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外周神经系统支持血细胞归巢和在果蝇幼虫中的存活。

The peripheral nervous system supports blood cell homing and survival in the Drosophila larva.

机构信息

Department of Cell and Tissue Biology, University of California-San Francisco, 35 Medical Center Way, San Francisco, CA 94143-0669, USA.

出版信息

Development. 2011 Dec;138(24):5379-91. doi: 10.1242/dev.067322. Epub 2011 Nov 9.

Abstract

Interactions of hematopoietic cells with their microenvironment control blood cell colonization, homing and hematopoiesis. Here, we introduce larval hematopoiesis as the first Drosophila model for hematopoietic colonization and the role of the peripheral nervous system (PNS) as a microenvironment in hematopoiesis. The Drosophila larval hematopoietic system is founded by differentiated hemocytes of the embryo, which colonize segmentally repeated epidermal-muscular pockets and proliferate in these locations. Importantly, we show that these resident hemocytes tightly colocalize with peripheral neurons and we demonstrate that larval hemocytes depend on the PNS as an attractive and trophic microenvironment. atonal (ato) mutant or genetically ablated larvae, which are deficient for subsets of peripheral neurons, show a progressive apoptotic decline in hemocytes and an incomplete resident hemocyte pattern, whereas supernumerary peripheral neurons induced by ectopic expression of the proneural gene scute (sc) misdirect hemocytes to these ectopic locations. This PNS-hematopoietic connection in Drosophila parallels the emerging role of the PNS in hematopoiesis and immune functions in vertebrates, and provides the basis for the systematic genetic dissection of the PNS-hematopoietic axis in the future.

摘要

造血细胞与其微环境的相互作用控制着血细胞的定植、归巢和造血。在这里,我们介绍幼虫造血作为造血定植的第一个果蝇模型,以及外周神经系统(PNS)作为造血微环境的作用。果蝇幼虫造血系统由胚胎分化的血细胞建立,这些血细胞定植在分段重复的表皮-肌肉囊中,并在这些部位增殖。重要的是,我们表明这些常驻血细胞与外周神经元紧密共定位,并且我们证明幼虫血细胞依赖 PNS 作为有吸引力和营养的微环境。atalon(ato)突变体或遗传缺失的幼虫,其外周神经元亚群缺失,会导致血细胞渐进性凋亡减少和常驻血细胞模式不完全,而通过异位表达神经前体细胞基因 scute(sc)诱导的多余外周神经元会将血细胞误导到这些异位部位。果蝇中的这种 PNS-造血连接与 PNS 在脊椎动物中的造血和免疫功能的新兴作用相平行,并为未来系统地遗传剖析 PNS-造血轴奠定了基础。

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本文引用的文献

2
Enhancer-driven membrane markers for analysis of nonautonomous mechanisms reveal neuron-glia interactions in Drosophila.
Proc Natl Acad Sci U S A. 2011 Jun 7;108(23):9673-8. doi: 10.1073/pnas.1106386108. Epub 2011 May 23.
3
Nonautonomous apoptosis is triggered by local cell cycle progression during epithelial replacement in Drosophila.
Mol Cell Biol. 2011 Jun;31(12):2499-512. doi: 10.1128/MCB.01046-10. Epub 2011 Apr 11.
4
The bone marrow stem cell niche grows up: mesenchymal stem cells and macrophages move in.
J Exp Med. 2011 Mar 14;208(3):421-8. doi: 10.1084/jem.20110132.
5
Mesenchymal and haematopoietic stem cells form a unique bone marrow niche.
Nature. 2010 Aug 12;466(7308):829-34. doi: 10.1038/nature09262.
7
Two-color photoactivatable probe for selective tracking of proteins and cells.
J Biol Chem. 2010 Apr 9;285(15):11607-16. doi: 10.1074/jbc.M110.102392. Epub 2010 Feb 5.
8
Development of monocytes, macrophages, and dendritic cells.
Science. 2010 Feb 5;327(5966):656-61. doi: 10.1126/science.1178331.
9
Identification of a myeloid committed progenitor as the cancer-initiating cell in acute promyelocytic leukemia.
Blood. 2009 Dec 24;114(27):5415-25. doi: 10.1182/blood-2008-10-182071. Epub 2009 Oct 1.
10
Hematopoietic cell development in the zebrafish embryo.
Curr Opin Hematol. 2009 Jul;16(4):243-8. doi: 10.1097/MOH.0b013e32832c05e4.

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