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鸡B细胞在表面碳水化合物结构上经历离散的发育变化,这些变化似乎在胚胎发育过程中指导淋巴细胞迁移方面发挥作用。

Chicken B cells undergo discrete developmental changes in surface carbohydrate structure that appear to play a role in directing lymphocyte migration during embryogenesis.

作者信息

Masteller E L, Larsen R D, Carlson L M, Pickel J M, Nickoloff B, Lowe J, Thompson C B, Lee K P

机构信息

Department of Microbiology and Immunology, University of Michigan, Ann Arbor 48109, USA.

出版信息

Development. 1995 Jun;121(6):1657-67. doi: 10.1242/dev.121.6.1657.

Abstract

The migration of progenitor cells to specific microenvironments is essential for the development of complex organisms. Avian species possess a unique primary lymphoid organ, the bursa of Fabricius, that plays a central role in the development of B cells. B cell progenitors, however, arise outside the bursa of Fabricius and, during embryonic development, must migrate through the vasculature to the bursa of Fabricius. In this report, we demonstrate that these progenitor B cells express the sialyl Lewis x carbohydrate structure previously shown to be a ligand for the selectin family of vascular adhesion receptors. Soon after migration to the bursa of Fabricius, B cell progenitors are induced to undergo a developmental switch and terminate the expression of sialyl Lewis x in a temporal pattern that correlates with the developmental decline in the ability of these cells to home to the bursa of Fabricius upon transplantation. The induction of the developmental switch in the glycosylation pattern of developing B cells requires the bursal environment. In addition, sialyl Lewis x carbohydrate determinants or structurally similar determinants on the surface of immortalized bursal lymphoid stem cells participate in the adherence of these cells to the vascular regions of the bursal microenvironment. These data demonstrate that the carbohydrate structure sialyl Lewis x is developmentally regulated during chicken B cell development and may facilitate the migration of B cell progenitors to the bursal microenvironment by serving as a ligand for a lectin-like adhesion receptor.

摘要

祖细胞迁移到特定的微环境对于复杂生物体的发育至关重要。鸟类拥有一个独特的初级淋巴器官,即法氏囊,它在B细胞的发育中起着核心作用。然而,B细胞祖细胞产生于法氏囊之外,在胚胎发育过程中,必须通过脉管系统迁移到法氏囊。在本报告中,我们证明这些祖B细胞表达唾液酸化路易斯x碳水化合物结构,该结构先前已被证明是血管粘附受体选择素家族的配体。迁移到法氏囊后不久,B细胞祖细胞被诱导发生发育转变,并以一种与这些细胞在移植后归巢到法氏囊的能力的发育性下降相关的时间模式终止唾液酸化路易斯x的表达。发育中B细胞糖基化模式的发育转变的诱导需要法氏囊环境。此外,永生化法氏囊淋巴干细胞表面的唾液酸化路易斯x碳水化合物决定簇或结构相似的决定簇参与这些细胞与法氏囊微环境血管区域的粘附。这些数据表明,碳水化合物结构唾液酸化路易斯x在鸡B细胞发育过程中受到发育调控,并且可能通过作为一种凝集素样粘附受体的配体来促进B细胞祖细胞向法氏囊微环境的迁移。

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