Glycosylation on proteins of the intestine and perimicrovillar membrane of Triatoma (Meccus) pallidipennis, under different feeding conditions
摘要
Trypanosoma cruzi,the causative agent of Chagas disease, interacts with molecules in the midgut of its insect vector to multiply and reach the infective stage. Many studies suggest that the parasite binds to midgut-specific glycans. We identified several glycoproteins expressed in the intestine and perimicrovillar membrane (PMM) of Triatoma (Meccus) pallidipennis under different feeding conditions. In order to assess changes in protein-linked glycans, we performed lectin and immunoblot analyses on glycoprotein extracts from these intestinal tissues using well-characterized lectins, and an antibody, which collectively recognize a wide range of different glycans epitopes. We observed that the amount and composition of proteins and glycoproteins associated with different glycans structures changed over time in the intestines and PMM under different physiological conditions. PMM extracts contained a wide variety of glycoproteins with different sugar residues, including abundant high-mannose and complex sialylated glycans. We propose that these molecules could be involved in the process of parasite-vector interactions.
二级参考文献35
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1Bandyopadhyay, S., Roy, A. and Das, S. (2001 ) Binding of garlic (Allium sativum) leaf lectin to the gut receptors of homopteran pests is correlated to its insecticidal activity. Plant Science, 161, 1025-1033.
-
2Charlesworth, A., Georgieva, T., Gospodov, I., Law, J.H., Dunkov, B.C., Ralcheva, N., BarillasMury, C., Ralchev, K. and Kafatos, F.C. (1997) Isolation and properties of Drosophila melanogaster ferritin-Molecular cloning of a cDNA that encodes one subunit, and localization of the gene on the third chromosome. European Journal of Biochemistry, 247, 470-475.
-
3Du, J.P., Foissac, X., Carss, A., Gatehouse, A.M.R. and Gatehouse, J.A. (2000) Ferritin acts as the most abundant binding protein for snowdrop lectin in the midgut of rice brown planthoppers (Nilaparvata lugens). Insect Biochemistry and Molecular Biology, 30, 297-305.
-
4Dunkov, B.C., Zhang, D.Z., Choumarov, K., Winzerling, J.J. and Law, J.H. (1995) Isolation and characterization of mosquito ferritin and cloning of a cDNA that encodes one subunit. Archives of lnsect Biochemistry and Physiology, 29, 293-307.
-
5Eisemann, C.H., Donaldson, R.A., Pearson, R.D., Cadogan, L.C., Vuocolo, T. and Tellam, R.L. (1994) Larvicidal activity of lectins on Lucilia cuprina-Mechanism of action. Entomologia Experimentalis et Applicata, 72, 1-10.
-
6Fitches, E., Gatehouse, A.M.R. and Gatehouse, J.A. (1997) Effects of snowdrop lectin (GNA) delivered via artificial diet and transgenic plants on the development of tomato moth (Lacanobia oleracea) larvae in laboratory and glasshouse trials. Journal of lnsect Physiology, 43, 727-739.
-
7Fitches, E. and Gatehouse, J.A. (1998) A comparison of the short and long term effects of insecticidal lectins on the activities of soluble and brush border enzymes of tomato moth larvae ( Lacanobia oleracea). Journal of lnsect Physiology, 44, 1213- 1224.
-
8Fitches, E., Woodhouse, S.D., Edwards, J.P. and Gatehouse, J.A. (2001) In vitro and in vivo binding of snowdrop (Galanthus nivalis agglutinin; GNA) and jackbean (Canavalia ensiformis; Con A) lectins within tomato moth (Lacanobia oleracea) larvae; mechanisms of insecticidal action. Journal oflnsect Physiology, 47, 777-787.
-
9Gatehouse, A.M.R., Davison, G.M., Newell, C.A., Merryweather, A., Hamilton, W.D.O., Burgess, E.P.J., Gilbert, R.J.C. and Gatehouse, J.A. (1997) Transgenic potato plants with en-hanced resistance to the tomato moth, Lacanobia oleracea, growth room trials. Molecular Breeding, 3, 49-63.
-
10Gatehouse, A.M.R., Dewey, F.M., Dove, J., Fenton, K.A. and Pusztai, A. (1984) Effect of seed lectins from Phaseolus vulgaris on the development of larvae of Callosobruchus maculatus-Mechanism of toxicity. Journal of the Science of Food and Agriculture, 35,373-380.
-
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-
2翻译来挑战[J].英语角,2019,0(10):38-39.
-
3HAN Yi-juan,ZHONG Zhen-hui,SONG Lin-lin,Olsson Stefan,WANG Zong-hua,LU Guo-dong.Evolutionary analysis of plant jacalin-related lectins(JRLs)family and expression of rice JRLs in response toMagnaporthe oryzae[J].Journal of Integrative Agriculture,2018,17(6):1252-1266. 被引量:3
-
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-
5Roger Salvacion Tan.Glycosylated and non-glycosylated quantum dot-displayed peptides trafficked indiscriminately inside lung cancer cells but discriminately sorted in normal lung cells: An indispensable part in nanoparticle-based intracellular drug delivery[J].Asian Journal of Pharmaceutical Sciences,2018,13(3):197-211.
-
6Ning Wang,Sheng-Tao Li,Tian-Tian Lu,Hideki Nakanishi,Xiao-Dong Gao.Approaches towards the core pentasaccharide in N-linked glycans[J].Chinese Chemical Letters,2018,29(1):35-39. 被引量:1
-
7王亮,郭涛,邹声文,付锦锋,杨霄云,叶南飚.透明PMMA/SMA合金制备及其性能研究[J].塑料工业,2019,47(4):43-46. 被引量:3
-
8Ruixue Liu,Haifeng Li,Juan Cai,Qiang Wei,Xiaonan Han.Lgr5^+ intestinal stem cell sorting and organoid culture[J].Animal Models and Experimental Medicine,2019,2(2):132-135.
-
9Michael T Cairns,Ananya Gupta,Julie A Naughton,Marian Kane,Marguerite Clyne,Lokesh Joshi.Glycosylation-related gene expression in HT29-MTX-E12 cells upon infection by Helicobacter pylori[J].World Journal of Gastroenterology,2017,23(37):6817-6832.
-
10Ramiro Quintanilla-Licea,Isvar Kavim Angeles Hernández,Zinnia Judith Molina-Garza,Lucio GalavizSilva.ANTI-TRYPANOSOMA CRUZI ACTIVITY OF 20 MEDICINAL PLANTS USED IN NORTH EAST MEXICO[J].World Journal of Traditional Chinese Medicine,2015,1(4):101-101.