Department of Entomology, Texas A & M University AgriLife Research, College Station, TX, USA.
Insect Mol Biol. 2013 Jun;22(3):306-19. doi: 10.1111/imb.12024. Epub 2013 Mar 24.
We previously demonstrated that Amblyomma americanum tick serine protease inhibitor 6 (AamS6) was secreted into the host during tick feeding and that both its mRNA and protein were ubiquitously and highly expressed during the first 3 days of tick feeding. This study demonstrates that AamS6 is a cross-class inhibitor of both serine- and papain-like cysteine proteases that has apparent antihaemostatic functions. Consistent with the typical inhibitory serpin characteristics, enzyme kinetics analyses revealed that Pichia pastoris-expressed recombinant (r) AamS6 reduced initial velocities of substrate hydrolysis (V₀) and/or maximum enzyme velocity (V(max)) of trypsin, chymotrypsin, elastase, chymase, and papain in a dose-response manner. We speculate that rAamS6 inhibited plasmin in a temporary fashion in that while rAamS6 reduced V₀ of plasmin by up to ∼53%, it had no effect on V(max). Our data also suggest that rAmS6 has minimal or no apparent effect on V₀ or V(max) of thrombin, factor Xa, and kallikrein. We speculate that AamS6 is apparently involved in facilitating blood meal feeding in that various amounts of rAamS6 reduced platelet aggregation by up to ∼47% and delayed plasma clotting time in the recalcification time assay by up to ∼210 s. AamS6 is most likely not involved with the tick's evasion of the host's complement defense mechanism, in that rAamS6 did not interfere with the complement activation pathway. Findings in this study are discussed in the context of expanding our understanding of tick proteins that control bloodmeal feeding and hence tick-borne disease transmission by ticks.
我们之前证明,美洲钝眼蜱丝氨酸蛋白酶抑制剂 6(AamS6)在蜱叮咬时分泌到宿主中,并且其 mRNA 和蛋白质在蜱叮咬的前 3 天内普遍且高度表达。本研究表明,AamS6 是丝氨酸和木瓜蛋白酶样半胱氨酸蛋白酶的交叉类抑制剂,具有明显的抗凝血功能。与典型的抑制丝氨酸蛋白酶特性一致,酶动力学分析表明,毕赤酵母表达的重组(r)AamS6 以剂量反应方式降低了胰蛋白酶、糜蛋白酶、弹性蛋白酶、糜蛋白酶和木瓜蛋白酶的初始底物水解速度(V₀)和/或最大酶速度(V(max))。我们推测 rAamS6 以暂时的方式抑制纤溶酶,因为虽然 rAamS6 将纤溶酶的 V₀ 降低了高达约 53%,但它对 V(max)没有影响。我们的数据还表明,rAmS6 对凝血酶、因子 Xa 和激肽释放酶的 V₀ 或 V(max)几乎没有或没有明显影响。我们推测 AamS6 显然参与促进血液餐的摄取,因为 rAamS6 以高达约 47%的量减少血小板聚集,并且在再钙化时间测定中延迟血浆凝固时间高达约 210 秒。AamS6 不太可能参与蜱逃避宿主补体防御机制,因为 rAamS6 不干扰补体激活途径。本研究中的发现是在扩大我们对控制血液餐摄取的蜱蛋白的理解的背景下讨论的,因此蜱通过蜱传播疾病。