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首页> 外文期刊>The Journal of Experimental Biology >Conservation of capa peptide-induced nitric oxide signalling in Diptera
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Conservation of capa peptide-induced nitric oxide signalling in Diptera

机译:双歧杆菌中Capa肽诱导的一氧化氮信号转导的保守性

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In D. melanogaster Malpighian (renal) tubules, the capa peptides stimulate production of nitric oxide (NO) and guanosine 3', 5'-cyclic monophosphate (cGMP), resulting in increased fluid transport. The roles of NO synthase (NOS), NO and cGMP in capa peptide signalling were tested in several other insect species of medical relevance within the Diptera (Aedes aegypti, Anopheles stephensi and Glossina morsitans) and in one orthopteran out-group, Schistocerca gregaria. NOS immunoreactivity was detectable by immunocytochemistry in tubules from all species studied. D. melanogaster, A. aegypti and A. stephensi express NOS in only principal cells, whereas G. morsitans and S. gregaria show more general NOS expression in the tubule. Measurement of associated NOS activity (NADPH diaphorase) shows that both D. melanogaster capa-1 and the two capa peptides encoded in the A. gambiae genome, QGLVPFPRVamide (AngCAPA-QGL) and GPTVGLFAFPRVamide (AngCAPA-GPT), all stimulate NOS activity in D. melanogaster, A. aegypti, A. stephensi and G. morsitans tubules but not in S. gregaria. Furthermore, capa-stimulated NOS activity in all the Diptera was inhibited by the NOS inhibitor l-NAME. All capa peptides stimulate an increase in cGMP content across the dipteran species, but not in the orthopteran S. gregaria. Similarly, all capa peptides tested stimulate fluid secretion in D. melanogaster, A. aegypti, A. stephensi and G. morsitans tubules but are either without effect or are inhibitory on S. gregaria. Consistent with these results, the Drosophila capa receptor was shown to be expressed in Drosophila tubules, and its closest Anopheles homologue was shown to be expressed in Anopheles tubules. Thus, we provide the first demonstration of physiological roles for two putative A. gambiae neuropeptides. We also demonstrate neuropeptide modulation of fluid secretion in tsetse tubule for the first time. Finally, we show the generality of capa peptide action, to stimulate NO/cGMP signalling and increase fluid transport, across the Diptera, but not in the more primitive Orthoptera.
机译:在D. melanogaster Malpighian(肾)小管中,capa肽刺激一氧化氮(NO)和鸟苷3',5'-环一磷酸(cGMP)的产生,从而增加了液体的运输。 NO合成酶(NOS),NO和cGMP在cap肽信号传导中的作用已在双翅目(Aedes aegypti,Anopheles stephensi和Glossina morsitans)和一个直翅类外群(Schistocerca gregaria)内的其他几种与医学相关的昆虫物种中进行了测试。通过免疫细胞化学可以在所有研究物种的小管中检测到NOS免疫反应性。 D. melanogaster,A。ayypti和A. stephensi仅在主要细胞中表达NOS,而G. morsitans和S. gregaria在小管中显示更一般的NOS表达。对相关NOS活性(NADPH心肌黄递酶)的测量表明,黑腹果蝇D. melaogaster capa-1和冈比亚土壤杆菌基因组中编码的两个capa肽QGLVPFPRVamide(AngCAPA-QGL)和GPTVGLFAFPRVamide(AngCAPA-GPT)均刺激了NOS活性。 D. melanogaster,A。ayypti,A。stephensi和G. morsitans小管,但不在S. gregaria中。此外,NOS抑制剂1-NAME抑制了所有双翅目中capa刺激的NOS活性。所有的capa肽都刺激整个二倍体物种的cGMP含量增加,但不影响直翅目链球菌中的cGMP含量。同样,所有测试的Capa肽刺激黑腹果蝇,埃及伊蚊,Stephensi和G. morsitans小管中的液体分泌,但它们均无作用或对格氏酵母有抑制作用。与这些结果一致,果蝇capa受体显示在果蝇小管中表达,其最接近的按蚊同源物显示在按蚊小管中表达。因此,我们提供了两个假定的冈比亚拟南芥神经肽的生理作用的第一个证明。我们还首次证明了采采蝇小管中液体分泌的神经肽调节。最后,我们展示了Capa肽作用的一般性,它可以刺激双歧双歧杆菌(NO)刺激NO / cGMP信号传导并增加液体的运输,但在较原始的直翅目动物中则没有。

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