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  1. 1.   Zic5 stabilizes Gli3 via a non-transcriptional mechanism during retinal development
  2. Sun,Jian; Yoon,Jaeho; Lee,Moonsup; Lee,Hyun Kyung; Hwang,Rich Yooseok; Daar,Ira
  3. Cell Reports. 2022, Feb 01; 38(5):
  1. 2.   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. 3.   NovelGLI3pathogenicvariants in complex pre- and postaxial polysyndactyly and Greig cephalopolysyndactyly syndrome
  2. Patel,Rashmi; Singh, Subodh Kumar; Bhattacharya, Visweswar; Ali, Akhtar
  3. AMERICAN JOURNAL OF MEDICAL GENETICS PART A. 2020, OCT 15;
  1. 4.   The formation of the thumb requires direct modulation of Gli3 transcription by Hoxa13
  2. Bastida, Maria Félix; Pérez-Gómez, Rocío; Trofka, Anna; Zhu,Jianjian; Rada-Iglesias, Alvaro; Sheth, Rushikesh; Stadler, H Scott; Mackem,Susan; Ros, Marian A
  3. Proceedings of the National Academy of Sciences of the United States of America. 2020, JAN 14; 117(2): 1090-1096.
  1. 5.   Retrospective family study of childhood medulloblastoma
  2. Ng, D.; Stavrou, T.; Liu, L.; Taylor, M. D.; Gold, B.; Dean, M.; Kelley, M. J.; Dubovsky, E. C.; Vezina, G.; Nicholson, H. S.; Byrne, J.; Rutka, J. T.; Hogg, D.; Reaman, G. H.; Goldstein, A. M.
  3. American Journal of Medical Genetics Part A. 2005, MAY 1; 134A(4): 399-403.
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