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OSTM1骨缺损揭示了一种细胞间造血串扰。

OSTM1 bone defect reveals an intercellular hematopoietic crosstalk.

作者信息

Pata Monica, Héraud Céline, Vacher Jean

机构信息

Department of Cellular Interactions and Development, Faculté de Médecine de l'Université de Montréal, Québec H2W 1R7, Canada.

出版信息

J Biol Chem. 2008 Nov 7;283(45):30522-30. doi: 10.1074/jbc.M805242200. Epub 2008 Sep 11.

Abstract

The most severe form of bone autosomal recessive osteopetrosis both in humans and in the gray-lethal (gl/gl) mouse is caused by mutations in the Ostm1 gene. Although osteopetrosis is usually associated with a defect in the hematopoietic-derived osteoclast cells, this study determined that Ostm1 is expressed in many hematopoietic cells of the myeloid and lymphoid B- and T-lineages. Hematopoiesis in gl/gl mice is characterized by a marked expansion of the osteoclast lineage but also by deregulation of the lymphoid lineages with a decrease in B-lymphoid cell populations and altered distribution in T-lymphoid double and single CD4 CD8-positive cells. In committed gl/gl osteoclasts, specific Ostm1 transgene targeting showed a requirement of additional factors and/or cells for normal osteoclast function, and importantly, defined the gl osteopetrotic defect as non-cell autonomous. By contrast, gl/gl osteoclast, B- and T-lymphoid lineage phenotypes were rescued when Ostm1 is expressed under PU.1 regulation from a bacterial artificial chromosome transgene, which established an essential role for Ostm1 in hematopoietic cells in addition to osteoclasts. Together these experiments are the first to demonstrate the existence of hematopoietic crosstalk for the production of functional and active osteoclasts.

摘要

人类和灰色致死(gl/gl)小鼠中最严重的骨常染色体隐性骨硬化症是由Ostm1基因突变引起的。尽管骨硬化症通常与造血来源的破骨细胞缺陷有关,但本研究确定Ostm1在髓系和淋巴系B细胞和T细胞系的许多造血细胞中表达。gl/gl小鼠的造血特征是破骨细胞系显著扩增,但也包括淋巴系失调,B淋巴细胞群体减少,T淋巴细胞双阳性和单阳性CD4 CD8细胞分布改变。在定型的gl/gl破骨细胞中,特定的Ostm1转基因靶向显示正常破骨细胞功能需要额外的因子和/或细胞,重要的是,将gl骨硬化症缺陷定义为非细胞自主性的。相比之下,当Ostm1在细菌人工染色体转基因的PU.1调控下表达时,gl/gl破骨细胞、B淋巴细胞和T淋巴细胞系的表型得到挽救,这确立了Ostm1除破骨细胞外,在造血细胞中的重要作用。这些实验共同首次证明了造血细胞间存在串扰以产生功能性和活性破骨细胞。

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