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Items: 19

1.

Local control of phosphatidylinositol 4-phosphate signaling in the Golgi apparatus by Vps74 and Sac1 phosphoinositide phosphatase.

Wood CS, Hung CS, Huoh YS, Mousley CJ, Stefan CJ, Bankaitis V, Ferguson KM, Burd CG.

Mol Biol Cell. 2012 Jul;23(13):2527-36. doi: 10.1091/mbc.E12-01-0077. Epub 2012 May 2.

2.

Growth and metabolic control of lipid signalling at the Golgi.

Piao H, Mayinger P.

Biochem Soc Trans. 2012 Feb;40(1):205-9. doi: 10.1042/BST20110637. Review.

PMID:
22260691
3.

Coordination of Golgi functions by phosphatidylinositol 4-kinases.

Graham TR, Burd CG.

Trends Cell Biol. 2011 Feb;21(2):113-21. doi: 10.1016/j.tcb.2010.10.002. Epub 2010 Nov 4. Review.

4.

Phosphoinositides in Golgi complex function.

D'Angelo G, Vicinanza M, Wilson C, De Matteis MA.

Subcell Biochem. 2012;59:255-70. doi: 10.1007/978-94-007-3015-1_8. Review.

PMID:
22374093
5.

The multiple roles of PtdIns(4)P -- not just the precursor of PtdIns(4,5)P2.

D'Angelo G, Vicinanza M, Di Campli A, De Matteis MA.

J Cell Sci. 2008 Jun 15;121(Pt 12):1955-63. doi: 10.1242/jcs.023630. Review.

6.

Phosphoinositide signaling during membrane transport in Saccharomyces cerevisiae.

Schuh AL, Audhya A.

Subcell Biochem. 2012;59:35-63. doi: 10.1007/978-94-007-3015-1_2. Review.

PMID:
22374087
7.

Sec14 like PITPs couple lipid metabolism with phosphoinositide synthesis to regulate Golgi functionality.

Mousley CJ, Davison JM, Bankaitis VA.

Subcell Biochem. 2012;59:271-87. doi: 10.1007/978-94-007-3015-1_9. Review.

PMID:
22374094
8.

Surprising roles for phospholipid binding proteins revealed by high throughput genetics.

LeBlanc MA, McMaster CR.

Biochem Cell Biol. 2010 Aug;88(4):565-74. doi: 10.1139/O09-171. Review.

PMID:
20651827
9.

Functions and metabolism of sphingolipids in Saccharomyces cerevisiae.

Dickson RC, Sumanasekera C, Lester RL.

Prog Lipid Res. 2006 Nov;45(6):447-65. Epub 2006 Apr 21. Review.

PMID:
16730802
10.

Phosphatidylinositol-4-phosphate: the Golgi and beyond.

De Matteis MA, Wilson C, D'Angelo G.

Bioessays. 2013 Jul;35(7):612-22. doi: 10.1002/bies.201200180. Epub 2013 May 27. Review. Erratum in: Bioessays. 2013 Aug;35(8):756.

PMID:
23712958
11.

The organizing potential of sphingolipids in intracellular membrane transport.

Holthuis JC, Pomorski T, Raggers RJ, Sprong H, Van Meer G.

Physiol Rev. 2001 Oct;81(4):1689-723. Review.

12.

Membrane-trafficking sorting hubs: cooperation between PI4P and small GTPases at the trans-Golgi network.

Santiago-Tirado FH, Bretscher A.

Trends Cell Biol. 2011 Sep;21(9):515-25. doi: 10.1016/j.tcb.2011.05.005. Epub 2011 Jul 19. Review.

13.

Regulation of Golgi function via phosphoinositide lipids.

Mayinger P.

Semin Cell Dev Biol. 2009 Sep;20(7):793-800. doi: 10.1016/j.semcdb.2009.03.016. Review.

14.

Study of GOLPH3: a potential stress-inducible protein from Golgi apparatus.

Li T, You H, Zhang J, Mo X, He W, Chen Y, Tang X, Jiang Z, Tu R, Zeng L, Lu W, Hu Z.

Mol Neurobiol. 2014 Jun;49(3):1449-59. doi: 10.1007/s12035-013-8624-2. Epub 2014 Jan 7. Review.

PMID:
24395131
15.

Signaling at the Golgi.

Mayinger P.

Cold Spring Harb Perspect Biol. 2011 May 1;3(5). pii: a005314. doi: 10.1101/cshperspect.a005314. Review.

16.

The multiple cellular functions of the oncoprotein Golgi phosphoprotein 3.

Sechi S, Frappaolo A, Belloni G, Colotti G, Giansanti MG.

Oncotarget. 2015 Feb 28;6(6):3493-506. Review.

17.

GOLPH3 links the Golgi, DNA damage, and cancer.

Buschman MD, Rahajeng J, Field SJ.

Cancer Res. 2015 Feb 15;75(4):624-7. doi: 10.1158/0008-5472.CAN-14-3081. Epub 2015 Jan 29. Review.

18.

Phosphatidylinositol 4-kinases: hostages harnessed to build panviral replication platforms.

Altan-Bonnet N, Balla T.

Trends Biochem Sci. 2012 Jul;37(7):293-302. doi: 10.1016/j.tibs.2012.03.004. Epub 2012 May 25. Review.

19.

The GOLPH3 pathway regulates Golgi shape and function and is activated by DNA damage.

Buschman MD, Xing M, Field SJ.

Front Neurosci. 2015 Oct 7;9:362. doi: 10.3389/fnins.2015.00362. eCollection 2015. Review.

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