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Items: 1 to 50 of 51

1.

Mitochondrial NCKX5 regulates melanosomal biogenesis and pigment production.

Zhang Z, Gong J, Sviderskaya EV, Wei A, Li W.

J Cell Sci. 2019 Jul 15;132(14). pii: jcs232009. doi: 10.1242/jcs.232009.

PMID:
31201282
2.

Nucleotide exchange factor Rab3GEP requires DENN and non-DENN elements for activation and targeting of Rab27a.

Sanzà P, Evans RD, Briggs DA, Cantero M, Montoliu L, Patel S, Sviderskaya EV, Itzen A, Figueiredo AC, Seabra MC, Hume AN.

J Cell Sci. 2019 Apr 30;132(9). pii: jcs212035. doi: 10.1242/jcs.212035.

3.

The ocular albinism type 1 protein, an intracellular G protein-coupled receptor, regulates melanosome transport in pigment cells.

Palmisano I, Bagnato P, Palmigiano A, Innamorati G, Rotondo G, Altimare D, Venturi C, Sviderskaya EV, Piccirillo R, Coppola M, Marigo V, Incerti B, Ballabio A, Surace EM, Tacchetti C, Bennett DC, Schiaffino MV.

Hum Mol Genet. 2017 Aug 1;26(15):3028-3029. doi: 10.1093/hmg/ddx131. No abstract available.

4.

Restoring p53 Function in Human Melanoma Cells by Inhibiting MDM2 and Cyclin B1/CDK1-Phosphorylated Nuclear iASPP.

Lu M, Breyssens H, Salter V, Zhong S, Hu Y, Baer C, Ratnayaka I, Sullivan A, Brown NR, Endicott J, Knapp S, Kessler BM, Middleton MR, Siebold C, Jones EY, Sviderskaya EV, Cebon J, John T, Caballero OL, Goding CR, Lu X.

Cancer Cell. 2016 Nov 14;30(5):822-823. doi: 10.1016/j.ccell.2016.09.019. No abstract available.

5.

BLOC-1 and BLOC-3 regulate VAMP7 cycling to and from melanosomes via distinct tubular transport carriers.

Dennis MK, Delevoye C, Acosta-Ruiz A, Hurbain I, Romao M, Hesketh GG, Goff PS, Sviderskaya EV, Bennett DC, Luzio JP, Galli T, Owen DJ, Raposo G, Marks MS.

J Cell Biol. 2016 Aug 1;214(3):293-308. doi: 10.1083/jcb.201605090.

6.

Spearhead Nanometric Field-Effect Transistor Sensors for Single-Cell Analysis.

Zhang Y, Clausmeyer J, Babakinejad B, Córdoba AL, Ali T, Shevchuk A, Takahashi Y, Novak P, Edwards C, Lab M, Gopal S, Chiappini C, Anand U, Magnani L, Coombes RC, Gorelik J, Matsue T, Schuhmann W, Klenerman D, Sviderskaya EV, Korchev Y.

ACS Nano. 2016 Mar 22;10(3):3214-3221. doi: 10.1021/acsnano.5b05211. Epub 2016 Feb 1.

7.

The E3 ligase APC/C(Cdh1) promotes ubiquitylation-mediated proteolysis of PAX3 to suppress melanocyte proliferation and melanoma growth.

Cao J, Dai X, Wan L, Wang H, Zhang J, Goff PS, Sviderskaya EV, Xuan Z, Xu Z, Xu X, Hinds P, Flaherty KT, Faller DV, Goding CR, Wang Y, Wei W, Cui R.

Sci Signal. 2015 Sep 1;8(392):ra87. doi: 10.1126/scisignal.aab1995.

PMID:
26329581
8.

Genomic analysis reveals distinct mechanisms and functional classes of SOX10-regulated genes in melanocytes.

Fufa TD, Harris ML, Watkins-Chow DE, Levy D, Gorkin DU, Gildea DE, Song L, Safi A, Crawford GE, Sviderskaya EV, Bennett DC, Mccallion AS, Loftus SK, Pavan WJ.

Hum Mol Genet. 2015 Oct 1;24(19):5433-50. doi: 10.1093/hmg/ddv267. Epub 2015 Jul 23.

9.

BLOC-2 targets recycling endosomal tubules to melanosomes for cargo delivery.

Dennis MK, Mantegazza AR, Snir OL, Tenza D, Acosta-Ruiz A, Delevoye C, Zorger R, Sitaram A, de Jesus-Rojas W, Ravichandran K, Rux J, Sviderskaya EV, Bennett DC, Raposo G, Marks MS, Setty SR.

J Cell Biol. 2015 May 25;209(4):563-77. doi: 10.1083/jcb.201410026.

10.

Mechanistic studies of anti-hyperpigmentary compounds: elucidating their inhibitory and regulatory actions.

Lam RY, Lin ZX, Sviderskaya EV, Cheng CH.

Int J Mol Sci. 2014 Aug 21;15(8):14649-68. doi: 10.3390/ijms150814649.

11.

Myosin-Va and dynamic actin oppose microtubules to drive long-range organelle transport.

Evans RD, Robinson C, Briggs DA, Tooth DJ, Ramalho JS, Cantero M, Montoliu L, Patel S, Sviderskaya EV, Hume AN.

Curr Biol. 2014 Aug 4;24(15):1743-50. doi: 10.1016/j.cub.2014.06.019. Epub 2014 Jul 24.

12.

Isolation, culture, and transfection of melanocytes.

Godwin LS, Castle JT, Kohli JS, Goff PS, Cairney CJ, Keith WN, Sviderskaya EV, Bennett DC.

Curr Protoc Cell Biol. 2014 Jun 3;63:1.8.1-20. doi: 10.1002/0471143030.cb0108s63. Review.

PMID:
24894835
13.

Caveolin-1 is a risk factor for postsurgery metastasis in preclinical melanoma models.

Lobos-Gonzalez L, Aguilar-Guzmán L, Fernandez JG, Muñoz N, Hossain M, Bieneck S, Silva V, Burzio V, Sviderskaya EV, Bennett DC, Leyton L, Quest AF.

Melanoma Res. 2014 Apr;24(2):108-19. doi: 10.1097/CMR.0000000000000046.

14.

Electrochemical nanoprobes for single-cell analysis.

Actis P, Tokar S, Clausmeyer J, Babakinejad B, Mikhaleva S, Cornut R, Takahashi Y, López Córdoba A, Novak P, Shevchuck AI, Dougan JA, Kazarian SG, Gorelkin PV, Erofeev AS, Yaminsky IV, Unwin PR, Schuhmann W, Klenerman D, Rusakov DA, Sviderskaya EV, Korchev YE.

ACS Nano. 2014 Jan 28;8(1):875-84. doi: 10.1021/nn405612q. Epub 2014 Jan 9.

15.

Melanocytes are selectively vulnerable to UVA-mediated bystander oxidative signaling.

Redmond RW, Rajadurai A, Udayakumar D, Sviderskaya EV, Tsao H.

J Invest Dermatol. 2014 Apr;134(4):1083-1090. doi: 10.1038/jid.2013.479. Epub 2013 Nov 11.

16.

Restoring p53 function in human melanoma cells by inhibiting MDM2 and cyclin B1/CDK1-phosphorylated nuclear iASPP.

Lu M, Breyssens H, Salter V, Zhong S, Hu Y, Baer C, Ratnayaka I, Sullivan A, Brown NR, Endicott J, Knapp S, Kessler BM, Middleton MR, Siebold C, Jones EY, Sviderskaya EV, Cebon J, John T, Caballero OL, Goding CR, Lu X.

Cancer Cell. 2013 May 13;23(5):618-33. doi: 10.1016/j.ccr.2013.03.013. Epub 2013 Apr 25. Erratum in: Cancer Cell. 2016 Nov 14;30(5):822-823.

17.

Differential recognition of a dileucine-based sorting signal by AP-1 and AP-3 reveals a requirement for both BLOC-1 and AP-3 in delivery of OCA2 to melanosomes.

Sitaram A, Dennis MK, Chaudhuri R, De Jesus-Rojas W, Tenza D, Setty SR, Wood CS, Sviderskaya EV, Bennett DC, Raposo G, Bonifacino JS, Marks MS.

Mol Biol Cell. 2012 Aug;23(16):3178-92. Epub 2012 Jun 20.

18.

Targeting protein-trafficking pathways alters melanoma treatment sensitivity.

Huang ZM, Chinen M, Chang PJ, Xie T, Zhong L, Demetriou S, Patel MP, Scherzer R, Sviderskaya EV, Bennett DC, Millhauser GL, Oh DH, Cleaver JE, Wei ML.

Proc Natl Acad Sci U S A. 2012 Jan 10;109(2):553-8. doi: 10.1073/pnas.1118366109. Epub 2011 Dec 27.

19.

Dissection of RAS downstream pathways in melanomagenesis: a role for Ral in transformation.

Mishra PJ, Ha L, Rieker J, Sviderskaya EV, Bennett DC, Oberst MD, Kelly K, Merlino G.

Oncogene. 2010 Apr 22;29(16):2449-56. doi: 10.1038/onc.2009.521. Epub 2010 Feb 1. Erratum in: Oncogene. 2011 Apr 14;30(15):1850.

20.

Agouti protein, mahogunin, and attractin in pheomelanogenesis and melanoblast-like alteration of melanocytes: a cAMP-independent pathway.

Hida T, Wakamatsu K, Sviderskaya EV, Donkin AJ, Montoliu L, Lynn Lamoreux M, Yu B, Millhauser GL, Ito S, Barsh GS, Jimbow K, Bennett DC.

Pigment Cell Melanoma Res. 2009 Oct;22(5):623-34. doi: 10.1111/j.1755-148X.2009.00582.x. Epub 2009 May 26.

21.

Functional neurons and melanocytes induced from immortal lines of postnatal neural crest-like stem cells.

Sviderskaya EV, Easty DJ, Lawrence MA, Sánchez DP, Negulyaev YA, Patel RH, Anand P, Korchev YE, Bennett DC.

FASEB J. 2009 Sep;23(9):3179-92. doi: 10.1096/fj.08-123596. Epub 2009 May 15.

22.

Non-invasive imaging of stem cells by scanning ion conductance microscopy: future perspective.

Gorelik J, Ali NN, Sheikh Abdul Kadir SH, Lab M, Stojkovic P, Armstrong L, Sviderskaya EV, Negulyaev YA, Klenerman D, Bennett DC, Lako M, Harding SE, Stojkovic M, Korchev YE.

Tissue Eng Part C Methods. 2008 Dec;14(4):311-8. doi: 10.1089/ten.tec.2008.0058.

23.

The ocular albinism type 1 protein, an intracellular G protein-coupled receptor, regulates melanosome transport in pigment cells.

Palmisano I, Bagnato P, Palmigiano A, Innamorati G, Rotondo G, Altimare D, Venturi C, Sviderskaya EV, Piccirillo R, Coppola M, Marigo V, Incerti B, Ballabio A, Surace EM, Tacchetti C, Bennett DC, Schiaffino MV.

Hum Mol Genet. 2008 Nov 15;17(22):3487-501. doi: 10.1093/hmg/ddn241. Epub 2008 Aug 12. Erratum in: Hum Mol Genet. 2017 Aug 1;26(15):3028-3029.

24.

Cell-specific ATP7A transport sustains copper-dependent tyrosinase activity in melanosomes.

Setty SR, Tenza D, Sviderskaya EV, Bennett DC, Raposo G, Marks MS.

Nature. 2008 Aug 28;454(7208):1142-6. doi: 10.1038/nature07163. Epub 2008 Jul 23.

25.

Melanomagenesis: overcoming the barrier of melanocyte senescence.

Ha L, Merlino G, Sviderskaya EV.

Cell Cycle. 2008 Jul 1;7(13):1944-8. Epub 2008 Apr 23. Review.

26.

ARF functions as a melanoma tumor suppressor by inducing p53-independent senescence.

Ha L, Ichikawa T, Anver M, Dickins R, Lowe S, Sharpless NE, Krimpenfort P, Depinho RA, Bennett DC, Sviderskaya EV, Merlino G.

Proc Natl Acad Sci U S A. 2007 Jun 26;104(26):10968-73. Epub 2007 Jun 19.

27.

BLOC-1 is required for cargo-specific sorting from vacuolar early endosomes toward lysosome-related organelles.

Setty SR, Tenza D, Truschel ST, Chou E, Sviderskaya EV, Theos AC, Lamoreux ML, Di Pietro SM, Starcevic M, Bennett DC, Dell'Angelica EC, Raposo G, Marks MS.

Mol Biol Cell. 2007 Mar;18(3):768-80. Epub 2006 Dec 20. Erratum in: Mol Biol Cell. 2017 Feb 1;28(3):500.

28.

A coiled-coil domain of melanophilin is essential for Myosin Va recruitment and melanosome transport in melanocytes.

Hume AN, Tarafder AK, Ramalho JS, Sviderskaya EV, Seabra MC.

Mol Biol Cell. 2006 Nov;17(11):4720-35. Epub 2006 Aug 16.

29.

Dual loss of ER export and endocytic signals with altered melanosome morphology in the silver mutation of Pmel17.

Theos AC, Berson JF, Theos SC, Herman KE, Harper DC, Tenza D, Sviderskaya EV, Lamoreux ML, Bennett DC, Raposo G, Marks MS.

Mol Biol Cell. 2006 Aug;17(8):3598-612. Epub 2006 Jun 7.

30.

Functions of adaptor protein (AP)-3 and AP-1 in tyrosinase sorting from endosomes to melanosomes.

Theos AC, Tenza D, Martina JA, Hurbain I, Peden AA, Sviderskaya EV, Stewart A, Robinson MS, Bennett DC, Cutler DF, Bonifacino JS, Marks MS, Raposo G.

Mol Biol Cell. 2005 Nov;16(11):5356-72. Epub 2005 Sep 14.

31.

Slc7a11 gene controls production of pheomelanin pigment and proliferation of cultured cells.

Chintala S, Li W, Lamoreux ML, Ito S, Wakamatsu K, Sviderskaya EV, Bennett DC, Park YM, Gahl WA, Huizing M, Spritz RA, Ben S, Novak EK, Tan J, Swank RT.

Proc Natl Acad Sci U S A. 2005 Aug 2;102(31):10964-9. Epub 2005 Jul 21.

32.

Rab8 regulates the actin-based movement of melanosomes.

Chabrillat ML, Wilhelm C, Wasmeier C, Sviderskaya EV, Louvard D, Coudrier E.

Mol Biol Cell. 2005 Apr;16(4):1640-50. Epub 2005 Jan 26.

33.

Reduced pigmentation (rp), a mouse model of Hermansky-Pudlak syndrome, encodes a novel component of the BLOC-1 complex.

Gwynn B, Martina JA, Bonifacino JS, Sviderskaya EV, Lamoreux ML, Bennett DC, Moriyama K, Huizing M, Helip-Wooley A, Gahl WA, Webb LS, Lambert AJ, Peters LL.

Blood. 2004 Nov 15;104(10):3181-9. Epub 2004 Jul 20.

34.

FAPalpha, a surface peptidase expressed during wound healing, is a tumor suppressor.

Ramirez-Montagut T, Blachere NE, Sviderskaya EV, Bennett DC, Rettig WJ, Garin-Chesa P, Houghton AN.

Oncogene. 2004 Jul 15;23(32):5435-46.

PMID:
15133496
35.

p16/cyclin-dependent kinase inhibitor 2A deficiency in human melanocyte senescence, apoptosis, and immortalization: possible implications for melanoma progression.

Sviderskaya EV, Gray-Schopfer VC, Hill SP, Smit NP, Evans-Whipp TJ, Bond J, Hill L, Bataille V, Peters G, Kipling D, Wynford-Thomas D, Bennett DC.

J Natl Cancer Inst. 2003 May 21;95(10):723-32.

PMID:
12759390
36.

p16(Ink4a) in melanocyte senescence and differentiation.

Sviderskaya EV, Hill SP, Evans-Whipp TJ, Chin L, Orlow SJ, Easty DJ, Cheong SC, Beach D, DePinho RA, Bennett DC.

J Natl Cancer Inst. 2002 Mar 20;94(6):446-54. Erratum in: J Natl Cancer Inst 2002 Jun 5;94(11):866.

PMID:
11904317
37.

Hermansky-Pudlak syndrome is caused by mutations in HPS4, the human homolog of the mouse light-ear gene.

Suzuki T, Li W, Zhang Q, Karim A, Novak EK, Sviderskaya EV, Hill SP, Bennett DC, Levin AV, Nieuwenhuis HK, Fong CT, Castellan C, Miterski B, Swank RT, Spritz RA.

Nat Genet. 2002 Mar;30(3):321-4. Epub 2002 Feb 11.

PMID:
11836498
38.

The gene mutated in cocoa mice, carrying a defect of organelle biogenesis, is a homologue of the human Hermansky-Pudlak syndrome-3 gene.

Suzuki T, Li W, Zhang Q, Novak EK, Sviderskaya EV, Wilson A, Bennett DC, Roe BA, Swank RT, Spritz RA.

Genomics. 2001 Nov;78(1-2):30-7.

PMID:
11707070
39.

Agouti signaling protein and other factors modulating differentiation and proliferation of immortal melanoblasts.

Sviderskaya EV, Hill SP, Balachandar D, Barsh GS, Bennett DC.

Dev Dyn. 2001 Aug;221(4):373-9.

40.

Cell volume measurement using scanning ion conductance microscopy.

Korchev YE, Gorelik J, Lab MJ, Sviderskaya EV, Johnston CL, Coombes CR, Vodyanoy I, Edwards CR.

Biophys J. 2000 Jan;78(1):451-7.

41.
42.

Normal tyrosine transport and abnormal tyrosinase routing in pink-eyed dilution melanocytes.

Potterf SB, Furumura M, Sviderskaya EV, Santis C, Bennett DC, Hearing VJ.

Exp Cell Res. 1998 Oct 10;244(1):319-26.

PMID:
9770375
43.

Involvement of microphthalmia in the inhibition of melanocyte lineage differentiation and of melanogenesis by agouti signal protein.

Aberdam E, Bertolotto C, Sviderskaya EV, de Thillot V, Hemesath TJ, Fisher DE, Bennett DC, Ortonne JP, Ballotti R.

J Biol Chem. 1998 Jul 31;273(31):19560-5.

44.

Melanosomal defects in melanocytes from mice lacking expression of the pink-eyed dilution gene: correction by culture in the presence of excess tyrosine.

Rosemblat S, Sviderskaya EV, Easty DJ, Wilson A, Kwon BS, Bennett DC, Orlow SJ.

Exp Cell Res. 1998 Mar 15;239(2):344-52.

PMID:
9521852
45.

The murine misty mutation: phenotypic effects on melanocytes, platelets and brown fat.

Sviderskaya EV, Novak EK, Swank RT, Bennett DC.

Genetics. 1998 Jan;148(1):381-90.

46.

Specialized scanning ion-conductance microscope for imaging of living cells.

Korchev YE, Milovanovic M, Bashford CL, Bennett DC, Sviderskaya EV, Vodyanoy I, Lab MJ.

J Microsc. 1997 Oct;188(Pt 1):17-23.

47.
48.
49.

Cellular stress causes accumulation of the glucose transporter at the surface of cells independently of their insulin sensitivity.

Sviderskaya EV, Jazrawi E, Baldwin SA, Widnell CC, Pasternak CA.

J Membr Biol. 1996 Jan;149(2):133-40.

PMID:
8834120
50.

A cloned, immortal line of murine melanoblasts inducible to differentiate to melanocytes.

Sviderskaya EV, Wakeling WF, Bennett DC.

Development. 1995 May;121(5):1547-57.

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