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沙漠蝗(Schistocerca gregaria)和黄粉虫(Tenebrio molitor)表皮硬化的相关方面。

Aspects of cuticular sclerotization in the locust, Scistocerca gregaria, and the beetle, Tenebrio molitor.

作者信息

Andersen Svend Olav, Roepstorff Peter

机构信息

Institute of Molecular Biology and Physiology, University of Copenhagen, The August Krogh Building, Universitetsparken 13, DK-2100 Copenhagen O, Denmark.

出版信息

Insect Biochem Mol Biol. 2007 Mar;37(3):223-34. doi: 10.1016/j.ibmb.2006.11.006. Epub 2006 Nov 24.

DOI:10.1016/j.ibmb.2006.11.006
PMID:17296497
Abstract

The number of reactive amino groups in cuticular proteins decreases during the early period of insect cuticular sclerotization, presumably due to reaction with oxidation products of N-acetyldopamine (NADA) and N-beta-alanyldopamine (NBAD). We have quantitated the decrease in cuticular N-terminal amino groups and lysine epsilon-amino groups during the first 24h of sclerotization in adult locusts, Schistocerca gregaria, and in larval and adult beetles, Tenebrio molitor, as well as the increase in beta-alanine amino groups in Tenebrio cuticle. The results indicate that nearly all glycine N-terminal groups and a significant part of the epsilon-amino groups from lysine residues are involved in the sclerotization process in both locusts and Tenebrio. A pronounced increase in the amount of free beta-alanine amino groups was observed in cuticle from adult Tenebrio and to a lesser extent also in Tenebrio larval cuticle, but from locust cuticle no beta-alanine was obtained. Hydrolysis of sclerotized cuticles from locusts and Tenebrio by dilute hydrochloric acid released a large number of compounds containing amino acids linked to catecholic moieties. Products have been identified which contain histidine residues linked via their imidazole group to the beta-position of various catechols, such as dopamine, 3,4-dihydroxyphenyl-ethanol (DOPET), and 3,4-dihydroxyphenyl-acetaldehyde (DOPALD), and a ketocatecholic compound has also been identified composed of lysine linked via its epsilon-amino group to the alpha-carbon atom of 3,4-dihydroxyacetophenone. Some of the hydrolysis products have previously been obtained from sclerotized pupal cuticle of Manduca sexta [Xu, R., Huang, X., Hopkins, T.L., Kramer, K.J., 1997. Catecholamine and histidyl protein cross-linked structures in sclerotized insect cuticle. Insect Biochemistry and Molecular Biology 27, 101-108; Kerwin, J.L., Turecek, F., Xu, R., Kramer, K.J., Hopkins, T.L., Gatlin, C.L., Yates, J.R., 1999. Mass spectrometric analysis of catechol-histidine adducts from insect cuticle. Analytical Biochemistry 268, 229-237; Kramer, K.J., Kanost, M.R., Hopkins, T.L., Jiang, H., Zhu, Y.C., Xu, R., Kerwin, J.L., Turecek, F., 2001. Oxidative conjugation of catechols with proteins in insect skeletal systems. Tetrahedron 57, 385-392], but the lysine-dihydroxyacetophenone compound and the histidine-DOPALD adduct have not been reported before. It is suggested that the compounds are derived from NADA and NBAD residues which were incorporated into the cuticle during sclerotization, and that the lysine-dihydroxyacetophenone as well as the DOPET and DOPALD containing adducts are degradation products derived from cross-links between the cuticular proteins, whereas the dopamine-containing adducts are derived from a non-crosslinking reaction product.

摘要

在昆虫表皮硬化的早期阶段,表皮蛋白中反应性氨基的数量会减少,这可能是由于与N-乙酰多巴胺(NADA)和N-β-丙氨酰多巴胺(NBAD)的氧化产物发生了反应。我们已经对成年沙漠蝗(Schistocerca gregaria)以及幼虫和成年黄粉虫(Tenebrio molitor)在硬化的前24小时内表皮N端氨基和赖氨酸ε-氨基的减少情况进行了定量分析,同时也对黄粉虫表皮中β-丙氨酸氨基的增加情况进行了定量分析。结果表明,在蝗虫和黄粉虫中,几乎所有的甘氨酸N端基团以及赖氨酸残基中的大部分ε-氨基都参与了硬化过程。在成年黄粉虫的表皮中观察到游离β-丙氨酸氨基的量有显著增加,在黄粉虫幼虫表皮中也有较小程度的增加,但在蝗虫表皮中未检测到β-丙氨酸。用稀盐酸水解蝗虫和黄粉虫的硬化表皮会释放出大量含有与儿茶酚基团相连的氨基酸的化合物。已经鉴定出的产物中,含有通过咪唑基团与各种儿茶酚(如多巴胺、3,4-二羟基苯乙醇(DOPET)和3,4-二羟基苯乙醛(DOPALD))的β位相连的组氨酸残基,还鉴定出一种酮儿茶酚化合物,它由赖氨酸通过其ε-氨基与3,4-二羟基苯乙酮的α碳原子相连组成。之前在烟草天蛾(Manduca sexta)硬化的蛹表皮中也获得了一些水解产物[Xu, R., Huang, X., Hopkins, T.L., Kramer, K.J., 1997. Catecholamine and histidyl protein cross-linked structures in sclerotized insect cuticle. Insect Biochemistry and Molecular Biology 27, 101 - 108; Kerwin, J.L., Turecek, F., Xu, R., Kramer, K.J., Hopkins, T.L., Gatlin, C.L., Yates, J.R., 1999. Mass spectrometric analysis of catechol - histidine adducts from insect cuticle. Analytical Biochemistry 268, 229 - 237; Kramer, K.J., Kanost, M.R., Hopkins, T.L., Jiang, H., Zhu, Y.C., Xu, R., Kerwin, J.L., Turecek, F., 2001. Oxidative conjugation of catechols with proteins in insect skeletal systems. Tetrahedron 57, 385 - 392],但赖氨酸 - 二羟基苯乙酮化合物和组氨酸 - DOPALD加合物此前尚未见报道。据推测,这些化合物源自硬化过程中掺入表皮的NADA和NBAD残基,赖氨酸 - 二羟基苯乙酮以及含DOPET和DOPALD的加合物是表皮蛋白之间交联的降解产物,而含多巴胺的加合物则源自非交联反应产物。

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