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Ricaldi JN, Fouts DE, Selengut J., Harkins DM, Patra KP, Moreno A, Lehmann JS, Purushe J, Sanka R, Torres M et al..  2012.  Whole genome analysis of Leptospira licerasiae provides insight into leptospiral evolution and pathogenicity. PLoS neglected tropical diseasesPLoS neglected tropical diseases. 6
Ricaldi JN, Fouts DE, Selengut JD, Harkins DM, Patra KP, Moreno A, Lehmann JS, Purushe J, Sanka R, Torres M et al..  2012.  Whole genome analysis of Leptospira licerasiae provides insight into leptospiral evolution and pathogenicity.. PLoS Negl Trop Dis. 6(10):e1853.
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Mount SM, Pettersson I, Hinterberger M, Karmas A, Steitz JA.  1983.  The U1 small nuclear RNA-protein complex selectively binds a 5' splice site in vitro.. Cell. 33(2):509-18.
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Conaty JP.  1973.  Surgery of the hip and knee in patients with rheumatoid arthritis.. J Bone Joint Surg Am. 55(2):301-14.
Steitz JA, Berg C, Gottlieb E, Hardin JA, Hashimoto C, Hendrick JP, Hinterberger M, Krikeles M, Lerner MR, Mount SM.  1982.  Structure and function of small ribonucleoproteins from eukaryotic cells.. Princess Takamatsu Symp. 12:101-7.
Mancebo R, Lo PC, Mount SM.  1990.  Structure and expression of the Drosophila melanogaster gene for the U1 small nuclear ribonucleoprotein particle 70K protein.. Mol Cell Biol. 10(6):2492-502.
Molden RC, Goya J, Khan Z, Garcia BA.  2014.  Stable isotope labeling of phosphoproteins for large-scale phosphorylation rate determination.. Mol Cell Proteomics. 13(4):1106-18.
Padgett RA, Mount SM, Steitz JA, Sharp PA.  1983.  Splicing of messenger RNA precursors is inhibited by antisera to small nuclear ribonucleoprotein.. Cell. 35(1):101-7.
Dogan RIslamaj, Getoor L, W Wilbur J, Mount SM.  2007.  SplicePort--an interactive splice-site analysis tool.. Nucleic Acids Res. 35(Web Server issue):W285-91.
Guo M, Lo PC, Mount SM.  1993.  Species-specific signals for the splicing of a short Drosophila intron in vitro.. Mol Cell Biol. 13(2):1104-18.
Steitz JA, Wolin SL, Rinke J, Pettersson I, Mount SM, Lerner EA, Hinterberger M, Gottlieb E.  1983.  Small ribonucleoproteins from eukaryotes: structures and roles in RNA biogenesis.. Cold Spring Harb Symp Quant Biol. 47 Pt 2:893-900.
Mount SM.  1987.  Sequence similarity.. Nature. 325(6104):487.
Mount SM, Steitz JA.  1981.  Sequence of U1 RNA from Drosophila melanogaster: implications for U1 secondary structure and possible involvement in splicing.. Nucleic Acids Res. 9(23):6351-68.
Patro R, Mount SM, Kingsford C.  2014.  Sailfish enables alignment-free isoform quantification from RNA-seq reads using lightweight algorithms.. Nat Biotechnol. 32(5):462-4.
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Akula N, Barb J, Jiang X, Wendland JR, Choi KH, Sen SK, Hou L, Chen DTW, Laje G, Johnson K et al..  2014.  RNA-sequencing of the brain transcriptome implicates dysregulation of neuroplasticity, circadian rhythms and GTPase binding in bipolar disorder.. Mol Psychiatry. 19(11):1179-85.
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Khan Z, Bloom JS, Amini S, Singh M, Perlman DH, Caudy AA, Kruglyak L.  2012.  Quantitative measurement of allele-specific protein expression in a diploid yeast hybrid by LC-MS.. Mol Syst Biol. 8:602.
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Bernstein LB, Mount SM, Weiner AM.  1983.  Pseudogenes for human small nuclear RNA U3 appear to arise by integration of self-primed reverse transcripts of the RNA into new chromosomal sites.. Cell. 32(2):461-72.
Khan Z, Bloom JS, Garcia BA, Singh M, Kruglyak L.  2009.  Protein quantification across hundreds of experimental conditions.. Proc Natl Acad Sci U S A. 106(37):15544-8.
Khan Z, Ford MJ, Cusanovich DA, Mitrano A, Pritchard JK, Gilad Y.  2013.  Primate transcript and protein expression levels evolve under compensatory selection pressures.. Science. 342(6162):1100-4.
Mount SM, Salz HK.  2000.  Pre-messenger RNA processing factors in the Drosophila genome.. J Cell Biol. 150(2):F37-44.
Folger O, Jerby L, Frezza C, Gottlieb E, Ruppin E, Shlomi T.  2011.  Predicting selective drug targets in cancer through metabolic networks.. Mol Syst Biol. 7:501.
Jerby-Arnon L, Pfetzer N, Waldman YY, McGarry L, James D, Shanks E, Seashore-Ludlow B, Weinstock A, Geiger T, Clemons PA et al..  2014.  Predicting cancer-specific vulnerability via data-driven detection of synthetic lethality.. Cell. 158(5):1199-209.

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