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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.   Pleiotropic effects of BAFF on the senescence-associated secretome and growth arrest
  2. Rossi, Martina; Anerillas, Carlos; Idda, Maria Laura; Munk, Rachel; Shin, Chang Hoon; Donega, Stefano; Tsitsipatis, Dimitrios; Herman, Allison B; Martindale, Jennifer L; Yang, Xiaoling; Piao, Yulan; Mazan-Mamczarz, Krystyna; Fan, Jinshui; Ferrucci, Luigi; Johnson,Peter; De, Supriyo; Abdelmohsen, Kotb; Gorospe, Myriam
  3. eLife. 2023, Apr 21; 12
  1. 3.   Fgf4 maintains Hes7 levels critical for normal somite segmentation clock function
  2. Anderson,Matthew; Magidson,Valentin; Kageyama, Ryoichiro; Lewandoski,Mark
  3. eLife. 2020, Nov 19; 9: pii: 9:e55608.
  1. 4.   Introduction to provocative questions in left-right asymmetry
  2. Levin, M.; Klar, A. J.; Ramsdell, A. F.
  3. Philosophical transactions of the Royal Society of London. Series B, Biological sciences. 2016, 19-Dec; 371(1710):
  1. 5.   Segmentation and quantitative analysis of individual cells in developmental tissues
  2. Nandy, K.; Kim, J.; McCullough, D. P.; McAuliffe, M.; Meaburn, K. J.; Yamaguchi, T. P.; Gudla, P. R.; Lockett, S. J.
  3. Methods in molecular biology (Clifton, N.J.). 2014 1092: 235-53.
  1. 6.   Lymphoid-Specific Helicase (HELLS) Is Essential for Meiotic Progression in Mouse Spermatocytes
  2. Zeng, W. X.; Baumann, C.; Schmidtmann, A.; Honaramooz, A.; Tang, L.; Bondareva, A.; Dores, C.; Fan, T.; Xi, S. C.; Geiman, T.; Rathi, R.; de Rooij, D.; De La Fuente, R.; Muegge, K.; Dobrinski, I.
  3. Biology of Reproduction. 2011, Jun; 84(6): 1235-1241.
  1. 7.   Wnt3a/beta-catenin signaling controls posterior body development by coordinating mesoderm formation and segmentation
  2. Dunty, W. C.; Biris, K. K.; Chalamalasetty, R. B.; Taketo, M. M.; Lewandoski, M.; Yamaguchi, T. P.
  3. Development. 2008 135(1): 85-94.
  1. 8.   Wnt2a/2b are required for lung specification and development through activation of canonical signaling
  2. Goss, A. M.; Tian, Y.; Wang, Z. S.; Yamaguchi, T.; Morrisey, E.
  3. Developmental Biology. 2008 319(2): 606-606.
  1. 9.   The identity and fate of Tbx4-expressing cells reveal previously unknown developmental decisions in the allantois, limb, and proctodeum
  2. Naiche, L. A.; Ripla, A.; Papaioannou, V. E.
  3. Developmental Biology. 2008 319(2): 596-596.
  1. 10.   Reduced translocation of nascent prion protein during ER stress contributes to neurodegeneration
  2. Rane, N. S.; Kang, S. W.; Chakrabarti, O.; Feigenbaum, L.; Hegde, R. S.
  3. Developmental Cell. 2008 15(3): 359-370.
  1. 11.   Genetic substitution of Cdk1 by Cdk2 leads to embryonic lethality and loss of meiotic function of Cdk2
  2. Satyanarayana, A.; Berthet, C.; Lopez-Molina, J.; Coppola, V.; Tessarollo, L.; Kaldis, P.
  3. Development. 2008 135(20): 3389-3400.
  1. 12.   Wnt2 signaling regulates morphogenesis of the inflow tract and atrioventricular canal during cardiac development
  2. Tian, Y.; Goss, A. M.; Wang, Z.; Yamaguchi, T. P.; Morrisey, E. E.
  3. Developmental Biology. 2008 319(2): 128 DI 10.1016/j.ydb-.
  1. 13.   In limb development BMP and FGF signaling interact through Sproutys
  2. Underwood, S.; Williams, T.; Mishina, Y.; Lewandoski, M.
  3. Developmental Biology. 2008 319(2): 100-.
  1. 14.   The PDZ proteins, Dlg-1 and Scrib, are required for lens fiber cell differentiation in the mouse
  2. Yamben, I.; Rachel, R.; Copeland, N.; Jenkins, N.; Griep, A.
  3. Developmental Biology. 2008 319(2): 93-.
  1. 15.   Analysis of transcription factor AP-2 expression and function during mouse preimplantation development
  2. Winger, Q.; Huang, J.; Auman, H. J.; Lewandoski, M.; Williams, T.
  3. Biology of Reproduction. 2006, Sep; 75(3): 324-333.
  1. 16.   Structural organization and functions of the nucleus in development, aging, and disease
  2. Mounkes, L.; Stewart, C. L.; Schatten, G. P.
  3. Current Topics in Developmental Biology. 2004; 61 : 191-228.
  1. 17.   Testis developmental phenotypes in neurotropin receptor trkA and trkC null mutations: Role in formation of seminiferous cords and germ cell survival
  2. Cupp, A. S.; Tessarollo, L.; Skinner, M. K.
  3. Biology of Reproduction. 2002 66(6): 1838-1845.
  1. 18.   Phylogeny of the neotropical killifish family Rivulidae (Cyprinodontiformes, Aplocheiloidei) inferred from mitochondrial DNA sequences
  2. Murphy, W. J.; Thomerson, J. E.; Collier, G. E.
  3. Molecular Phylogenetics and Evolution. 1999 13(2): 289-301.
  1. 19.   Mitochondrial DNA phylogeny of West African aplocheiloid killifishes (Cyprinodontiformes, Aplocheilidae)
  2. Murphy, W. J.; Nguyen, T. N. P.; Taylor, E. B.; Collier, G. E.
  3. Molecular Phylogenetics and Evolution. 1999 11(3): 343-350.
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