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分析人源和鼠源富含造血干/祖细胞的骨髓细胞表面 E-选择糖蛋白配体。

Analysis of glycoprotein E-selectin ligands on human and mouse marrow cells enriched for hematopoietic stem/progenitor cells.

机构信息

Department of Dermatology, Brigham and Women's Hospital, Boston, MA, USA.

出版信息

Blood. 2011 Aug 18;118(7):1774-83. doi: 10.1182/blood-2010-11-320705. Epub 2011 Jun 9.

Abstract

Although well recognized that expression of E-selectin on marrow microvessels mediates osteotropism of hematopoietic stem/progenitor cells (HSPCs), our knowledge regarding the cognate E-selectin ligand(s) on HSPCs is incomplete. Flow cytometry using E-selectin-Ig chimera (E-Ig) shows that human marrow cells enriched for HSPCs (CD34(+) cells) display greater E-selectin binding than those obtained from mouse (lin(-)/Sca-1(+)/c-kit(+) [LSK] cells). To define the relevant glycoprotein E-selectin ligands, lysates from human CD34(+) and KG1a cells and from mouse LSK cells were immunoprecipitated using E-Ig and resolved by Western blot using E-Ig. In both human and mouse cells, E-selectin ligand reactivity was observed at ~ 120- to 130-kDa region, which contained two E-selectin ligands, the P-selectin glycoprotein ligand-1 glycoform "CLA," and CD43. Human, but not mouse, cells displayed a prominent ~ 100-kDa band, exclusively comprising the CD44 glycoform "HCELL." E-Ig reactivity was most prominent on CLA in mouse cells and on HCELL in human cells. To further assess HCELL's contribution to E-selectin adherence, complementary studies were performed to silence (via CD44 siRNA) or enforce its expression (via exoglycosylation). Under physiologic shear conditions, CD44/HCELL-silenced human cells showed striking decreases (> 50%) in E-selectin binding. Conversely, enforced HCELL expression of LSK cells profoundly increased E-selectin adherence, yielding > 3-fold more marrow homing in vivo. These data define the key glycoprotein E-selectin ligands of human and mouse HSPCs, unveiling critical species-intrinsic differences in both the identity and activity of these structures.

摘要

尽管人们已经认识到骨髓微血管上 E-选择素的表达介导了造血干/祖细胞(HSPCs)的成骨倾向性,但我们对 HSPC 上相应的 E-选择素配体的了解并不完整。使用 E-选择素-Ig 嵌合体(E-Ig)的流式细胞术显示,富含 HSPC(CD34+细胞)的人骨髓细胞比从鼠(lin- / Sca-1+ / c-kit+ [LSK] 细胞)获得的细胞显示出更强的 E-选择素结合。为了确定相关糖蛋白 E-选择素配体,使用 E-Ig 从人 CD34+和 KG1a 细胞以及鼠 LSK 细胞的裂解物进行免疫沉淀,并使用 E-Ig 通过 Western blot 进行解析。在人和鼠细胞中,在120-至 130-kDa 区域观察到 E-选择素配体反应性,其包含两种 E-选择素配体,即 P-选择素糖蛋白配体-1 糖型“CLA”和 CD43。人细胞而非鼠细胞显示出一个突出的100-kDa 带,仅包含 CD44 糖型“HCELL”。E-Ig 在鼠细胞中对 CLA 的反应性最强,而在人细胞中对 HCELL 的反应性最强。为了进一步评估 HCELL 对 E-选择素粘附的贡献,进行了互补研究以沉默(通过 CD44 siRNA)或强制表达(通过外糖基化)。在生理剪切条件下,CD44/HCELL 沉默的人细胞显示 E-选择素结合明显减少(>50%)。相反,LSK 细胞中 HCELL 的强制表达显著增加了 E-选择素的粘附,体内骨髓归巢增加了>3 倍。这些数据定义了人和鼠 HSPC 的关键糖蛋白 E-选择素配体,揭示了这些结构在身份和活性方面的关键种内差异。

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