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Our Science – Pack Website

Svetlana D. Pack, Ph.D.

Selected Publications

1)  Fraum TJ, Barak S, Pack S, Lonser RR, Fine HA, Quezado M, Iwamoto FM.
Spinal cord glioneuronal tumor with neuropil-like islands with 1p/19q deletion in an adult with low-grade cerebral oligodendroglioma.
J. Neurooncol. 107: 421-6, 2012.
[Journal]
2)  Renton AE, Majounie E, Waite A, Simón-Sánchez J, Rollinson S, Gibbs JR, Schymick JC, Laaksovirta H, van Swieten JC, Myllykangas L, Kalimo H, Paetau A, Abramzon Y, Remes AM, Kaganovich A, Scholz SW, Duckworth J, Ding J, Harmer DW, Hernandez DG, Johnson JO, Mok K, Ryten M, Trabzuni D, Guerreiro RJ, Orrell RW, Neal J, Murray A, Pearson J, Jansen IE, Sondervan D, Seelaar H, Blake D, Young K, Halliwell N, Callister JB, Toulson G, Richardson A, Gerhard A, Snowden J, Mann D, Neary D, Nalls MA, Peuralinna T, Jansson L, Isoviita VM, Kaivorinne AL, Hölttä-Vuori M, Ikonen E, Sulkava R, Benatar M, Wuu J, Chiò A, Restagno G, Borghero G, Sabatelli M, Heckerman D, Rogaeva E, Zinman L, Rothstein JD, Sendtner M, Drepper C, Eichler EE, Alkan C, Abdullaev Z, Pack SD, Dutra A, Pak E, Hardy J, Singleton A, Williams NM, Heutink P, Pickering-Brown S, Morris HR, Tienari PJ, Traynor BJ.
A hexanucleotide repeat expansion in C9ORF72 is the cause of chromosome 9p21-linked ALS-FTD.
Neuron. 72: 257-68, 2011.
[Journal]
3)  Jegalian AG, Eberle FC, Pack SD, Mirvis M, Raffeld M, Pittaluga S, Jaffe ES.
Follicular lymphoma in situ: clinical implications and comparisons with partial involvement by follicular lymphoma.
Blood. 118: 2976-84, 2011.
[Journal]
4)  Chatterjee R, Bhattacharya P, Gavrilova O, Glass K, Moitra J, Myakishev M, Pack S, Jou W, Feigenbaum L, Eckhaus M, Vinson C.
Suppression of the C/EBP family of transcription factors in adipose tissue causes lipodystrophy.
J. Mol. Endocrinol. 46: 175-92, 2011.
[Journal]
5)  Suzuki T, Kosaka-Suzuki N, Pack S, Shin DM, Yoon J, Abdullaev Z, Pugacheva E, Morse HC, Loukinov D, Lobanenkov V.
Expression of a testis-specific form of Gal3st1 (CST), a gene essential for spermatogenesis, is regulated by the CTCF paralogous gene BORIS.
Mol. Cell. Biol. 30: 2473-84, 2010.
[Journal]
6)  Pugacheva EM, Suzuki T, Pack SD, Kosaka-Suzuki N, Yoon J, Vostrov AA, Barsov E, Strunnikov AV, Morse HC, Loukinov D, Lobanenkov V.
The structural complexity of the human BORIS gene in gametogenesis and cancer.
PLoS ONE. 5: e13872, 2010.
[Journal]
7)  Kim JH, Ebersole T, Kouprina N, Noskov VN, Ohzeki J, Masumoto H, Mravinac B, Sullivan BA, Pavlicek A, Dovat S, Pack SD, Kwon YW, Flanagan PT, Loukinov D, Lobanenkov V, Larionov V.
Human gamma-satellite DNA maintains open chromatin structure and protects a transgene from epigenetic silencing.
Genome Res. 19: 533-44, 2009.
[Journal]
8)  D'Arcy V, Pore N, Docquier F, Abdullaev ZK, Chernukhin I, Kita GX, Rai S, Smart M, Farrar D, Pack S, Lobanenkov V, Klenova E.
BORIS, a paralogue of the transcription factor, CTCF, is aberrantly expressed in breast tumours.
Br. J. Cancer. 98: 571-9, 2008.
[Journal]
9)  Ghochikyan A, Mkrtichyan M, Loukinov D, Mamikonyan G, Pack SD, Movsesyan N, Ichim TE, Cribbs DH, Lobanenkov VV, Agadjanyan MG.
Elicitation of T cell responses to histologically unrelated tumors by immunization with the novel cancer-testis antigen, brother of the regulator of imprinted sites.
J. Immunol. 178: 566-73, 2007.
[Journal]
10)  Risinger JI, Chandramouli GV, Maxwell GL, Custer M, Pack S, Loukinov D, Aprelikova O, Litzi T, Schrump DS, Murphy SK, Berchuck A, Lobanenkov V, Barrett JC.
Global expression analysis of cancer/testis genes in uterine cancers reveals a high incidence of BORIS expression.
Clin. Cancer Res. 13: 1713-9, 2007.
[Journal]
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This page was last updated on 5/15/2013.