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M. Tipping, Kim, Y., Kyriakakis, P., Tong, M., Shvartsman, S. Y., and Veraksa, A., β-arrestin Kurtz inhibits MAPK and Toll signalling in Drosophila development., EMBO J, vol. 29, no. 19, pp. 3222-35, 2010.
C. D. Doucette, Schwab, D. J., Wingreen, N. S., and Rabinowitz, J. D., α-Ketoglutarate coordinates carbon and nitrogen utilization via enzyme I inhibition., Nat Chem Biol, vol. 7, no. 12, pp. 894-901, 2011.
A. Marie Sokac and Wieschaus, E., Zygotically controlled F-actin establishes cortical compartments to stabilize furrows during Drosophila cellularization., J Cell Sci, vol. 121, no. Pt 11, pp. 1815-24, 2008.
L. Simpson and Wieschaus, E., Zygotic activity of the nullo locus is required to stabilize the actin-myosin network during cellularization in Drosophila., Development, vol. 110, no. 3, pp. 851-63, 1990.
J. A. Emerson, Vacher, J., Cirillo, L. A., Tilghman, S. M., and Tyner, A. L., The zonal expression of alpha-fetoprotein transgenes in the livers of adult mice., Dev Dyn, vol. 195, no. 1, pp. 55-66, 1992.
G. S. Ducker and Rabinowitz, J. D., ZMP: a master regulator of one-carbon metabolism., Mol Cell, vol. 57, no. 2, pp. 203-4, 2015.
S. Melody Foo, Sun, Y., Lim, B., Ziukaite, R., O'Brien, K., Nien, C. - Y., Kirov, N., Shvartsman, S. Y., and Rushlow, C. A., Zelda potentiates morphogen activity by increasing chromatin accessibility., Curr Biol, vol. 24, no. 12, pp. 1341-6, 2014.
P. A. Gibney, Lu, C., Caudy, A. A., Hess, D. C., and Botstein, D., Yeast metabolic and signaling genes are required for heat-shock survival and have little overlap with the heat-induced genes., Proc Natl Acad Sci U S A, vol. 110, no. 46, pp. E4393-402, 2013.
M. M. Klosinska, Crutchfield, C. A., Bradley, P. H., Rabinowitz, J. D., and Broach, J. R., Yeast cells can access distinct quiescent states., Genes Dev, vol. 25, no. 4, pp. 336-49, 2011.
D. Botstein and Fink, G. R., Yeast: an experimental organism for 21st Century biology., Genetics, vol. 189, no. 3, pp. 695-704, 2011.
L. Christiaen, Wagner, E., Shi, W., and Levine, M., X-gal staining of electroporated sea squirt (Ciona) embryos., Cold Spring Harb Protoc, vol. 2009, no. 12, p. pdb.prot5346, 2009.
K. Thornton, Bachtrog, D., and Andolfatto, P., X chromosomes and autosomes evolve at similar rates in Drosophila: no evidence for faster-X protein evolution., Genome Res, vol. 16, no. 4, pp. 498-504, 2006.
B. L. Bassler and Wingreen, N. S., Working together at the interface of physics and biology., Phys Biol, vol. 11, no. 5, p. 053010, 2014.
P. M. Ferree, Frydman, H. M., Li, J. M., Cao, J., Wieschaus, E., and Sullivan, W., Wolbachia utilizes host microtubules and Dynein for anterior localization in the Drosophila oocyte., PLoS Pathog, vol. 1, no. 2, p. e14, 2005.
H. A. Müller, Samanta, R., and Wieschaus, E., Wingless signaling in the Drosophila embryo: zygotic requirements and the role of the frizzled genes., Development, vol. 126, no. 3, pp. 577-86, 1999.
M. Peifer, Sweeton, D., Casey, M., and Wieschaus, E., wingless signal and Zeste-white 3 kinase trigger opposing changes in the intracellular distribution of Armadillo., Development, vol. 120, no. 2, pp. 369-80, 1994.
D. Botstein, Willing to do the math: an interview with David Botstein. Interview by Jane Gitschier., PLoS Genet, vol. 2, no. 5, p. e79, 2006.
D. Botstein, Why we need more basic biology research, not less., Mol Biol Cell, vol. 23, no. 21, pp. 4160-1, 2012.
E. Nabieva, Jim, K., Agarwal, A., Chazelle, B., and Singh, M., Whole-proteome prediction of protein function via graph-theoretic analysis of interaction maps., Bioinformatics, vol. 21 Suppl 1, pp. i302-10, 2005.
L. Christiaen, Wagner, E., Shi, W., and Levine, M., Whole-mount in situ hybridization on sea squirt (Ciona intestinalis) embryos., Cold Spring Harb Protoc, vol. 2009, no. 12, p. pdb.prot5348, 2009.
A. Stathopoulos and Levine, M., Whole-genome expression profiles identify gene batteries in Drosophila., Dev Cell, vol. 3, no. 4, pp. 464-5, 2002.
J. Zhou, Park, C. Y., Theesfeld, C. L., Wong, A. K., Yuan, Y., Scheckel, C., Fak, J. J., Funk, J., Yao, K., Tajima, Y., Packer, A., Darnell, R. B., and Troyanskaya, O. G., Whole-genome deep-learning analysis identifies contribution of noncoding mutations to autism risk., Nat Genet, vol. 51, no. 6, pp. 973-980, 2019.
A. Stathopoulos and Levine, M., Whole-genome analysis of Drosophila gastrulation., Curr Opin Genet Dev, vol. 14, no. 5, pp. 477-84, 2004.
A. Stathopoulos, Van Drenth, M., Erives, A., Markstein, M., and Levine, M., Whole-genome analysis of dorsal-ventral patterning in the Drosophila embryo., Cell, vol. 111, no. 5, pp. 687-701, 2002.
J. P. Nguyen, Shipley, F. B., Linder, A. N., Plummer, G. S., Liu, M., Setru, S. U., Shaevitz, J. W., and Leifer, A. M., Whole-brain calcium imaging with cellular resolution in freely behaving Caenorhabditis elegans., Proc Natl Acad Sci U S A, vol. 113, no. 8, pp. E1074-81, 2016.
N. S. Tolwinski, Wehrli, M., Rives, A., Erdeniz, N., DiNardo, S., and Wieschaus, E., Wg/Wnt signal can be transmitted through arrow/LRP5,6 and Axin independently of Zw3/Gsk3beta activity., Dev Cell, vol. 4, no. 3, pp. 407-18, 2003.
R. G. Endres and Wingreen, N. S., Weight matrices for protein-DNA binding sites from a single co-crystal structure., Phys Rev E Stat Nonlin Soft Matter Phys, vol. 73, no. 6 Pt 1, p. 061921, 2006.
E. Schneidman, Berry, M. J., Segev, R., and Bialek, W., Weak pairwise correlations imply strongly correlated network states in a neural population., Nature, vol. 440, no. 7087, pp. 1007-12, 2006.
E. Wieschaus and Nüsslein-Volhard, C., Walter Gehring (1939–2014)., Curr Biol, vol. 24, no. 14, pp. R632-4, 2014.
M. A. Gelbart, He, B., Martin, A. C., Thiberge, S. Y., Wieschaus, E. F., and Kaschube, M., Volume conservation principle involved in cell lengthening and nucleus movement during tissue morphogenesis., Proc Natl Acad Sci U S A, vol. 109, no. 47, pp. 19298-303, 2012.
P. Anikeeva, Boyden, E., Brangwynne, C., Troyanskaya, O., and al., et., Voices in methods development., Nat Methods, vol. 16, no. 10, pp. 945-951, 2019.
C. L. Myers, Chen, X., and Troyanskaya, O. G., Visualization-based discovery and analysis of genomic aberrations in microarray data., BMC Bioinformatics, vol. 6, p. 146, 2005.
M. A. Hibbs, Dirksen, N. C., Li, K., and Troyanskaya, O. G., Visualization methods for statistical analysis of microarray clusters., BMC Bioinformatics, vol. 6, p. 115, 2005.
S. R McIsaac, Silverman, S. J., Parsons, L., Xu, P., Briehof, R., McClean, M. N., and Botstein, D., Visualization and analysis of mRNA molecules using fluorescence in situ hybridization in Saccharomyces cerevisiae., J Vis Exp, no. 76, p. e50382, 2013.
K. C. Mok, Wingreen, N. S., and Bassler, B. L., Vibrio harveyi quorum sensing: a coincidence detector for two autoinducers controls gene expression., EMBO J, vol. 22, no. 4, pp. 870-81, 2003.
A. J. Pompeani, Irgon, J. J., Berger, M. F., Bulyk, M. L., Wingreen, N. S., and Bassler, B. L., The Vibrio harveyi master quorum-sensing regulator, LuxR, a TetR-type protein is both an activator and a repressor: DNA recognition and binding specificity at target promoters., Mol Microbiol, vol. 70, no. 1, pp. 76-88, 2008.
R. C. Kelly, Bolitho, M. E., Higgins, D. A., Lu, W., Ng, W. - L., Jeffrey, P. D., Rabinowitz, J. D., Semmelhack, M. F., Hughson, F. M., and Bassler, B. L., The Vibrio cholerae quorum-sensing autoinducer CAI-1: analysis of the biosynthetic enzyme CqsA., Nat Chem Biol, vol. 5, no. 12, pp. 891-5, 2009.
A. G. Fletcher, Osterfield, M., Baker, R. E., and Shvartsman, S. Y., Vertex models of epithelial morphogenesis., Biophys J, vol. 106, no. 11, pp. 2291-304, 2014.
M. Peifer, McCrea, P. D., Green, K. J., Wieschaus, E., and Gumbiner, B. M., The vertebrate adhesive junction proteins beta-catenin and plakoglobin and the Drosophila segment polarity gene armadillo form a multigene family with similar properties., J Cell Biol, vol. 118, no. 3, pp. 681-91, 1992.
J. Cowden and Levine, M., Ventral dominance governs sequential patterns of gene expression across the dorsal-ventral axis of the neuroectoderm in the Drosophila embryo., Dev Biol, vol. 262, no. 2, pp. 335-49, 2003.
B. Haley, Foys, B., and Levine, M., Vectors and parameters that enhance the efficacy of RNAi-mediated gene disruption in transgenic Drosophila., Proc Natl Acad Sci U S A, vol. 107, no. 25, pp. 11435-40, 2010.
X. Chen, Leung, S. Y., Yuen, S. T., Chu, K. - M., Ji, J., Li, R., S Y Chan, A., Law, S., Troyanskaya, O. G., Wong, J., So, S., Botstein, D., and Brown, P. O., Variation in gene expression patterns in human gastric cancers., Mol Biol Cell, vol. 14, no. 8, pp. 3208-15, 2003.
S. P. Bohen, Troyanskaya, O. G., Alter, O., Warnke, R., Botstein, D., Brown, P. O., and Levy, R., Variation in gene expression patterns in follicular lymphoma and the response to rituximab., Proc Natl Acad Sci U S A, vol. 100, no. 4, pp. 1926-30, 2003.
R. G. Endres, Oleksiuk, O., Hansen, C. H., Meir, Y., Sourjik, V., and Wingreen, N. S., Variable sizes of Escherichia coli chemoreceptor signaling teams., Mol Syst Biol, vol. 4, p. 211, 2008.
J. Parsch, Novozhilov, S., Saminadin-Peter, S. S., Wong, K. M., and Andolfatto, P., On the utility of short intron sequences as a reference for the detection of positive and negative selection in Drosophila., Mol Biol Evol, vol. 27, no. 6, pp. 1226-34, 2010.
U. Ober, Ayroles, J. F., Stone, E. A., Richards, S., Zhu, D., Gibbs, R. A., Stricker, C., Gianola, D., Schlather, M., Mackay, T. F. C., and Simianer, H., Using whole-genome sequence data to predict quantitative trait phenotypes in Drosophila melanogaster., PLoS Genet, vol. 8, no. 5, p. e1002685, 2012.
A. Ochoa, Llinás, M., and Singh, M., Using context to improve protein domain identification., BMC Bioinformatics, vol. 12, p. 90, 2011.
W. J. Gehring, Wieschaus, E., and Holliger, M., The use of 'normal' and 'transformed' gynandromorphs in mapping the primordial germ cells and the gonadal mesoderm in Drosophila., J Embryol Exp Morphol, vol. 35, no. 3, pp. 607-16, 1976.
U. Klibaite, Berman, G. J., Cande, J., Stern, D. L., and Shaevitz, J. W., An unsupervised method for quantifying the behavior of paired animals., Phys Biol, vol. 14, no. 1, p. 015006, 2017.
W. Shi, Levine, M., and Davidson, B., Unraveling genomic regulatory networks in the simple chordate, Ciona intestinalis., Genome Res, vol. 15, no. 12, pp. 1668-74, 2005.
S. De Renzis, Elemento, O., Tavazoie, S., and Wieschaus, E. F., Unmasking activation of the zygotic genome using chromosomal deletions in the Drosophila embryo., PLoS Biol, vol. 5, no. 5, p. e117, 2007.
N. Novoradovskaya, Whitfield, M. L., Basehore, L. S., Novoradovsky, A., Pesich, R., Usary, J., Karaca, M., Wong, W. K., Aprelikova, O., Fero, M., Perou, C. M., Botstein, D., and Braman, J., Universal Reference RNA as a standard for microarray experiments., BMC Genomics, vol. 5, no. 1, p. 20, 2004.
J. J. Zartman and Shvartsman, S. Y., Unit operations of tissue development: epithelial folding., Annu Rev Chem Biomol Eng, vol. 1, pp. 231-46, 2010.
S. Hui and Rabinowitz, J. D., An unexpected trigger for calorie burning in brown fat., Nature, vol. 560, no. 7716, pp. 38-39, 2018.
C. S. Greene, Krishnan, A., Wong, A. K., Ricciotti, E., Zelaya, R. A., Himmelstein, D. S., Zhang, R., Hartmann, B. M., Zaslavsky, E., Sealfon, S. C., Chasman, D. I., FitzGerald, G. A., Dolinski, K., Grosser, T., and Troyanskaya, O. G., Understanding multicellular function and disease with human tissue-specific networks., Nat Genet, vol. 47, no. 6, pp. 569-76, 2015.
W. A. Rogers, Goyal, Y., Yamaya, K., Shvartsman, S. Y., and Levine, M. S., Uncoupling neurogenic gene networks in the Drosophila embryo., Genes Dev, vol. 31, no. 7, pp. 634-638, 2017.
B. Davidson, Shi, W., and Levine, M., Uncoupling heart cell specification and migration in the simple chordate Ciona intestinalis., Development, vol. 132, no. 21, pp. 4811-8, 2005.
Y. - F. Xu, Amador-Noguez, D., Reaves, M. Louis, Feng, X. - J., and Rabinowitz, J. D., Ultrasensitive regulation of anapleurosis via allosteric activation of PEP carboxylase., Nat Chem Biol, vol. 8, no. 6, pp. 562-8, 2012.
J. D. Rabinowitz, Lloyd, P. M., Munzar, P., Myers, D. J., Cross, S., Damani, R., Quintana, R., Spyker, D. A., Soni, P., and Cassella, J. V., Ultra-fast absorption of amorphous pure drug aerosols via deep lung inhalation., J Pharm Sci, vol. 95, no. 11, pp. 2438-51, 2006.
A. F. Schober, Mathis, A. D., Ingle, C., Park, J. O., Chen, L., Rabinowitz, J. D., Junier, I., Rivoire, O., and Reynolds, K. A., A Two-Enzyme Adaptive Unit within Bacterial Folate Metabolism., Cell Rep, vol. 27, no. 11, pp. 3359-3370.e7, 2019.
H. Yoo-Warren, Pachnis, V., Ingram, R. S., and Tilghman, S. M., Two regulatory domains flank the mouse H19 gene., Mol Cell Biol, vol. 8, no. 11, pp. 4707-15, 1988.
J. T. Blankenship and Wieschaus, E., Two new roles for the Drosophila AP patterning system in early morphogenesis., Development, vol. 128, no. 24, pp. 5129-38, 2001.
T. J. Vasicek, Zeng, L., Guan, X. J., Zhang, T., Costantini, F., and Tilghman, S. M., Two dominant mutations in the mouse fused gene are the result of transposon insertions., Genetics, vol. 147, no. 2, pp. 777-86, 1997.
D. Munro, Ghersi, D., and Singh, M., Two critical positions in zinc finger domains are heavily mutated in three human cancer types., PLoS Comput Biol, vol. 14, no. 6, p. e1006290, 2018.
S. M. Tilghman, Twists and turns: a scientific journey., Annu Rev Cell Dev Biol, vol. 30, pp. 1-21, 2014.
V. Sourjik and Wingreen, N. S., Turning to the cold., Nat Cell Biol, vol. 9, no. 9, pp. 1029-31, 2007.
J. C. García-Cañaveras, Chen, L., and Rabinowitz, J. D., The Tumor Metabolic Microenvironment: Lessons from Lactate., Cancer Res, vol. 79, no. 13, pp. 3155-3162, 2019.
N. V. Rajeshkumar, Yabuuchi, S., Pai, S. G., De Oliveira, E., Kamphorst, J. J., Rabinowitz, J. D., Tejero, H., Al-Shahrour, F., Hidalgo, M., Maitra, A., and Dang, C. V., Treatment of Pancreatic Cancer Patient-Derived Xenograft Panel with Metabolic Inhibitors Reveals Efficacy of Phenformin., Clin Cancer Res, vol. 23, no. 18, pp. 5639-5647, 2017.
T. Fukaya and Levine, M., Transvection., Curr Biol, vol. 27, no. 19, pp. R1047-R1049, 2017.
M. Pribyl, Muratov, C. B., and Shvartsman, S. Y., Transitions in the model of epithelial patterning., Dev Dyn, vol. 226, no. 1, pp. 155-9, 2003.
I. S. Lossos, Alizadeh, A. A., Diehn, M., Warnke, R., Thorstenson, Y., Oefner, P. J., Brown, P. O., Botstein, D., and Levy, R., Transformation of follicular lymphoma to diffuse large-cell lymphoma: alternative patterns with increased or decreased expression of c-myc and its regulated genes., Proc Natl Acad Sci U S A, vol. 99, no. 13, pp. 8886-91, 2002.
R. Kaletsky, Yao, V., Williams, A., Runnels, A. M., Tadych, A., Zhou, S., Troyanskaya, O. G., and Murphy, C. T., Transcriptome analysis of adult Caenorhabditis elegans cells reveals tissue-specific gene and isoform expression., PLoS Genetics, vol. 14, no. 8, p. e1007559, 2018.
L. Christiaen, Davidson, B., Kawashima, T., Powell, W., Nolla, H., Vranizan, K., and Levine, M., The transcription/migration interface in heart precursors of Ciona intestinalis., Science, vol. 320, no. 5881, pp. 1349-52, 2008.
M. Ronen and Botstein, D., Transcriptional response of steady-state yeast cultures to transient perturbations in carbon source., Proc Natl Acad Sci U S A, vol. 103, no. 2, pp. 389-94, 2006.
K. Sayama, Diehn, M., Matsuda, K., Lunderius, C., Tsai, M., Tam, S. - Y., Botstein, D., Brown, P. O., and Galli, S. J., Transcriptional response of human mast cells stimulated via the Fc(epsilon)RI and identification of mast cells as a source of IL-11., BMC Immunol, vol. 3, p. 5, 2002.
V. S. Chopra, Kong, N., and Levine, M., Transcriptional repression via antilooping in the Drosophila embryo., Proc Natl Acad Sci U S A, vol. 109, no. 24, pp. 9460-4, 2012.
M. Shakoury-Elizeh, Tiedeman, J., Rashford, J., Ferea, T., Demeter, J., Garcia, E., Rolfes, R., Brown, P. O., Botstein, D., and Philpott, C. C., Transcriptional remodeling in response to iron deprivation in Saccharomyces cerevisiae., Mol Biol Cell, vol. 15, no. 3, pp. 1233-43, 2004.
B. Lim, Levine, M., and Yamazaki, Y., Transcriptional Pre-patterning of Drosophila Gastrulation., Curr Biol, vol. 27, no. 2, pp. 286-290, 2017.
A. C. Edwards, Ayroles, J. F., Stone, E. A., Carbone, M. Anna, Lyman, R. F., and Mackay, T. F. C., A transcriptional network associated with natural variation in Drosophila aggressive behavior., Genome Biol, vol. 10, no. 7, p. R76, 2009.
T. Ferraro, Esposito, E., Mancini, L., Ng, S., Lucas, T., Coppey, M., Dostatni, N., Walczak, A. M., Levine, M., and Lagha, M., Transcriptional Memory in the Drosophila Embryo., Curr Biol, vol. 26, no. 2, pp. 212-8, 2016.
A. Fuchs, Cheung, L. S., Charbonnier, E., Shvartsman, S. Y., and Pyrowolakis, G., Transcriptional interpretation of the EGF receptor signaling gradient., Proc Natl Acad Sci U S A, vol. 109, no. 5, pp. 1572-7, 2012.
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A. Z. Welch, Gibney, P. A., Botstein, D., and Koshland, D. E., TOR and RAS pathways regulate desiccation tolerance in Saccharomyces cerevisiae., Mol Biol Cell, vol. 24, no. 2, pp. 115-28, 2013.
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C. Y. Park, Krishnan, A., Zhu, Q., Wong, A. K., Lee, Y. -suk, and Troyanskaya, O. G., Tissue-aware data integration approach for the inference of pathway interactions in metazoan organisms., Bioinformatics, 2014.
T. O. Nielsen, Hsu, F. D., O'Connell, J. X., C Gilks, B., Sorensen, P. H. B., Linn, S., West, R. B., Liu, C. Long, Botstein, D., Brown, P. O., and van de Rijn, M., Tissue microarray validation of epidermal growth factor receptor and SALL2 in synovial sarcoma with comparison to tumors of similar histology., Am J Pathol, vol. 163, no. 4, pp. 1449-56, 2003.
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M. Coppey, Berezhkovskii, A. M., Sealfon, S. C., and Shvartsman, S. Y., Time and length scales of autocrine signals in three dimensions., Biophys J, vol. 93, no. 6, pp. 1917-22, 2007.
M. Osterfield, Du, X. X., Schüpbach, T., Wieschaus, E., and Shvartsman, S. Y., Three-dimensional epithelial morphogenesis in the developing Drosophila egg., Dev Cell, vol. 24, no. 4, pp. 400-10, 2013.
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G. I. Lang and Botstein, D., A test of the coordinated expression hypothesis for the origin and maintenance of the GAL cluster in yeast., PLoS One, vol. 6, no. 9, p. e25290, 2011.
A. C. Martin and Wieschaus, E. F., Tensions divide., Nat Cell Biol, vol. 12, no. 1, pp. 5-7, 2010.
M. K. Shin, Levorse, J. M., Ingram, R. S., and Tilghman, S. M., The temporal requirement for endothelin receptor-B signalling during neural crest development., Nature, vol. 402, no. 6761, pp. 496-501, 1999.
C. A. Rushlow and Shvartsman, S. Y., Temporal dynamics, spatial range, and transcriptional interpretation of the Dorsal morphogen gradient., Curr Opin Genet Dev, vol. 22, no. 6, pp. 542-6, 2012.
D. Botstein, Technological innovation leads to fundamental understanding in cell biology., Mol Biol Cell, vol. 21, no. 22, pp. 3791-2, 2010.
J. D. Rabinowitz and Vastag, L., Teaching the design principles of metabolism., Nat Chem Biol, vol. 8, no. 6, pp. 497-501, 2012.
R. A. Miller, Shi, Y., Lu, W., Pirman, D. A., Jatkar, A., Blatnik, M., Wu, H., Cárdenas, C., Wan, M., J Foskett, K., Park, J. O., Zhang, Y., Holland, W. L., Rabinowitz, J. D., and Birnbaum, M. J., Targeting hepatic glutaminase activity to ameliorate hyperglycemia., Nat Med, vol. 24, no. 4, pp. 518-524, 2018.
Q. Zhu, Wong, A. K., Krishnan, A., Aure, M. R., Tadych, A., Zhang, R., Corney, D. C., Greene, C. S., Bongo, L. A., Kristensen, V. N., Charikar, M., Li, K., and Troyanskaya, O. G., Targeted exploration and analysis of large cross-platform human transcriptomic compendia., Nat Methods, vol. 12, no. 3, pp. 211-4, 3 p following 214, 2015.
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