RRC ID 74599
著者 Matsumura Y, To TK, Kunieda T, Kohno H, Kakutani T, Kubo T.
タイトル Mblk-1/E93, an ecdysone related-transcription factor, targets synaptic plasticity-related genes in the honey bee mushroom bodies.
ジャーナル Sci Rep
Abstract Among hymenopteran insects, aculeate species such as bees, ants, and wasps have enlarged and morphologically elaborate mushroom bodies (MBs), a higher-order brain center in the insect, implying their relationship with the advanced behavioral traits of aculeate species. The molecular bases leading to the acquisition of complicated MB functions, however, remains unclear. We previously reported the constitutive and MB-preferential expression of an ecdysone-signaling related transcription factor, Mblk-1/E93, in the honey bee brain. Here, we searched for target genes of Mblk-1 in the worker honey bee MBs using chromatin immunoprecipitation sequence analyses and found that Mblk-1 targets several genes involved in synaptic plasticity, learning, and memory abilities. We also demonstrated that Mblk-1 expression is self-regulated via Mblk-1-binding sites, which are located upstream of Mblk-1. Furthermore, we showed that the number of the Mblk-1-binding motif located upstream of Mblk-1 homologs increased associated with evolution of hymenopteran insects. Our findings suggest that Mblk-1, which has been focused on as a developmental gene transiently induced by ecdysone, has acquired a novel expression pattern to play a role in synaptic plasticity in honey bee MBs, raising a possibility that molecular evolution of Mblk-1 may have partly contributed to the elaboration of MB function in insects.
巻・号 12(1)
ページ 21367
公開日 2022-12-9
DOI 10.1038/s41598-022-23329-z
PII 10.1038/s41598-022-23329-z
PMID 36494426
PMC PMC9734179
MeSH Animals Bees / genetics Brain / metabolism Ecdysone* / metabolism Gene Expression Regulation Mushroom Bodies* / metabolism Neuronal Plasticity / genetics Transcription Factors / metabolism
IF 3.998
リソース情報
ヒト・動物細胞 293T(RCB2202)