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  1. 1.   Genetic basis for an evolutionary shift from ancestral preaxial to postaxial limb polarity in non-urodele vertebrates
  2. Trofka, Anna; Huang,Bau-Lin; Zhu,Jianjian; Heinz,Will; Magidson,Valentin; Shibata, Yuki; Shi, Yun-Bo; Tarchini, Basile; Stadler, H Scott; Kabangu, Mirindi; Al Haj Baddar, Nour W; Voss, S Randal; Mackem,Susan
  3. Current biology : CB. 2021, Nov 22; 31(22): 4923-4934.e5.
  1. 2.   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. 3.   Identity and Fate of Tbx4-Expressing Cells Reveal Developmental Cell Fate Decisions in the Allantois, Limb, and External Genitalia
  2. Naiche, L. A.; Arora, R.; Kania, A.; Lewandoski, M.; Papaioannou, V. E.
  3. Developmental Dynamics. 2011, Oct; 240(10): 2290-2300.
  1. 5.   Limb Cells Don't Tell Time
  2. Mackem, S.; Lewandoski, M.
  3. Science. 2011, May; 332(6033): 1038-1039.
  1. 6.   The microRNA-processing enzyme Dicer is dispensable for somite segmentation but essential for limb bud positioning
  2. Zhang, Z.; O'Rourke, J. R.; McManus, M. T.; Lewandoski, M.; Harfe, B. D.; Sun, X.
  3. Developmental Biology. 2011, Mar; 351(2): 254-265.
  1. 7.   LIM homeobox transcription factors integrate signaling events that control three-dimensional limb patterning and growth
  2. Tzchori, I.; Day, T. F.; Carolan, P. J.; Zhao, Y.; Wassif, C. A.; Li, L.; Lewandoski, M.; Gorivodsky, M.; Love, P. E.; Porter, F. D.; Westphal, H.; Yang, Y.
  3. Development. 2009 136(8): 1375-1385.
  1. 8.   BMP signals control limb bud interdigital programmed cell death by regulating FGF signaling
  2. Pajni-Underwood, S.; Wilson, C. P.; Elder, C.; Mishina, Y.; Lewandoski, M.
  3. Development. 2007, Jun; 134(12): 2359-2368.
  1. 9.   FGFR1 function at the earliest stages of mouse limb development plays an indispensable role in subsequent autopod morphogenesis
  2. Li, C. L.; Xu, X. L.; Nelson, D. K.; Williams, T.; Kuehn, M. R.; Deng, C. X.
  3. Development. 2005, NOV; 132(21): 4755-4764.
  1. 10.   Inactivation of FGF8 in early mesoderm reveals an essential role in kidney development
  2. Perantoni, A. O.; Timofeeva, O.; Naillat, F.; Richman, C.; Pajni-Underwood, S.; Wilson, C.; Vainio, S.; Dove, L. F.; Lewandoski, M.
  3. Development. 2005, SEP; 132(17): 3859-3871.
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