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  1. 1.   Age-associated changes in lineage composition of the enteric nervous system regulate gut health and disease
  2. Kulkarni, Subhash; Saha, Monalee; Slosberg, Jared; Singh, Alpana; Nagaraj, Sushma; Becker, Laren; Zhang, Chengxiu; Bukowski, Alicia; Wang, Zhuolun; Liu, Guosheng; Leser, Jenna M; Kumar, Mithra; Bakhshi, Shriya; Anderson,Matthew; Lewandoski,Mark; Vincent, Elizabeth; Goff, Loyal A; Pasricha, Pankaj Jay
  3. eLife. 2023, Dec 18; 12
  1. 2.   Evaluating point-prediction uncertainties in neural networks for protein-ligand binding prediction
  2. Fan, Ya Ju; Allen, Jonathan E; McLoughlin, Kevin S; Shi, Da; Bennion, Brian J; Zhang, Xiaohua; Lightstone, Felice C
  3. Artificial Intelligence Chemistry. 2023, Jun; 1(1):
  1. 3.   Craniofacial Development Is Fine-Tuned by Sox2
  2. Mandalos, Nikolaos Panagiotis; Dimou, Aikaterini; Gavala, Maria Angeliki; Lambraki, Efstathia; Remboutsika, Eumorphia
  3. Genes. 2023, Jan 31; 14(2):
  1. 4.   Single-cell sequencing reveals activation of core transcription factors in PRC2-deficient malignant peripheral nerve sheath tumor
  2. Zhang, Xiyuan; Lou, Hannah E; Gopalan, Vishaka; Liu, Zhihui; Jafarah, Hilda M; Lei, Haiyan; Jones, Paige; Sayers, Carly M; Yohe, Marielle E; Chittiboina, Prashant; Widemann, Brigitte C; Thiele, Carol J; Kelly,Michael; Hannenhalli, Sridhar; Shern, Jack F
  3. Cell Reports. 2022, Sep 20; 40(12): 111363.
  1. 5.   Gbx2 Is Required for the Migration and Survival of a Subpopulation of Trigeminal Cranial Neural Crest Cells
  2. Roeseler, David A; Strader, Lona; Anderson,Matthew; Waters, Samuel T
  3. Journal of developmental biology. 2020, Dec 11; 8(4): pii: E33.
  1. 6.   RNA-Seq analysis on ets1 mutant embryos of Xenopus tropicalis identifies microseminoprotein beta gene 3 as an essential regulator of neural crest migration
  2. Wang, Chengdong; Qi, Xufeng; Zhou, Xiang; Sun, Jianmin; Cai, Dongqing; Lu, Gang; Chen,Jack; Jiang, Zhihua; Yao, Yong-Gang; Chan, Wai Yee; Zhao, Hui
  3. FASEB journal : official publication of the Federation of American Societies for Experimental Biology. 2020, Jul 26;
  1. 7.   Predicting RNA SHAPE scores with deep learning
  2. Bliss, Noah; Bindewald,Eckart; Shapiro,Bruce
  3. RNA biology. 2020, JUN 1; 1-7.
  1. 8.   Placental defects lead to embryonic lethality in mice lacking the Formin and PCP proteins Daam1 and Daam2
  2. Nakaya, Masa-Aki; Gudmundsson,Kristbjorn; Komiya, Yuko; Keller,Jonathan; Habas, Raymond; Yamaguchi,Terry; Ajima, Rieko
  3. PloS one. 2020, APR 30; 15(4): e0232025.
  1. 9.   Improved Retinal Organoid Differentiation by Modulating Signaling Pathways Revealed by Comparative Transcriptome Analyses with Development In Vivo
  2. Brooks, Matthew J; Chen, Holly Y; Kelley, Ryan A; Mondal, Anupam K; Nagashima,Kunio; De Val Alda,Natalia; Li, Tiansen; Chaitankar, Vijender; Swaroop, Anand
  3. Stem cell reports. 2019, Nov 12; 13(5): 891-905.
  1. 10.   Society of Toxicologic Pathology Digital Pathology and Image Analysis Special Interest Group Article*: Opinion on the Application of Artificial Intelligence and Machine Learning to Digital Toxicologic Pathology
  2. Turner, Oliver C; Aeffner, Famke; Bangari, Dinesh S; High, Wanda; Knight, Brian; Forest, Tom; Cossic, Brieuc; Himmel, Lauren E; Rudmann, Daniel G; Bawa, Bhupinder; Muthuswamy, Anantharaman; Aina, Olulanu H; Edmondson,Elijah; Saravanan, Chandrassegar; Brown, Danielle L; Sing, Tobias; Sebastian, Manu M
  3. Toxicologic pathology. 2019, Oct 23; 192623319881401.
  1. 11.   PML: Regulation and multifaceted function beyond tumor suppression
  2. Hsu, Kuo-Sheng; Kao, Hung-Ying
  3. Cell and Bioscience. 2018, Jan 25; 8: 5.
  1. 12.   A novel role of the organizer gene Goosecoid as an inhibitor of Wnt/PCP-mediated convergent extension in Xenopus and mouse
  2. Ulmer, Baerbel; Tingler, Melanie; Kurz, Sabrina; Maerker, Markus; Andre, Philipp; Moench, Dina; Campione, Marina; Deissler, Kirsten; Lewandoski, Mark; Thumberger, Thomas; Schweickert, Axel; Fainsod, Abraham; Steinbeisser, Herbert; Blum, Martin
  3. SCIENTIFIC REPORTS. 2017, 2017-02-21; 7
  1. 13.   Induced Pluripotent Stem Cells for Disease Modeling and Evaluation of Therapeutics for Niemann-Pick Disease Type A
  2. Long, Y.; Xu, M.; Li, R.; Dai, S.; Beers, J.; Chen, G.; Soheilian, F.; Baxa, U.; Wang, M.; Marugan, J. J.; Muro, S.; Li, Z.; Brady, R.; Zheng, W.
  3. Stem cells translational medicine. 2016, Dec; 5(12): 1644-1655.
  1. 14.   Non-SH2/PDZ reverse signaling by ephrins
  2. Daar, I. O.
  3. Seminars in Cell & Developmental Biology. 2012, Feb; 23(1): 65-74.
  1. 15.   Eph/ephrin signaling in cell-cell and cell-substrate adhesion
  2. Singh, A.; Winterbottom, E.; Daar, I. O.
  3. Frontiers in Bioscience-Landmark. 2012, Jan; 17: 473-497.
  1. 16.   Pitx2 is an upstream activator of extraocular myogenesis and survival
  2. Zacharias, A. L.; Lewandoski, M.; Rudnicki, M. A.; Gage, P. J.
  3. Developmental Biology. 2011, Jan; 349(2): 395-405.
  1. 17.   Neuralized1 causes apoptosis and downregulates Notch target genes in medulloblastoma
  2. Teider, N.; Scott, D. K.; Neiss, A.; Weeraratne, S. D.; Amani, V. M.; Wang, Y. F.; Marquez, V. E.; Cho, Y. J.; Pomeroy, S. L.
  3. Neuro-Oncology. 2010, Dec; 12(12): 1244-+.
  1. 18.   Dynamic Patterns of Histone Lysine Methylation in the Developing Retina
  2. Rao, R. C.; Tchedre, K. T.; Malik, M. T. A.; Coleman, N.; Fang, Y. A.; Marquez, V. E.; Chen, D. F.
  3. Investigative Ophthalmology & Visual Science. 2010, Dec; 51(12): 6784-6792.
  1. 19.   Tumor antigen analysis in neuroblastoma by serological interrogation of bioinformatic data
  2. Kohler, M. E.; Johnson, B. D.; Palen, K.; Chen, Q. R.; Khan, J.; Orentas, R. J.
  3. Cancer Science. 2010, Nov; 101(11): 2316-2324.
  1. 20.   Taste Function in Mice with a Targeted Mutation of the Pkd1l3 Gene
  2. Nelson, T. M.; LopezJimenez, N. D.; Tessarollo, L.; Inoue, M.; Bachmanov, A. A.; Sullivan, S. L.
  3. Chemical Senses. 2010, Sep; 35(7): 565-577.
  1. 21.   The molecular pathology of cancer
  2. Harris, T. J. R.; McCormick, F.
  3. Nature Reviews Clinical Oncology. 2010, May; 7(5): 251-265.
  1. 22.   Vang-like protein 2 and Rac1 interact to regulate adherens junctions
  2. Lindqvist, M.; Horn, Z.; Bryja, V.; Schulte, G.; Papachristou, P.; Ajima, R.; Dyberg, C.; Arenas, E.; Yamaguchi, T. P.; Lagercrantz, H.; Ringstedt, T.
  3. Journal of Cell Science. 2010, Feb; 123(3): 472-483.
  1. 23.   A genomewide study identifies the Wnt signaling pathway as a major target of p53 in murine embryonic stem cells
  2. Lee, K. H.; Li, M. M.; Michalowski, A. M.; Zhang, X. Y.; Liao, H. L.; Chen, L. Y.; Xu, Y.; Wu, X. L.; Huang, J.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2010, Jan; 107(1): 69-74.
  1. 24.   Genetic Interaction Between Lrp6 and Wnt5a During Mouse Development
  2. Andersson, E.; Bryjova, L.; Biris, K.; Yamaguchi, T. P.; Arenas, E.; Bryja, V.
  3. Developmental Dynamics. 2010, Jan; 239(1): 237-245.
  1. 25.   Epigenetic gene regulation in stem cells and correlation to cancer
  2. Mathews, L. A.; Crea, F.; Farrar, W. L.
  3. Differentiation. 2009, Jul; 78(1): 1-17.
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