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四种相关半翅目昆虫的比较肽组学:速激肽、肌抑制素、促心肽、脂肪动激素、短神经肽F和围脏激肽

Comparative peptidomics of four related hemipteran species: pyrokinins, myosuppressin, corazonin, adipokinetic hormone, sNPF, and periviscerokinins.

作者信息

Predel Reinhard, Russell William K, Russell David H, Lopez Juan, Esquivel Jesus, Nachman Ronald J

机构信息

Areawide Pest Management Research, Southern Plains Agricultural Research Center, USDA, 2881 F/B Road, College Station, TX 77845, USA.

出版信息

Peptides. 2008 Feb;29(2):162-7. doi: 10.1016/j.peptides.2007.08.034. Epub 2007 Dec 14.

DOI:10.1016/j.peptides.2007.08.034
PMID:18201800
Abstract

We performed the first comprehensive peptidomic analysis of neurohormones from hemipteran insects by analyzing the neuropeptides of two major neurohemal organs, namely the corpora cardiaca and abdominal perisympathetic organs. For the experiments we selected four related species of polyphagous stinkbugs (Pentatomidae), three of which are known to attack several important food crops. Peptide sequences were identified by MALDI-TOF mass spectrometry; tandem fragmentation of myosuppressin, sNPF, CAPA-periviscerokinins and pyrokinins revealed novel sequences not known from other insects so far. Most Leu/Ile and Glu/Lys ambiguities could be solved by either specific side-chain fragmentations or on-plate acetylation experiments. The identification of the specific sequences provides a solid basis for forthcoming pharmacological tests to study the neuroendocrine system of these pest insects. However, it should be mentioned in this context that the sequences of the peptides from different stinkbugs are likely not representative of Hemiptera in general. The forthcoming release of the genome from the reduviid Rhodnius prolixus will provide sufficient data to clear this point.

摘要

我们通过分析两个主要神经血器官,即心侧体和腹部交感神经周器官的神经肽,对半翅目昆虫的神经激素进行了首次全面的肽组学分析。在实验中,我们选择了四种多食性椿象(蝽科)的相关物种,其中三种已知会攻击几种重要的粮食作物。肽序列通过基质辅助激光解吸电离飞行时间质谱法(MALDI-TOF)鉴定;肌抑制素、短神经肽F、围脏神经激肽和速激肽的串联碎裂揭示了迄今其他昆虫未知的新序列。大多数亮氨酸/异亮氨酸和谷氨酸/赖氨酸的模糊性可以通过特定的侧链碎裂或板上乙酰化实验来解决。特定序列的鉴定为即将开展的药理学试验提供了坚实基础,以研究这些害虫的神经内分泌系统。然而,在这种情况下应该提到,来自不同椿象的肽序列可能一般不代表半翅目。红蝽 Rhodnius prolixus 的基因组即将发布,将提供足够的数据来澄清这一点。

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