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阻断美洲钝眼蜱(L.)CD147 受体同源物可防止蜱虫吃饱并阻止蜱虫自发从宿主身上脱落。

Disrupting the Amblyomma americanum (L.) CD147 receptor homolog prevents ticks from feeding to repletion and blocks spontaneous detachment of ticks from their host.

机构信息

Texas A and M University AgriLife Research, Department of Entomology, College Station, TAMU 2475, TX 77843, USA.

出版信息

Insect Biochem Mol Biol. 2010 Jul;40(7):524-32. doi: 10.1016/j.ibmb.2010.04.012. Epub 2010 May 6.

Abstract

The CD147 receptor is a cell-surface glycoprotein in the IgG family that plays pivotal roles in intercellular interactions involved with numerous physiological and pathological processes such as extracellular matrix remodeling. We previously found an Amblyomma americanum (Aam) tick CD147 receptor homolog among genes that were up regulated in response to tick feeding stimuli. This study characterizes an AamCD147 receptor protein that is 72-83% conserved in other tick species and possess characteristic CD147 receptor sequence features: an extracellular (EC) region containing two IgG domains, a transmembrane and the cytoplasmic domains. Likewise, the AamCD147 EC domain folds into secondary structures that are consistent to the human homolog: an amino-terminus beta-barrel that is linked to 2-carboxy-terminus beta-sheets with consensus disulfide bonds conserved in each of the 2 domains. CD147 receptor signaling and regulatory mechanisms are putatively conserved in ticks as revealed by in silico analysis that show presence in the tick genome of CD147 receptor signaling protein homologs, cyclophilin (CyP) A and B, and chaperones that transport it to the plasma membrane, caveolin-1 and CyP60. The AamCD147 receptor has a dichotomous expression pattern of where it is up regulated in response to feeding in the salivary gland but remains constant at the midgut and ovary levels suggesting that it may regulate different functions in different tick organs. We speculate that biological functions of the AamCD147 receptor are essential to tick feeding success as revealed by RNAi-mediated silencing that caused ticks to obtain smaller blood meals, of which approximately 69% were below threshold to trigger spontaneous detachment of ticks from the host. These ticks showed unusual cuticle tenderness and assumed a reddish coloration, a phenomenon that has been attributed to tick midgut damage allowing red blood cells to leak into tick hemolymph. On the basis of the CD147 receptor being linked to tissue growth regulation in mammals, we speculate that silencing of the AamCD147 receptor blocked progression of the tick intermolt growth, a process that precedes tick engorgement and their spontaneous detachment of from the host to end feeding. The results are discussed in context of advances in tick molecular physiology.

摘要

CD147 受体是免疫球蛋白家族中的一种细胞表面糖蛋白,在细胞间相互作用中发挥关键作用,这些相互作用涉及许多生理和病理过程,如细胞外基质重塑。我们之前在对蜱虫喂养刺激有反应的基因中发现了一种美洲钝缘蜱(Aam)蜱 CD147 受体同源物。本研究描述了一种 AamCD147 受体蛋白,它在其他蜱种中保守 72-83%,并具有特征性的 CD147 受体序列特征:一个包含两个 IgG 结构域的细胞外(EC)区域、一个跨膜区和细胞质区。同样,AamCD147 的 EC 结构域折叠成二级结构,与人类同源物一致:氨基末端β-桶与 2 个羧基末端β-片层相连,每个结构域都有保守的共识二硫键。通过计算机分析表明,蜱虫中存在 CD147 受体信号蛋白同源物、亲环素(CyP)A 和 B 以及将其运输到质膜的伴侣,表明 CD147 受体信号和调节机制在蜱虫中是保守的。AamCD147 受体的表达模式呈二态性,即在唾液腺中受到喂养的刺激而上调,但在中肠和卵巢水平保持不变,这表明它可能在不同的蜱虫器官中调节不同的功能。我们推测,AamCD147 受体的生物学功能对蜱虫的成功进食至关重要,这是通过 RNAi 介导的沉默揭示的,这种沉默导致蜱虫获得较小的血液餐,其中约 69%低于触发蜱虫自发从宿主身上脱落的阈值。这些蜱虫表现出异常的角质层柔软和呈现红色,这种现象归因于蜱虫中肠受损,允许红细胞漏入蜱虫的血淋巴。基于 CD147 受体与哺乳动物组织生长调节的联系,我们推测 AamCD147 受体的沉默阻止了蜱虫的间蜕皮生长,这是蜱虫吸血前的一个过程,也是它们自发从宿主身上吸血并结束进食的过程。结果在蜱虫分子生理学进展的背景下进行了讨论。

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