Illies Michele R, Peeler Margaret T, Dechtiaruk Anna M, Ettensohn Charles A
Department of Biological Sciences, Carnegie Mellon University, 4400 Fifth Avenue, Pittsburgh, PA 15213, USA.
Dev Genes Evol. 2002 Oct;212(9):419-31. doi: 10.1007/s00427-002-0261-0. Epub 2002 Sep 7.
The endoskeleton of the sea urchin larva is a network of calcareous rods secreted by primary mesenchyme cells (PMCs). In this study, we identified seven new biomineralization-related proteins through an analysis of a large database of gene products expressed by PMCs. The proteins include three new spicule matrix proteins (SpSM29, SpSM32, and SpC-lectin), two proteins related to the PMC-specific cell surface glycoprotein MSP130 (MSP130-related-1 and -2), and two novel proteins (SpP16 and SpP19). The genes encoding these proteins are expressed specifically by cells of the large micromere-PMC lineage and are activated zygotically beginning at the blastula stage, prior to PMC ingression. Several of the mRNAs show regulated patterns of expression within the PMC syncytium that correlate with the pattern of skeletal rod growth. This work identifies new proteins that may regulate the process of biomineralization in this tractable model system.
海胆幼虫的内骨骼是由初级间充质细胞(PMC)分泌的钙质棒状网络。在本研究中,我们通过分析PMC表达的大量基因产物数据库,鉴定出七种新的生物矿化相关蛋白。这些蛋白质包括三种新的骨针基质蛋白(SpSM29、SpSM32和SpC-凝集素)、两种与PMC特异性细胞表面糖蛋白MSP130相关的蛋白(MSP130相关-1和-2)以及两种新蛋白(SpP16和SpP19)。编码这些蛋白质的基因由大卵裂球-PMC谱系的细胞特异性表达,并在囊胚期开始合子激活,早于PMC侵入。其中一些mRNA在PMC合胞体内显示出与骨棒生长模式相关的表达调控模式。这项工作鉴定出了可能在这个易于处理的模型系统中调节生物矿化过程的新蛋白质。