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A cytochrome P450 responsible for pyrethroid resistance within the housefly, Musca

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Pestic Biochem Physiol (In press); DOI: ten.1016/j.pestbp (2015). 38. Zhu, F., Feng, J. N., Zhang, L. Liu, N. Characterization of two novel cytochrome P450 genes in insecticide-resistant house-flies. Insect Mol Biol 17, 27?7 (2008). 39. Zhu, F. Liu, N. Differential expression of CYP6A5 and CYP6A5v2 in pyrethroidresistant house flies, Musca domestica. Arch Insect Biochem Physiol 67, 107?19 (2008). 40. Liu, N. Zhu, F. House fly cytochrome P450s: their role in insecticide resistance and techniques in the isolation and characterization in Current PubMed ID:https://www.ncbi.nlm.nih.gov/pubmed/23907221 Advances in Entomological Research: From Molecular Biology to Pest Management (eds Liu, T. Kang, L.) Ch 14, 246?57 (Springer-High Education Press, China, 2012).
www.nature.com/scientificreportsOPENReceived: 14 June 2015 Accepted: 19 January 2016 Published: 17 FebruaryIntegrated GlycoProteome Analyzer (I-GPA) for Automated Identification and Quantitation of Site-Specific N-GlycosylationGun Wook Park1,two,*, Jin Young Kim1,*, Heeyoun Hwang1, Ju Yeon Lee1, Young Hee Ahn3, Hyun Kyoung Lee1,two, Eun Sun Ji1,4, Kwang Hoe Kim1,2, Hoi Keun Jeong1,two, Ki Na Yun1,five, YongSam Kim6, Jeong-Heon Ko6, Hyun Joo An2, Jae Han Kim7, Young-Ki Paik8 Jong Shin Yoo1,Human glycoproteins exhibit massive heterogeneity at every single N-glycosite, but handful of research have attempted to globally characterize the site-specific structural characteristics. We've orderMethyl vanillate created Integrated GlycoProteome Analyzer (I-GPA) including mapping method PubMed ID:https://www.ncbi.nlm.nih.gov/pubmed/24950106 for complex N-glycoproteomes, which combines procedures for tandem mass spectrometry using a database search and algorithmic suite. Working with an N-glycopeptide database that we constructed, we designed novel scoring algorithm.A cytochrome P450 accountable for pyrethroid resistance in the housefly, Musca domestica. Insect Mol Biol four, 135?40 (1995). 29. Daborn, P. J. et al. A single P450 allele associated with insecticide resistance in Drosophila. Science 297, 2253?256 (2002). 30. Hoi, K. K. et al. Dissecting the insect metabolic machinery using twin ion mass spectrometry: a single P450 enzyme metabolizing the insecticide imidacloprid in vivo. Anal Chem 86, 3525?532 (2014). 31. Zhu, F., Moural, T. W., Shah, K. Palli, S. Karunker, I. et al. Over-expression of cytochrome P450 CYP6CM1 is connected with higher resistance to imidacloprid inside the B and Q biotypes of Bemisia tabaci (Hemiptera: Aleyrodidae). Insect Biochem Mol Biol 38, 634?44 (2008). 34. Puinean, A. et al. Amplification of a cytochrome P450 gene is related with resistance to neonicotinoid insecticides inside the aphid Myzus persicae. PloS Genet six, e1000999 (2010). 35. Bass, C. et al. Overexpression of a cytochrome P450 monooxygenase, CYP6ER1, is associated with resistance to imidacloprid in the brown planthopper, Nilaparvata lugens. Insect Mol Biol 20, 763?73 (2011). 36. Ding, Z. et al. Biochemical mechanisms of imidacloprid resistance in Nilaparvata lugens: over-expression of cytochrome P450 CYP6AY1. Insect Biochem Mol Biol 43, 1021?027 (2013). 37. Bao, H. et al. The roles of CYP6AY1 and CYP6ER1 in imidacloprid resistance in the brown planthopper: expression levels and detoxification efficiency. Pestic Biochem Physiol (In press); DOI: ten.1016/j.pestbp (2015). 38. Zhu, F., Feng, J. N., Zhang, L. Liu, N. Characterization of two novel cytochrome P450 genes in insecticide-resistant house-flies. Insect Mol Biol 17, 27?7 (2008). 39.
asked 6 days ago by bed42lynx (300 points)

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