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家蚕血液黑色素化涉及形成一种高分子质量的复合物,该复合物代谢酪氨酸。

Hemolymph melanization in the silkmoth Bombyx mori involves formation of a high molecular mass complex that metabolizes tyrosine.

机构信息

Department of Entomology, University of Georgia, Athens, Georgia 30602.

出版信息

J Biol Chem. 2013 May 17;288(20):14476-14487. doi: 10.1074/jbc.M113.459222. Epub 2013 Apr 3.

Abstract

The phenoloxidase (PO) cascade regulates the melanization of blood (hemolymph) in insects and other arthropods. Most studies indicate that microbial elicitors activate the PO cascade, which results in processing of the zymogen PPO to PO. PO is then thought to oxidize tyrosine and o-diphenols to quinones, which leads to melanin. However, different lines of investigation raise questions as to whether these views are fully correct. Here we report that hemolymph from the silkmoth, Bombyx mori, rapidly melanizes after collection from a wound site. Prior studies indicated that in vitro activated PPO hydroxylates Tyr inefficiently. Measurement of in vivo substrate titers, however, suggested that Tyr was the only PO substrate initially present in B. mori plasma and that it is rapidly metabolized by PO. Fractionation of plasma by gel filtration chromatography followed by bioassays indicated that melanization activity was primarily associated with a high mass complex (~670 kDa) that contained PO. The prophenoloxidase-activating protease inhibitor Egf1.0 blocked formation of this complex and Tyr metabolism, but the addition of phenylthiourea to plasma before fractionation enhanced complex formation and Tyr metabolism. Mass spectrometry analysis indicated that the complex contained PO plus other proteins. Taken together, our results indicate that wounding alone activates the PO cascade in B. mori. They also suggest that complex formation is required for efficient use of Tyr as a substrate.

摘要

酚氧化酶(PO)级联反应调节昆虫和其他节肢动物的血液(血淋巴)黑化。大多数研究表明,微生物激发剂激活 PO 级联反应,导致前体蛋白原 PPO 被加工成 PO。PO 随后被认为将酪氨酸和邻二酚氧化为醌,从而导致黑色素的形成。然而,不同的研究路线提出了这些观点是否完全正确的问题。在这里,我们报告说,从伤口部位采集的家蚕血液在收集后迅速黑化。先前的研究表明,体外激活的 PPO 对 Tyr 的羟基化效率不高。然而,体内底物滴度的测量表明,Tyr 是最初存在于 B. mori 血浆中的唯一 PO 底物,并且它被 PO 迅速代谢。用凝胶过滤色谱法对血浆进行分级分离,然后进行生物测定表明,黑化活性主要与一个高分子量复合物(~670 kDa)相关,该复合物含有 PO。丝氨酸蛋白酶原激活抑制剂 Egf1.0 阻断了该复合物的形成和 Tyr 代谢,但在分级分离前向血浆中添加苯硫脲可增强复合物的形成和 Tyr 代谢。质谱分析表明该复合物含有 PO 加上其他蛋白质。总之,我们的结果表明,单独的创伤就可以在家蚕中激活 PO 级联反应。它们还表明,复合物的形成是有效利用 Tyr 作为底物所必需的。

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