Education
Ph.D. in Mol. and Dev. Biology, University of Cincinnati, 1999
Current position
Associate Professor of Human Genetics, Department of Human Genetics, Emory University
Publications
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Song, C. X., Szulwach, K. E., Fu, Y., Dai, Q., Yi, C., Li, X., Li, Y., Chen, C. H., Zhang, W., Jian, X., Wang, J., Zhang, L., Looney, T. J., Zhang, B., Godley, L. A., Hicks, L. M., Lahn, B. T., Jin, P.* and He, C.* (2011). Selective chemical labeling reveals the genome-wide distribution of 5-hydroxymethylcytosine. Nat Biotechnol 29(1): 68-72. (*Co-Corresponding authors)
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Guo, W., Allan, A. M., Zong, R., Zhang, L., Johnson, E. B., Schaller, E. G., Murthy, A. C., Goggin, S. L., Eisch, A. J., Oostra, B. A., Nelson, D. L., Jin, P. and Zhao, X. (2011). Ablation of Fmrp in adult neural stem cells disrupts hippocampus-dependent learning. Nat Med 17(5): 559-565.
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Qurashi, A., Li, W., Zhou, J. Y., Peng, J. and Jin, P. (2011). Nuclear accumulation of stress response mRNAs contributes to the neurodegeneration caused by Fragile X premutation rCGG repeats. PLoS Genet 7(6): e1002102.
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Guo, W., Zhang, L., Christopher, D. M., Teng, Z. Q., Fausett, S. R., Liu, C., George, O. L., Klingensmith, J., Jin, P. and Zhao, X. (2011). RNA-binding protein FXR2 regulates adult hippocampal neurogenesis by reducing Noggin expression. Neuron 70(5): 924-938.
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Szulwach, K. E., Li, X., Li, Y., Song, C. X., Han, J. W., Kim, S., Namburi, S., Hermetz, K., Kim, J. J., Rudd, M. K., Yoon, Y. S., Ren, B., He, C. and Jin, P. (2011). Integrating 5-hydroxymethylcytosine into the epigenomic landscape of human embryonic stem cells. PLoS Genet 7(6): e1002154.
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Szulwach, K. E., Li, X., Li, Y., Song, C. X., Wu, H., Dai, Q., Irier, H., Upadhyay, A. K., Gearing, M., Levey, A. I., Vasanthakumar, A., Godley, L. A., Chang, Q., Cheng, X., He, C. and Jin, P. (2011). 5-hmC-mediated epigenetic dynamics during postnatal neurodevelopment and aging. Nat Neurosci 14(12): 1607-1616.
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Szulwach, K. E., Li, X., Smrt, R. D., Li, Y., Luo, Y., Lin, L., Santistevan, N. J., Li, W., Zhao, X. and Jin, P. (2010). Cross talk between microRNA and epigenetic regulation in adult neurogenesis. J Cell Biol 189(1): 127-141.
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Luo, Y., Shan, G., Guo, W., Smrt, R. D., Johnson, E. B., Li, X., Pfeiffer, R. L., Szulwach, K. E., Duan, R., Barkho, B. Z., Li, W., Liu, C., Jin, P.* and Zhao, X.* (2010). Fragile x mental retardation protein regulates proliferation and differentiation of adult neural stem/progenitor cells. PLoS Genet 6(4): e1000898. (*Co-Corresponding authors)
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Liu, C., Teng, Z. Q., Santistevan, N. J., Szulwach, K. E., Guo, W., Jin, P. and Zhao, X. (2010). Epigenetic regulation of miR-184 by MBD1 governs neural stem cell proliferation and differentiation. Cell Stem Cell 6(5): 433-444.
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Smrt, R. D., Szulwach, K. E., Pfeiffer, R. L., Li, X., Guo, W., Pathania, M., Teng, Z. Q., Luo, Y., Peng, J., Bordey, A., Jin, P.* and Zhao, X.* (2010). MicroRNA miR-137 regulates neuronal maturation by targeting ubiquitin ligase mind bomb-1. Stem Cells 28(6): 1060-1070. (*Co-Corresponding authors)
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Li, X. and Jin, P. (2010). Roles of small regulatory RNAs in determining neuronal identity. Nat Rev Neurosci 11(5): 329-338.
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Li, Y., He, C. and Jin, P. (2010). Emergence of chemical biology approaches to the RNAi/miRNA pathway. Chem Biol 17(6): 584-589.
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Yang, Y., Xu, S., Xia, L., Wang, J., Wen, S., Jin, P.* and Chen, D.* (2009). The bantam microRNA is associated with drosophila fragile X mental retardation protein and regulates the fate of germline stem cells. PLoS Genet 5(4): e1000444. (*Co-Corresponding authors)
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Chang, S., Bray, S. M., Li, Z., Zarnescu, D. C., He, C., Jin, P. and Warren, S. T. (2008). Identification of small molecules rescuing fragile X syndrome phenotypes in Drosophila. Nat Chem Biol 4(4): 256-263.
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Allan, A. M., Liang, X., Luo, Y., Pak, C., Li, X., Szulwach, K. E., Chen, D., Jin, P. and Zhao, X. (2008). The loss of methyl-CpG binding protein 1 leads to autism-like behavioral deficits. Human molecular genetics 17(13): 2047-2057.
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Shan, G., Li, Y., Zhang, J., Li, W., Szulwach, K. E., Duan, R., Faghihi, M. A., Khalil, A. M., Lu, L., Paroo, Z., Chan, A. W., Shi, Z., Liu, Q., Wahlestedt, C., He, C. and Jin, P. (2008). A small molecule enhances RNA interference and promotes microRNA processing. Nat Biotechnol 26(8): 933-940.
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Jin, P. *, Duan, R., Qurashi, A., Qin, Y., Tian, D., Rosser, T. C., Liu, H., Feng, Y. and Warren, S. T. (2007). Pur alpha binds to rCGG repeats and modulates repeat-mediated neurodegeneration in a Drosophila model of fragile X tremor/ataxia syndrome. Neuron 55(4): 556-564. (*Co-Corresponding authors)
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Zarnescu, D. C., Jin, P., Betschinger, J., Nakamoto, M., Wang, Y., Dockendorff, T. C., Feng, Y., Jongens, T. A., Sisson, J. C., Knoblich, J. A., Warren, S. T. and Moses, K. (2005). Fragile X protein functions with lgl and the par complex in flies and mice. Dev Cell 8(1): 43-52.
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Nakamoto, M., Jin, P., O'Donnell, W. T. and Warren, S. T. (2005). Physiological identification of human transcripts translationally regulated by a specific microRNA. Hum Mol Genet 14(24): 3813-3821.
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Jin, P., Zarnescu, D. C., Ceman, S., Nakamoto, M., Mowrey, J., Jongens, T. A., Nelson, D. L., Moses, K. and Warren, S. T. (2004). Biochemical and genetic interaction between the fragile X mental retardation protein and the microRNA pathway. Nat Neurosci 7(2): 113-117.
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Jin, P., Alisch, R. S. and Warren, S. T. (2004). RNA and microRNAs in fragile X mental retardation. Nat Cell Biol 6(11): 1048-1053.
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Jin, P., Zarnescu, D. C., Zhang, F., Pearson, C. E., Lucchesi, J. C., Moses, K. and Warren, S. T. (2003). RNA-mediated neurodegeneration caused by the fragile X premutation rCGG repeats in Drosophila. Neuron 39(5): 739-747.
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Brown, V.*, Jin, P.*, Ceman, S., Darnell, J. C., O'Donnell, W. T., Tenenbaum, S. A., Jin, X., Feng, Y., Wilkinson, K. D., Keene, J. D., Darnell, R. B. and Warren, S. T. (2001). Microarray identification of FMRP-associated brain mRNAs and altered mRNA translational profiles in fragile X syndrome. Cell 107(4): 477-487. (*equal contribution)
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Darnell, J. C., Jensen, K. B., Jin, P., Brown, V., Warren, S. T. and Darnell, R. B. (2001). Fragile X mental retardation protein targets G quartet mRNAs important for neuronal function. Cell 107(4): 489-499.