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6 results for “adipokinetic hormone”
Figure 3 from: Gade G, Marco H (2011) The adipokinetic hormone family in Chrysomeloidea: structural and functional considerations. ZooKeys 157: 81-94. https://doi.org/10.3897/zookeys.157.1433
Figure 3 - LC-MS analysis of an extract from the corpora cardiaca of Chrysolina kuesteri. Material from the CC of the chrysomelid beetle, Chrysolina kuesteri was extracted with 80% methanol and analysed by LC-MS. (A) The total ion chromatogram. Full scan positive ESI mass spectra of the peaks shown in (A) with a retention time of 5.02 min (B), 5.23 min (C) and 5.36 min (D).
Figure 4 from: Gade G, Marco H (2011) The adipokinetic hormone family in Chrysomeloidea: structural and functional considerations. ZooKeys 157: 81-94. https://doi.org/10.3897/zookeys.157.1433
Figure 4 - The collision-induced dissociation ESI mass spectrum of an AKH peptide in Chrysolina kuesteri, and its deduced amino acid sequence. The CID MS2 ESI spectrum of the ion MH+ at m/z 987.5 (see Fig. 3D). The inset shows the sequence of the assigned peptide (corresponding to that of Emppe-AKH), together with the theoretical calculated masses for b-type and y-type diagnostic fragment ions which are observed in the MS2 mass spectrum.
Figure 6 from: Gade G, Marco H (2011) The adipokinetic hormone family in Chrysomeloidea: structural and functional considerations. ZooKeys 157: 81-94. https://doi.org/10.3897/zookeys.157.1433
Figure 6 - Putative molecular evolution of adipokinetic peptides in chrysomeloid beetles. A proposed scheme of the molecular evolution of adipokinetic peptides to give rise to the different structures observed in investigated chrysomeloid beetles. The inset shows the genetic code for the respective amino acids involved. Differences in amino acids or code nucleotides are given in bold lettering.
Figure 5 from: Gade G, Marco H (2011) The adipokinetic hormone family in Chrysomeloidea: structural and functional considerations. ZooKeys 157: 81-94. https://doi.org/10.3897/zookeys.157.1433
Figure 5 - The collision-induced dissociation ESI mass spectrum of an additional putative AKH peptide in Chrysolina kuesteri, and its deduced amino acid sequence. The CID MS2 ESI spectrum of the ion MH+ at m/z 1031.5 (see Fig. 3C). The inset shows the sequence of the assigned peptide (corresponding to an intermediate processing form of Peram-CAH-I, i.e. a non-amidated nonapeptide with a Gly residue at position 9). Also shown are the theoretical calculated masses for b-type and y-type diagnostic fragment ions which are observed in the MS2 mass spectrum.
Figure 2 from: Gade G, Marco H (2011) The adipokinetic hormone family in Chrysomeloidea: structural and functional considerations. ZooKeys 157: 81-94. https://doi.org/10.3897/zookeys.157.1433
Figure 2 - The collision-induced dissociation ESI mass spectrum of an AKH peptide in Ceroplesis capensis, and its deduced amino acid sequence. The CID MS2-ESI spectrum of the ion MH+ (m/z 973.5) in Fig. 1B. The inset shows the assigned peptide sequence (corresponding to that of Peram-CAH-I), together with the theoretical calculated masses for b-type and y-type diagnostic fragment ions which are observed in the MS2 mass spectrum.
Figure 1 from: Gade G, Marco H (2011) The adipokinetic hormone family in Chrysomeloidea: structural and functional considerations. ZooKeys 157: 81-94. https://doi.org/10.3897/zookeys.157.1433
Figure 1 - LC-MS analysis of an extract from the corpora cardiaca of Ceroplesis capensis. Material from the CC of the cerambycid beetle, Ceroplesis capensis was extracted with 80% methanol and analysed by LC-MS. A The total ion chromatogram B A full scan positive electrospray ionisation (ESI) mass spectrum of the peak shown in (A) with a retention time of 5.40 min.
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