Page 70 - 2020_07-Haematologica-web
P. 70

X. Yu et al.
Development. 2006;133(24):4913-4923.
9. Soler E, Andrieu-Soler C, de Boer E, et al. The genome-wide dynamics of the binding of Ldb1 complexes during erythroid differ- entiation. Genes Dev. 2010;24(3):277-289.
10. Mylona A, Andrieu-Soler C, Thongjuea S, et al. Genome-wide analysis shows that Ldb1 controls essential hematopoietic genes/pathways in mouse early develop- ment and reveals novel players in hematopoiesis. Blood. 2013;121(15):2902- 2913.
11. Shivdasani RA, Mayer EL, Orkin SH. Absence of blood formation in mice lacking the T-cell leukaemia oncoprotein tal-1/SCL. Nature. 1995;373(6513):432-434.
12. Warren AJ, Colledge WH, Carlton MB, Evans MJ, Smith AJ, Rabbitts TH. The oncogenic cysteine-rich LIM domain pro- tein rbtn2 is essential for erythroid develop- ment. Cell. 1994;78(1):45-57.
13. Fredriksson S, Gullberg M, Jarvius J, et al. Protein detection using proximity-depen- dent DNA ligation assays. Nat Biotechnol. 2002;20(5):473-477.
14. Gutierrez L, Lindeboom F, Ferreira R, et al. A hanging drop culture method to study terminal erythroid differentiation. Exp Hematol. 2005;33(10):1083-1091.
15. Stadhouders R, Thongjuea S, Andrieu-Soler C, et al. Dynamic long-range chromatin interactions control Myb proto-oncogene transcription during erythroid develop- ment. EMBO J. 2012;31(4):986-999.
16. de Boer E, Rodriguez P, Bonte E, et al. Efficient biotinylation and single-step purification of tagged transcription factors in mammalian cells and transgenic mice. Proc Natl Acad Sci U S A. 2003; 100(13):7480-7485.
17. van de Corput MP, de Boer E, Knoch TA, et al. Super-resolution imaging reveals three- dimensional folding dynamics of the beta- globin locus upon gene activation. J Cell Sci. 2012;125(Pt 19):4630-4639.
18. Soderberg O, Gullberg M, Jarvius M, et al. Direct observation of individual endoge- nous protein complexes in situ by proximi-
ty ligation. Nat Methods. 2006;3(12):995-
1000.
19. Grass JA, Boyer ME, Pal S, Wu J, Weiss MJ,
Bresnick EH. GATA-1-dependent transcrip- tional repression of GATA-2 via disruption of positive autoregulation and domain- wide chromatin remodeling. Proc Natl Acad Sci U S A. 2003;100(15):8811-8816.
20. Caputo L, Witzel HR, Kolovos P, et al. The Isl1/Ldb1 complex orchestrates genome- wide chromatin organization to instruct differentiation of multipotent cardiac pro- genitors. Cell Stem Cell. 2015;17(3):287- 299.
21. Socolovsky M, Nam H, Fleming MD, Haase VH, Brugnara C, Lodish HF. Ineffective erythropoiesis in Stat5a(-/-)5b(- /-) mice due to decreased survival of early erythroblasts. Blood. 2001;98(12):3261- 3273.
22. Liu Y, Pop R, Sadegh C, Brugnara C, Haase VH, Socolovsky M. Suppression of Fas- FasL coexpression by erythropoietin medi- ates erythroblast expansion during the ery- thropoietic stress response in vivo. Blood. 2006;108(1):123-133.
23. Brand M, Ranish JA, Kummer NT, et al. Dynamic changes in transcription factor complexes during erythroid differentiation revealed by quantitative proteomics. Nat Struct Mol Biol. 2004;11(1):73-80.
24. Song SH, Hou C, Dean A. A positive role for NLI/Ldb1 in long-range beta-globin locus control region function. Mol Cell. 2007;28(5):810-822.
25. Anguita E, Hughes J, Heyworth C, Blobel GA, Wood WG, Higgs DR. Globin gene activation during haemopoiesis is driven by protein complexes nucleated by GATA-1 and GATA-2. EMBO J. 2004;23(14):2841- 2852.
26. Stadhouders R, Cico A, Stephen T, et al. Control of developmentally primed ery- throid genes by combinatorial co-repressor actions. Nat Commun. 2015;6:8893.
27. Goardon N, Lambert JA, Rodriguez P, et al. ETO2 coordinates cellular proliferation and differentiation during erythropoiesis.
EMBO J. 2006;25(2):357-366.
28. Gutierrez L, Tsukamoto S, Suzuki M, et al.
Ablation of Gata1 in adult mice results in aplastic crisis, revealing its essential role in steady-state and stress erythropoiesis. Blood. 2008;111(8):4375-4385.
29. Li L, Jothi R, Cui K, et al. Nuclear adaptor Ldb1 regulates a transcriptional program essential for the maintenance of hematopoietic stem cells. Nat Immunol. 2011;12(2):129-136.
30. Tsai FY, Keller G, Kuo FC, et al. An early haematopoietic defect in mice lacking the transcription factor GATA-2. Nature. 1994; 371(6494):221-226.
31. Kaneko H, Shimizu R, Yamamoto M. GATA factor switching during erythroid differentiation. Curr Opin Hematol. 2010; 17(3):163-168.
32. Lugus JJ, Chung YS, Mills JC, et al. GATA2 functions at multiple steps in heman- gioblast development and differentiation. Development. 2007;134(2):393-405.
33. Gustafsdottir SM, Schallmeiner E, Fredriksson S, et al. Proximity ligation assays for sensitive and specific protein analyses. Anal Biochem. 2005;345(1):2-9.
34. Alvarez-Silva M, Belo-Diabangouaya P, Salaun J, Dieterlen-Lievre F. Mouse placenta is a major hematopoietic organ. Development. 2003;130(22):5437-5444.
35. McGrath KE, Palis J. Hematopoiesis in the yolk sac: more than meets the eye. Exp Hematol. 2005;33(9):1021-1028.
36. Zatloukal B, Kufferath I, Thueringer A, Landegren U, Zatloukal K, Haybaeck J. Sensitivity and specificity of in situ proxim- ity ligation for protein interaction analysis in a model of steatohepatitis with Mallory- Denk bodies. PLoS One. 2014;9(5):e96690.
37. Zeng Z, Ma J, Xi P, Xu C. Joint tagging assisted fluctuation nanoscopy enables fast high-density super-resolution imaging. J Biophotonics. 2018;11(9):e201800020.
38. Allalou A, Wahlby C. BlobFinder, a tool for fluorescence microscopy image cytometry. Comput Methods Programs Biomed. 2009; 94(1):58-65.
1812
haematologica | 2020; 105(7)


































































































   68   69   70   71   72