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276            Part IV:  Molecular and Cellular Hematology                                                                                            Chapter 18:  Hematopoietic Stem Cells, Progenitors, and Cytokines            277




                 246. Legras S, Levesque JP, Charrad R, et al: CD44-mediated adhesiveness of human     277. Nerlov C, Querfurth E, Kulessa H, et al: GATA-1 interacts with the myeloid PU.1 tran-
                  hematopoietic progenitors to hyaluronan is modulated by cytokines. Blood 89:1905,   scription factor and represses PU.1-dependent transcription. Blood 95:2543, 2000.
                  1997.                                                 278. Zhang P, Zhang X, Iwama A, et al: PU.1 inhibits GATA-1 function and erythroid differ-
                 247. Bendall LJ, James A, Zannettino A, et al: A novel CD44 antibody identifies an epitope   entiation by blocking GATA-1 DNA binding. Blood 96:2641, 2000.
                  that is aberrantly expressed on acute lymphoblastic leukaemia cells. Immunol Cell Biol     279. Kondo M, Scherer DC, Miyamoto T, et al: Cell-fate conversion of lymphoid-committed
                  81:311, 2003.                                          progenitors by instructive actions of cytokines. Nature 407:383, 2000.
                 248. Bendall LJ, Kirkness J, Hutchinson A, et al: Antibodies to CD44 enhance adhesion of     280. Metcalf D: Lineage commitment in the progeny of murine hematopoietic preprogenitor
                  normal CD34+ cells and acute myeloblastic but not lymphoblastic leukaemia cells to   cells: Influence of thrombopoietin and interleukin 5. Proc Natl Acad Sci U S A 95:6408,
                  bone marrow stroma. Br J Haematol 98:828, 1997.        1998.
                 249. Pilarski LM, Pruski E, Wizniak J, et al: Potential role for hyaluronan and the hyaluronan     281. Barroga C, Pham H, Kaushansky K: Thrombopoietin regulates c-myb expression by
                  receptor RHAMM in mobilization and trafficking of hematopoietic progenitor cells.   modulating microRNA (miR)150 expression. Exp Hematol 36:1585, 2008.
                  Blood 93:2918, 1999.                                  282. de Laval B, Pawlikowska P, Petit-Cocault L, et al: Thrombopoietin-increased DNA-P-
                 250. Nilsson SK, Haylock DN, Johnston HM, et al: Hyaluronan is synthesized by primitive   K-dependent DNA repair limits hematopoietic stem and progenitor cell mutagenesis in
                  hemopoietic cells, participates in their lodgment at the endosteum following trans-  response to DNA damage. Cell Stem Cell 12:37, 2013.
                  plantation, and is involved in the regulation of their proliferation and differentiation in     283. Zimdahl B, Ito T, Blevins A, et al: Lis1 regulates asymmetric division in hematopoietic
                  vitro. Blood 101:856, 2003.                            stem cells and in leukemia. Nat Genet 46:245, 2014.
                 251. Gupta P, Oegema TR Jr, Brazil JJ, et al: Structurally specific heparan sulfates support     284. Thorsteinsdottir U, Sauvageau G, Humphries RK: Enhanced in vivo regenerative poten-
                  primitive human hematopoiesis by formation of a multimolecular stem cell niche.   tial of HOXB4-transduced hematopoietic stem cells with regulation of their pool size.
                  Blood 92:4641, 1998.                                   Blood 94:2605, 1999.
                 252. Klein G, Beck S, Muller CA: Tenascin is a cytoadhesive extracellular matrix component     285. Iscove NN, Nawa K: Hematopoietic stem cells expand during serial transplantation in
                  of the human hematopoietic microenvironment. J Cell Biol 123:1027, 1993.  vivo without apparent exhaustion. Curr Biol 7:805, 1997.
                 253. Seiffert M, Beck SC, Schermutzki F, et al: Mitogenic and adhesive effects of tenascin-C     286. Wilpshaar J, Bhatia M, Kanhai HH, et al: Engraftment potential of human fetal hemato-
                  on human hematopoietic cells are mediated by various functional domains. Matrix Biol   poietic cells in NOD/SCID mice is not restricted to mitotically quiescent cells. Blood
                  17:47, 1998.                                           100:120, 2002.
                 254. Ohta M, Sakai T, Saga Y, et al: Suppression of hematopoietic activity in tenascin-C-     287. Czechowicz  A,  Kraft  D,  Weissman  IL,  Bhattacharya  D:  Efficient  transplantation  via
                  deficient mice. Blood 91:4074, 1998.                   antibody-based clearance of hematopoietic stem cell niches. Science 318:1296, 2007.
                 255. Siler U, Seiffert M, Puch S, et al: Characterization and functional analysis of laminin     288. Fuchs E, Tumbar T, Guasch G: Socializing with the neighbors: Stem cells and their
                  isoforms in human bone marrow. Blood 96:4194, 2000.    niche. Cell 116:769, 2004.
                 256. Gu Y, Sorokin L, Durbeej M, et al: Characterization of bone marrow laminins and iden-    289. Mezey E, Chandross KJ, Harta G, et al: Turning blood into brain: Cells bearing neu-
                  tification of alpha5-containing laminins as adhesive proteins for multipotent hemato-  ronal antigens generated in vivo from bone marrow. Science 290:1779, 2000.
                  poietic FDCP-Mix cells. Blood 93:2533, 1999.          290. Brazelton TR, Rossi FM, Keshet GI, et al: From marrow to brain: Expression of neu-
                 257. Siler U, Rousselle P, Muller CA, et al: Laminin gamma2 chain as a stromal cell marker   ronal phenotypes in adult mice. Science 290:1775, 2000.
                  of the human bone marrow microenvironment. Br J Haematol 119:212, 2002.    291. Lagasse E, Connors H, Al-Dhalimy M, et al: Purified hematopoietic stem cells can dif-
                 258. Landowski TH, Dratz EA, Starkey JR: Studies of the structure of the metastasis-   ferentiate into hepatocytes in vivo. Nat Med 6:1229, 2000.
                  associated 67 kDa laminin binding protein: Fatty acid acylation and evidence support-    292. Alison MR, Poulsom R, Jeffery R, et al: Hepatocytes from non-hepatic adult stem cells.
                  ing dimerization of the 32 kDa gene product to form the mature protein. Biochemistry   Nature 406:257, 2000.
                  34:11276, 1995.                                       293. Ferrari G, Cusella-De Angelis G, Coletta M, et al: Muscle regeneration by bone mar-
                 259. Ardini E, Tagliabue E, Magnifico A, et al: Co-regulation and physical association of   row-derived myogenic progenitors. Science 279:1528, 1998.
                  the 67-kDa monomeric laminin receptor and the alpha6beta4 integrin. J Biol Chem     294. Orlic D, Kajstura J, Chimenti S, et al: Bone marrow cells regenerate infarcted myocar-
                  272:2342, 1997.                                        dium. Nature 410:701, 2001.
                 260. Gu YC, Kortesmaa J, Tryggvason K, et al: Laminin isoform-specific promotion of adhe-    295. Jiang Y, Jahagirdar BN, Reinhardt RL, et al: Pluripotency of mesenchymal stem cells
                  sion and migration of human bone marrow progenitor cells. Blood 101:877, 2003.  derived from adult marrow. Nature 418:41, 2002.
                 261. Chen J, Carcamo JM, Borquez-Ojeda O, et al: The laminin receptor modulates granulo-    296. Ying QL, Nichols J, Evans EP, et al: Changing potency by spontaneous fusion. Nature
                  cyte-macrophage colony-stimulating factor receptor complex formation and modulates   416:545, 2002.
                  its signaling. Proc Natl Acad Sci U S A 100:14000, 2003.    297. Terada N, Hamazaki T, Oka M, et al: Bone marrow cells adopt the phenotype of other
                 262. Klein G, Muller CA, Tillet E, et al: Collagen type VI in the human bone marrow micro-  cells by spontaneous cell fusion. Nature 416:542, 2002.
                  environment: A strong cytoadhesive component. Blood 86:1740, 1995.    298. Galy A, Travis M, Cen D, et al: Human T, B, natural killer, and dendritic cells arise from
                 263. Ergen AV, Boles NC, Goodell MA: Rantes/Ccl5 influences hematopoietic stem cell sub-  a common bone marrow progenitor cell subset. Immunity 3:459, 1995.
                  types and causes myeloid skewing. Blood 119:2500, 2012.    299. von Freeden-Jeffry U, Vieira P, Lucian LA, et al: Lymphopenia in interleukin (IL)-7
                 264. Metcalf D: Lineage commitment and maturation in hematopoietic cells: The case for   gene-deleted mice identifies IL-7 as a nonredundant cytokine. J Exp Med 181:1519,
                  extrinsic regulation. Blood 92:345;  discussion 352, 1998.  1995.
                 265. Enver T, Heyworth CM, Dexter TM: Do stem cells play dice? Blood 92:348;  discussion     300. Terskikh AV, Miyamoto T, Chang C, et al: Gene expression analysis of purified hemato-
                  352, 1998.                                             poietic stem cells and committed progenitors. Blood 102:94, 2003.
                 266. Souabni A, Cobaleda C, Schebesta M, et al: Pax5 promotes B lymphopoiesis and blocks     301. Ikawa T, Kawamoto H, Fujimoto S, et al: Commitment of common T/natural killer
                  T cell development by repressing Notch1. Immunity 17:781, 2002.  (NK) progenitors to unipotent T and NK progenitors in the murine fetal thymus
                 267. Georgopoulos K, Moore DD, Derfler B: Ikaros, an early lymphoid-specific transcription   revealed by a single progenitor assay. J Exp Med 190:1617, 1999.
                  factor and a putative mediator for T cell commitment. Science 258:808, 1992.    302. Massari ME, Murre C: Helix-loop-helix proteins: Regulators of transcription in eucary-
                 268. Hromas R, Orazi A, Neiman RS, et al: Hematopoietic lineage- and stage-restricted   otic organisms. Mol Cell Biol 20:429, 2000.
                  expression of the ETS oncogene family member PU.1. Blood 82:2998, 1993.    303. Sawada S, Littman DR: A heterodimer of HEB and an E12-related protein interacts with
                 269. Hohaus S, Petrovick MS, Voso MT, et al: PU.1 (Spi-1) and C/EBP alpha regulate expres-  the CD4 enhancer and regulates its activity in T-cell lines. Mol Cell Biol 13:5620, 1993.
                  sion of the granulocyte-macrophage colony-stimulating factor receptor alpha gene. Mol     304. Takeuchi A, Yamasaki S, Takase K, et al: E2A and HEB activate the pre-TCR alpha
                  Cell Biol 15:5830, 1995.                               promoter during immature T cell development. J Immunol 167:2157, 2001.
                 270. Martin DI, Zon LI, Mutter G, et al: Expression of an erythroid transcription factor in     305. Bain G, Romanow WJ, Albers K, et al: Positive and negative regulation of V(D)J recom-
                  megakaryocytic and mast cell lineages. Nature 344:444, 1990.  bination by the E2A proteins. J Exp Med 189:289, 1999.
                 271. Hart A, Melet F, Grossfeld P, et al: Fli-1 is required for murine vascular and megakary-    306. Norton JD: ID helix-loop-helix proteins in cell growth, differentiation and tumorigen-
                  ocytic development and is hemizygously deleted in patients with thrombocytopenia.   esis. J Cell Sci 113 Pt 22:3897, 2000.
                  Immunity 13:167, 2000.                                307. Yokota Y, Mansouri A, Mori S, et al: Development of peripheral lymphoid organs and
                 272. Gombart AF, Kwok SH, Anderson KL, et al: Regulation of neutrophil and eosinophil   natural killer cells depends on the helix-loop-helix inhibitor Id2. Nature 397:702, 1999.
                  secondary granule gene expression by transcription factors C/EBP epsilon and PU.1.     308. Heemskerk MH, Blom B, Nolan G, et al: Inhibition of T cell and promotion of natural
                  Blood 101:3265, 2003.                                  killer cell development by the dominant negative helix loop helix factor Id3. J Exp Med
                 273. Enver T: B-cell commitment: Pax5 is the deciding factor. Curr Biol 9:R933, 1999.  186:1597, 1997.
                 274. Zhang DE, Zhang P, Wang ND, et al: Absence of granulocyte colony-stimulating factor     309. Pui JC, Allman D, Xu L, et al: Notch1 expression in early lymphopoiesis influences B
                  signaling and neutrophil development in CCAAT enhancer binding protein alpha-de-  versus T lineage determination. Immunity 11:299, 1999.
                  ficient mice. Proc Natl Acad Sci U S A 94:569, 1997.    310. Allman D, Karnell FG, Punt JA, et al: Separation of Notch1 promoted lineage commit-
                 275. Cammenga J, Mulloy JC, Berguido FJ, et al: Induction of C/EBPalpha activity alters   ment and expansion/transformation in developing T cells. J Exp Med 194:99, 2001.
                  gene expression and differentiation of human CD34+ cells. Blood 101:2206, 2003.    311. Denis KA, Witte ON: In vitro development of B lymphocytes from long-term cultured
                 276. Fairbairn LJ, Cowling GJ, Reipert BM, et al: Suppression of apoptosis allows differenti-  precursor cells. Proc Natl Acad Sci U S A 83:441, 1986.
                  ation and development of a multipotent hemopoietic cell line in the absence of added     312. Takatsu K: Cytokines involved in B-cell differentiation and their sites of action. Proc Soc
                  growth factors. Cell 74:823, 1993.                     Exp Biol Med 215:121, 1997.








          Kaushansky_chapter 18_p0257-0278.indd   276                                                                   9/19/15   12:06 AM
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