Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Bunkyo-ku, Tokyo, 113-0033, Japan.
Sci Rep. 2020 May 26;10(1):8735. doi: 10.1038/s41598-020-65327-z.
In the honey bee, the mushroom bodies (MBs), a higher-order center in insect brain, comprise interneurons termed Kenyon cells (KCs). We previously reported that Mblk-1, which encodes a transcription factor involved in ecdysteroid-signaling, is expressed preferentially in the large-type KCs (lKCs) in the pupal and adult worker brain and that phosphorylation by the Ras/MAPK pathway enhances the transcriptional activity of Mblk-1 in vitro. In the present study, we performed immunoblotting and immunofluorescence studies using affinity-purified anti-Mblk-1 and anti-phosphorylated Mblk-1 antibodies to analyze the distribution and phosphorylation of Mblk-1 in the brains of pupal and adult workers. Mblk-1 was preferentially expressed in the lKCs in both pupal and adult worker brains. In contrast, some Mblk-1 was phosphorylated almost exclusively in the pupal stages, and phosphorylated Mblk-1 was preferentially expressed in the MB neuroblasts and lKCs in pupal brains. Immunofluorescence studies revealed that both Mblk-1 and phosphorylated Mblk-1 are located in both the cytoplasm and nuclei of the lKC somata in the pupal and adult worker brains. These findings suggest that Mblk-1 plays a role in the lKCs in both pupal and adult stages and that phosphorylated Mblk-1 has pupal stage-specific functions in the MB neuroblasts and lKCs in the honey bee brain.
在蜜蜂中,蘑菇体(MBs)是昆虫大脑中的一个高级中枢,由被称为肯尼恩细胞(KCs)的神经元组成。我们之前报道过,编码参与蜕皮激素信号转导的转录因子的 Mblk-1 在蛹和成年工蜂大脑中的大型 KCs(lKCs)中优先表达,并且 Ras/MAPK 途径的磷酸化增强了 Mblk-1 在体外的转录活性。在本研究中,我们使用亲和纯化的抗 Mblk-1 和抗磷酸化 Mblk-1 抗体进行免疫印迹和免疫荧光研究,以分析 Mblk-1 在蛹和成年工蜂大脑中的分布和磷酸化情况。Mblk-1 在蛹和成年工蜂大脑中的 lKCs 中优先表达。相比之下,一些 Mblk-1 在蛹期几乎仅被磷酸化,磷酸化的 Mblk-1 优先在蛹期的 MB 神经母细胞和 lKCs 中表达。免疫荧光研究表明,Mblk-1 和磷酸化的 Mblk-1 均位于蛹期和成年工蜂大脑中 lKC 体的细胞质和核内。这些发现表明 Mblk-1 在蛹期和成年期的 lKCs 中发挥作用,并且磷酸化的 Mblk-1 在 MB 神经母细胞和 lKCs 中具有蛹期特异性功能。