Farooqui Tahira, Vaessin Harald, Smith Brian H
Department of Entomology, The Ohio State University, 400 Aronoff Laboratory, 318 West 12th Avenue Columbus, OH 43210-1220, USA.
J Insect Physiol. 2004 Aug;50(8):701-13. doi: 10.1016/j.jinsphys.2004.04.014.
Octopamine plays important neuromodulatory roles in the honeybee brain. Accordingly, mRNA from a recently identified honeybee octopamine receptor (AmOA1) is distributed throughout the brain. We have evaluated the occurrence of AmOA1 in the antennal lobe (AL) as well as rest of the brain (RB) by western blotting using an antiserum raised against a peptide selected from AmOA1 sequence. In addition to an expected band (78 kDa in the AL), one additional band (72 kDa) was identified from the AL and four bands (48, 60, 72 and 78 kDa) were observed in the RB. These bands were also recognized with antiserum against a different peptide segment from an octopamine receptor ortholog from the fruitfly (OAMB). Significant sequence identity with the peptide segment used to generate the antiserum was only found with OAMB and its splice variants in fruitfly; it was less conserved in other biogenic amine receptors from honeybee and other insects. Furthermore, western blot analysis performed on brains with dsRNA-treated antennal lobes showed a decrease in the intensity of all four bands. This suggests that AmOA1 antiserum specifically recognizes one or more types of AmOA1 receptors in the honeybee brain. We extend our earlier study of RNAi to quantify the rate of spread of dsRNA from a localized injection to other neuropils.
章鱼胺在蜜蜂大脑中发挥着重要的神经调节作用。相应地,最近鉴定出的蜜蜂章鱼胺受体(AmOA1)的mRNA分布于整个大脑。我们使用针对从AmOA1序列中选取的一种肽段制备的抗血清,通过蛋白质免疫印迹法评估了AmOA1在触角叶(AL)以及大脑其他部分(RB)中的存在情况。除了在触角叶中出现预期的条带(78 kDa)外,在触角叶中还鉴定出一条额外的条带(72 kDa),在大脑其他部分观察到四条条带(48、60、72和78 kDa)。这些条带也能被针对果蝇章鱼胺受体直系同源物(OAMB)不同肽段的抗血清识别。仅在果蝇的OAMB及其剪接变体中发现与用于制备抗血清的肽段具有显著的序列同一性;在蜜蜂和其他昆虫的其他生物胺受体中,其保守性较低。此外,对经dsRNA处理的触角叶的大脑进行蛋白质免疫印迹分析显示,所有四条条带的强度均降低。这表明AmOA1抗血清能特异性识别蜜蜂大脑中一种或多种类型的AmOA1受体。我们扩展了我们早期关于RNA干扰的研究,以量化dsRNA从局部注射到其他神经纤维网的扩散速率。