Roberts Brock, Davidson Brad, MacMaster Glen, Lockhart Victoria, Ma Eva, Wallace Shannon Smith, Swalla Billie J
Biology Department and Center for Developmental Biology, 24 Kincaid Hall, University of Washington, P.O. Box 351800, Seattle, WA 98195-1800, USA.
Dev Genes Evol. 2007 Jun;217(6):449-58. doi: 10.1007/s00427-007-0157-0. Epub 2007 May 12.
Ascidian metamorphosis transforms a free-swimming larval chordate ascidian into a sessile adult through a distinct series of metamorphic events. Initially, larvae must become competent to respond to settlement cues. Settlement is then marked by dramatic body plan remodeling and may be accompanied by attachment to the substrate. Subtractive hybridization has revealed that many innate immunity transcripts are upregulated during metamorphosis in the ascidian Boltenia villosa. Several of these genes have well-known roles in the mannose-binding lectin (MBL)-complement pathway of innate immunity, including MBL and MBL-activated serine protease (MASP). MBL recognizes and binds to bacterial pathogens, activates MASP, and triggers the complement cascade. In B. villosa, larvae upregulate BvMASP at the time of competency to initiate settlement. We show that several bacterial strains can induce settlement and that the timing of BvMASP expression in the papillae-associated tissue (PAT) cells is tightly correlated with larval competency. We further demonstrate that serine protease inhibitors used to block the complement response also block metamorphosis, allowing tail resorption, but preventing further morphological changes. Based on these experiments, we propose that the MBL-complement pathway may be important for competency, bacterial substrate detection and body plan remodeling during metamorphosis.
海鞘变态通过一系列独特的变态事件将自由游动的幼体脊索动物海鞘转变为固着的成体。最初,幼体必须具备对附着线索做出反应的能力。附着随后以显著的身体结构重塑为标志,并且可能伴随着与基质的附着。消减杂交显示,在海鞘Boltenia villosa变态过程中,许多先天免疫转录本上调。其中一些基因在先天免疫的甘露糖结合凝集素(MBL)-补体途径中具有众所周知的作用,包括MBL和MBL激活的丝氨酸蛋白酶(MASP)。MBL识别并结合细菌病原体,激活MASP,并触发补体级联反应。在B. villosa中,幼体在具备启动附着能力时上调BvMASP。我们表明,几种细菌菌株可以诱导附着,并且乳头相关组织(PAT)细胞中BvMASP表达的时间与幼体能力紧密相关。我们进一步证明,用于阻断补体反应的丝氨酸蛋白酶抑制剂也会阻断变态,允许尾部吸收,但阻止进一步的形态变化。基于这些实验,我们提出MBL-补体途径可能对变态过程中的能力、细菌底物检测和身体结构重塑很重要。