-specific guanine nucleotide exchange factor in Ustilago maydis.

Schink KO, Bölker M.

Mol Biol Cell. 2009 Feb;20(3):1081-8. doi: 10.1091/mbc.E08-03-0280. Epub 2008 Dec 10.

14.

DNA-binding and -bending activities of SAP30L and SAP30 are mediated by a zinc-dependent module and monophosphoinositides.

Viiri KM, Jänis J, Siggers T, Heinonen TY, Valjakka J, Bulyk ML, Mäki M, Lohi O.

Mol Cell Biol. 2009 Jan;29(2):342-56. doi: 10.1128/MCB.01213-08. Epub 2008 Nov 17.

15.

Frabin and other related Cdc42-specific guanine nucleotide exchange factors couple the actin cytoskeleton with the plasma membrane.

Nakanishi H, Takai Y.

J Cell Mol Med. 2008 Aug;12(4):1169-76. doi: 10.1111/j.1582-4934.2008.00345.x. Epub 2008 Apr 9. Review.

16.
17.

Pleckstrin homology (PH) domains and phosphoinositides.

Lemmon MA.

Biochem Soc Symp. 2007;(74):81-93. Review.

18.

Molecular mechanism of membrane docking by the Vam7p PX domain.

Lee SA, Kovacs J, Stahelin RV, Cheever ML, Overduin M, Setty TG, Burd CG, Cho W, Kutateladze TG.

J Biol Chem. 2006 Dec 1;281(48):37091-101. Epub 2006 Sep 19.

19.

A critical beta6-beta7 loop in the pleckstrin homology domain of ceramide kinase.

Rovina P, Jaritz M, Höfinger S, Graf C, Dévay P, Billich A, Baumruker T, Bornancin F.

Biochem J. 2006 Dec 1;400(2):255-65.

20.

Determining selectivity of phosphoinositide-binding domains.

Narayan K, Lemmon MA.

Methods. 2006 Jun;39(2):122-33. Review.

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