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  1. 2.   Cardiac progenitors instruct second heart field fate through Wnts
  2. Miyamoto, Matthew; Kannan, Suraj; Anderson,Matthew; Liu, Xihe; Suh, David; Htet, Myo; Li, Biyi; Kakani, Tejasvi; Murphy, Sean; Tampakakis, Emmanouil; Lewandoski,Mark; Andersen, Peter; Uosaki, Hideki; Kwon, Chulan
  3. Proceedings of the National Academy of Sciences of the United States of America. 2023, Jan 24; 120(4): e2217687120.
  1. 3.   Bmp Signal Gradient Modulates Convergent Cell Movement via Xarhgef3.2 during Gastrulation of Xenopus Embryos
  2. Yoon,Jaeho; Kumar, Vijay; Goutam, Ravi Shankar; Kim, Sung-Chan; Park, Soochul; Lee, Unjoo; Kim, Jaebong
  3. Cells. 2021, Dec 24; 11(1):
  1. 4.   Combination of Wnt/ß-Catenin Targets S100A4 and DKK1 Improves Prognosis of Human Colorectal Cancer
  2. Dahlmann, Mathias; Monks, Anne; Harris,Erik; Kobelt, Dennis; Osterland, Marc; Khaireddine, Fadi; Herrmann, Pia; Kemmner, Wolfgang; Burock, Susen; Walther, Wolfgang; Shoemaker, Robert H; Stein, Ulrike
  3. Cancers. 2021, Dec 22; 14(1):
  1. 5.   A dorsal-ventral gradient of Wnt3a/ß-catenin signals control hindgut extension and colon formation
  2. Garriock,Robert; Chalamalasetty,Ravindra Babu; Zhu,Jianjian; Kennedy, Mark W; Kumar,Amit; Mackem,Susan; Yamaguchi,Terry
  3. Development (Cambridge, England). 2020, APR; 147(8):
  1. 6.   Wnt regulates amino acid transporter Slc7a5 and so constrains the integrated stress response in mouse embryos
  2. Poncet, Nadege; Halley, Pamela A.; Lipina, Christopher; Gierlinski, Marek; Dady, Alwyn; Singer, Gail A.; Febrer, Melanie; Shi, Yun-Bo; Yamaguchi,Terry; Taylor, Peter M.; Storey, Kate G.
  3. EMBO REPORTS. 2020, JAN 7; 21(1):
  1. 7.   Wnt regulates amino acid transporter Slc7a5 and so constrains the integrated stress response in mouse embryos
  2. Poncet, Nadège; Halley, Pamela A; Lipina, Christopher; Gierlinski, Marek; Dady, Alwyn; Singer, Gail A; Febrer, Melanie; Shi, Yun-Bo; Yamaguchi,Terry; Taylor, Peter M; Storey, Kate G
  3. EMBO reports. 2019, Dec 02; e48469.
  1. 8.   A frizzled-like cysteine rich domain in glypican-3 mediates Wnt binding and regulates hepatocellular carcinoma tumor growth in mice
  2. Li, Na; Wei, Liwen; Liu, Xiaoyu; Bai, Hongjun; Ye, Yvonne; Li, Dan; Li, Nan; Baxa,Ulrich; Wang, Qun; Lv, Ling; Chen, Yun; Feng, Mingqian; Lee, Byungkook; Gao, Wei; Ho, Mitchell
  3. Hepatology (Baltimore, Md.). 2019, OCT; 70(4): 1231-1245.
  1. 9.   CYR61/CCN1 Regulates Sclerostin Levels and Bone Maintenance
  2. Zhao, Gexin; Huang, Bau-Lin; Rigueur, Diana; Wang, Weiguang; Bhoot, Chimay; Charles, Kemberly R; Baek, Jongseung; Mohan, Subburaman; Jiang, Jie; Lyons, Karen M
  3. Journal of Bone and Mineral Research. 2018, Jun; 33(6): 1076-1089.
  1. 10.   Coordinated directional outgrowth and pattern formation by integration of Wnt5a and Fgf signaling in planar cell polarity
  2. Gao, Bo; Ajima, Rieko; Yang, Wei; Li, Chunyu; Song, Hai; Anderson, Matthew; Liu, Robert R; Lewandoski, Mark; Yamaguchi, Terry P; Yang, Yingzi
  3. Development (Cambridge, England). 2018, Apr 13; 145(8): pii: dev.163824.
  1. 11.   Primary Cilium-Mediated Retinal Pigment Epithelium Maturation Is Disrupted in Ciliopathy Patient Cells
  2. May-Simera, Helen Louise; Wan, Qin; Jha, Balendu Shekhar; Hartford, Juliet; Khristov, Vladimir; Dejene, Roba; Chang, Justin; Patnaik, Sarita; Lu, Quanlong; Banerjee, Poulomi; Silver, Jason; Kettenhofen, Christine; Patel, Dishita; Lotfi, Mostafa; Malicdan, May; Hotaling, Nathan; Maminishkis, Arvydas; Sridharan, Rupa; Brooks, Brian; Miyagishima, Kiyoharu; Gunay-Aygun, Meral; Pal, Rajarshi; Westlake, Christopher; Miller, Sheldon; Sharma, Ruchi; Bharti, Kapil
  3. Cell reports. 2018, Jan 02; 22(1): 189-205.
  1. 12.   Mice lacking Wnt2b are viable and display a postnatal olfactory bulb phenotype
  2. Tsukiyama, T.; Yamaguchi, T. P.
  3. Neuroscience Letters. 2012, Mar; 512(1): 48-52.
  1. 13.   The role of upregulated miRNAs and the identification of novel mRNA targets in prostatospheres
  2. Cabarcas, S. M.; Thomas, S.; Zhang, X. H.; Cherry, J. M.; Sebastian, T.; Yerramilli, S.; Lader, E.; Farrar, W. L.; Hurt, E. M.
  3. Genomics. 2012, Feb; 99(2): 108-117.
  1. 14.   Islet1-mediated activation of the beta-catenin pathway is necessary for hindlimb initiation in mice
  2. Kawakami, Y.; Marti, M.; Kawakami, H.; Itou, J.; Quach, T.; Johnson, A.; Sahara, S.; O'Leary, D. D. M.; Nakagawa, Y.; Lewandoski, M.; Pfaff, S.; Evans, S. M.; Belmonte, J. C. I.
  3. Development. 2011, Oct; 138(20): 4465-4473.
  1. 15.   A Conserved Pbx-Wnt-p63-Irf6 Regulatory Module Controls Face Morphogenesis by Promoting Epithelial Apoptosis
  2. Ferretti, E.; Li, B. S.; Zewdu, R.; Wells, V.; Hebert, J. M.; Karner, C.; Anderson, M. J.; Williams, T.; Dixon, J.; Dixon, M. J.; Depew, M. J.; Selleri, L.
  3. Developmental Cell. 2011, Oct; 21(4): 627-641.
  1. 16.   S100A4-induced cell motility and metastasis is restricted by the Wnt/beta-catenin pathway inhibitor calcimycin in colon cancer cells
  2. Sack, U.; Walther, W.; Scudiero, D.; Selby, M.; Aumann, J.; Lemos, C.; Fichtner, I.; Schlag, P. M.; Shoemaker, R. H.; Stein, U.
  3. Molecular Biology of the Cell. 2011, Sep; 22(18): 3344-3354.
  1. 17.   The Wnt3a/beta-catenin target gene Mesogenin1 controls the segmentation clock by activating a Notch signalling program
  2. Chalamalasetty, R. B.; Dunty, W. C.; Biris, K. K.; Ajima, R.; Iacovino, M.; Beisaw, A.; Feigenbaum, L.; Chapman, D. L.; Yoon, J. K.; Kyba, M.; Yamaguchi, T. P.
  3. Nature Communications. 2011, Jul; 2: 12.
  1. 18.   The canonical Wnt signaling pathway is not involved in renal cyst development in the kidneys of inv mutant mice
  2. Sugiyama, N.; Tsukiyama, T.; Yamaguchi, T. P.; Yokoyama, T.
  3. Kidney International. 2011, May; 79(9): 957-965.
  1. 19.   Limb Cells Don't Tell Time
  2. Mackem, S.; Lewandoski, M.
  3. Science. 2011, May; 332(6033): 1038-1039.
  1. 20.   Wnt4 induces nephronic tubules in metanephric mesenchyme by a non-canonical mechanism
  2. Tanigawa, S.; Wang, H. G.; Yang, Y. L.; Sharma, N.; Tarasova, N.; Ajima, R.; Yamaguchi, T. P.; Rodriguez, L. G.; Perantoni, A. O.
  3. Developmental Biology. 2011, Apr; 352(1): 58-69.
  1. 21.   Coactivation of AKT and beta-Catenin in Mice Rapidly Induces Formation of Lipogenic Liver Tumors
  2. Stauffer, J. K.; Scarzello, A. J.; Andersen, J. B.; De Kluyver, R. L.; Back, T. C.; Weiss, J. M.; Thorgeirsson, S. S.; Wiltrout, R. H.
  3. Cancer Research. 2011, Apr; 71(7): 2718-2727.
  1. 22.   FGF4 and FGF8 comprise the wavefront activity that controls somitogenesis
  2. Naiche, L. A.; Holder, N.; Lewandoski, M.
  3. Proceedings of the National Academy of Sciences of the United States of America. 2011, Mar; 108(10): 4018-4023.
  1. 23.   Intervening in beta-Catenin Signaling by Sulindac Inhibits S100A4-Dependent Colon Cancer Metastasis
  2. Stein, U.; Arlt, F.; Smith, J.; Sack, U.; Herrmann, P.; Walther, W.; Lemm, M.; Fichtner, I.; Shoemaker, R. H.; Schlag, P. M.
  3. Neoplasia. 2011, Feb; 13(2): 131-144.
  1. 24.   Defining the Molecular Nexus of Cancer, Type 2 Diabetes and Cardiovascular Disease
  2. Cabarcas, S. M.; Hurt, E. M.; Farrar, W. L.
  3. Current Molecular Medicine. 2010, Nov; 10(8): 741-755.
  1. 25.   Cigarette Smoke Induces C/EBP-beta-Mediated Activation of miR-31 in Normal Human Respiratory Epithelia and Lung Cancer Cells
  2. Xi, S. C.; Yang, M. C.; Tao, Y. G.; Xu, H.; Shan, J. G.; Inchauste, S.; Zhang, M.; Mercedes, L.; Hong, J. A.; Rao, M.; Schrump, D. S.
  3. Plos One. 2010, Oct; 5(10): 12.
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