Carolan James C, Fitzroy Carol I J, Ashton Peter D, Douglas Angela E, Wilkinson Thomas L
UCD School of Biology and Environmental Science, University College Dublin, Dublin, Ireland.
Proteomics. 2009 May;9(9):2457-67. doi: 10.1002/pmic.200800692.
Nine proteins secreted in the saliva of the pea aphid Acyrthosiphon pisum were identified by a proteomics approach using GE-LC-MS/MS and LC-MS/MS, with reference to EST and genomic sequence data for A. pisum. Four proteins were identified by their sequences: a homolog of angiotensin-converting enzyme (an M2 metalloprotease), an M1 zinc-dependant metalloprotease, a glucose-methanol-choline (GMC)-oxidoreductase and a homolog to regucalcin (also known as senescence marker protein 30). The other five proteins are not homologous to any previously described sequence and included an abundant salivary protein (represented by ACYPI009881), with a predicted length of 1161 amino acids and high serine, tyrosine and cysteine content. A. pisum feeds on plant phloem sap and the metalloproteases and regucalcin (a putative calcium-binding protein) are predicted determinants of sustained feeding, by inactivation of plant protein defences and inhibition of calcium-mediated occlusion of phloem sieve elements, respectively. The amino acid composition of ACYPI009881 suggests a role in the aphid salivary sheath that protects the aphid mouthparts from plant defences, and the oxidoreductase may promote gelling of the sheath protein or mediate oxidative detoxification of plant allelochemicals. Further salivary proteins are expected to be identified as more sensitive MS technologies are developed.
通过蛋白质组学方法,利用凝胶电泳-液相色谱-串联质谱(GE-LC-MS/MS)和液相色谱-串联质谱(LC-MS/MS),并参考豌豆蚜的EST和基因组序列数据,鉴定出豌豆蚜(Acyrthosiphon pisum)唾液中分泌的9种蛋白质。通过序列鉴定出4种蛋白质:血管紧张素转换酶的同源物(一种M2金属蛋白酶)、一种M1锌依赖性金属蛋白酶、一种葡萄糖-甲醇-胆碱(GMC)氧化还原酶和一种调节钙蛋白的同源物(也称为衰老标记蛋白30)。其他5种蛋白质与任何先前描述的序列均无同源性,其中包括一种丰富的唾液蛋白(由ACYPI009881表示),预测长度为1161个氨基酸,丝氨酸、酪氨酸和半胱氨酸含量较高。豌豆蚜以植物韧皮部汁液为食,金属蛋白酶和调节钙蛋白(一种假定的钙结合蛋白)分别通过使植物蛋白防御失活和抑制钙介导的韧皮部筛管分子堵塞,被预测为持续取食的决定因素。ACYPI009881的氨基酸组成表明其在蚜虫唾液鞘中发挥作用,保护蚜虫口器免受植物防御,氧化还原酶可能促进鞘蛋白的凝胶化或介导植物化感物质的氧化解毒。随着更灵敏的质谱技术的发展,预计会鉴定出更多的唾液蛋白。