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斑马鱼发育过程中重复的神经纤毛蛋白-1和神经纤毛蛋白-2基因的表达与定位

Expression and mapping of duplicate neuropilin-1 and neuropilin-2 genes in developing zebrafish.

作者信息

Bovenkamp Diane E, Goishi Katsutoshi, Bahary Nathan, Davidson Alan J, Zhou Yi, Becker Thomas, Becker Catherina G, Zon Leonard I, Klagsbrun Michael

机构信息

Vascular Biology Program, Children's Hospital and Harvard Medical School, 300 Longwood Avenue, Boston, Boston, MA 02115, USA.

出版信息

Gene Expr Patterns. 2004 Jul;4(4):361-70. doi: 10.1016/j.modgep.2004.01.014.

Abstract

Previously, we described the isolation and characterization of the first zebrafish neuropilin gene, which we now call nrp1a, and found its protein to be a mediator of vascular endothelial growth factor (VEGF)-dependent angiogenesis [Proc. Natl Acad. Sci. USA 99 (2002) 10470]. Subsequently, we have isolated three other full-length neuropilin genes (nrp1b, nrp2a, and nrp2b) and find that they map to independent zebrafish linkage groups. The nrp1s and nrp2s had differential spatio-temporal gene expression profiles with nrp1a being most prominent in the gut, brain, retina, hypochord, motorneurons, fin bud and mandibular cartilage, nrp1b in the brain, dorsal aorta, melanophores, ventral fin, and heart, nrp2a in the brain, retina, heart, and caudal vessels, and nrp2b in the brain, retina, gut, fin bud, melanophores, heart, and caudal vessels. In addition, we have identified an alternatively-spliced transcript of the nrp1b gene (denoted as nrp1b(s)) which is predicted to encode a soluble form of Nrp1b, containing only the a, b, and c extracellular domains. Transcript expression of nrp1b(s) was different from full-length nrp1b transcript, with prominence in the brain, developing mouth, heart, and fin bud. The NRP1s were tested for VEGF-binding ability. Both 125 kDa Nrp1a and 145 kDa Nrp1b bound 125I-labelled VEGFA165. In summary, two nrp1 and two nrp2 genes, with expression patterns similar to higher vertebrates, have been isolated from zebrafish.

摘要

此前,我们描述了首个斑马鱼神经纤毛蛋白基因的分离与特性鉴定,我们现在将其称为nrp1a,并发现其蛋白是血管内皮生长因子(VEGF)依赖性血管生成的介质[《美国国家科学院院刊》99 (2002) 10470]。随后,我们又分离出另外三个全长神经纤毛蛋白基因(nrp1b、nrp2a和nrp2b),发现它们定位于独立的斑马鱼连锁群。nrp1和nrp2基因具有不同的时空基因表达谱,nrp1a在肠道、脑、视网膜、脊索、运动神经元、鳍芽和下颌软骨中最为突出,nrp1b在脑、背主动脉、黑素细胞、腹鳍和心脏中,nrp2a在脑、视网膜、心脏和尾血管中,nrp2b在脑、视网膜、肠道、鳍芽、黑素细胞、心脏和尾血管中。此外,我们鉴定出nrp1b基因的一个可变剪接转录本(称为nrp1b(s)),预计它编码一种可溶性形式的Nrp1b,仅包含a、b和c细胞外结构域。nrp1b(s)的转录本表达与全长nrp1b转录本不同,在脑、发育中的口、心脏和鳍芽中较为突出。对NRP1进行了VEGF结合能力测试。125 kDa的Nrp1a和145 kDa的Nrp1b都能结合125I标记的VEGFA165。总之,已从斑马鱼中分离出两个nrp1和两个nrp2基因,其表达模式与高等脊椎动物相似。

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