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Published on: September 19, 2018
Bmo-miR-2758 Targets BmFMBP-1 (Lepidoptera: Bombycidae) and Suppresses Its Expression in BmN Cells
Xin Wang1, Shunming Tang1, Fei Song2
1Jiangsu Key Laboratory of Sericultural Biology and Biotechnology, School of Biotechnology, Jiangsu University of Science and Technology, Zhenjiang, China; Key Laboratory of Silkworm and Mulberry Genetic Improvement, Ministry of Agriculture, Sericultural Research Institute, Chinese Academy of Agricultural Sciences, Zhenjiang, China.
Abstract:
MicroRNAs (miRNAs) are an abundant family of endogenous noncoding small RNA molecules. They play crucial roles on regulation of life processes both in plants and animals. Fibroin modulator binding protein-1 (FMBP-1) is a silk gland transcription factor of Bombyx mori, which is considered as a trans-activator of fibroin genes. And bioinformatics prediction showed that at the 3' untranslated region (3' UTR) of BmFMBP-1 there were binding sites for three bmo-miRNAs, bmo-miR-2b*, bmo-miR-305, and bmo-miR-2758, separately. In order to validate whether these bmo-miRNAs involved in the regulation of BmFMBP-1 expression, the expression levels of three bmo-miRNAs and BmFMBP-1 in the middle silk gland (MSG) and posterior silk gland (PSG) during the fourth- and fifth-larval stages of B. mori were measured by semi-quantitative reverse transcription polymerase chain reaction. The results revealed that the expression level of bmo-miR-2758 was the highest in the three, and it expressed higher in the PSG than in the MSG with a similar expression pattern as BmFMBP-1, implying that bmo-miR-2758 may involved in regulation of BmFMBP-1. To validate the regulation function of bmo-miR-2758 on BmFMBP-1, recombinant plasmids pcDNA3 [ie1-egfp-pri-bmo-miR-2758-SV40] and pGL3 [A3-luc-FMBP-1 3' UTR-SV40] were constructed and co-transfected in BmN cells. The dual-luciferase reporter assay system was used for assay of transient expression. The results showed that the expression of the luciferase reporter was significantly decreased when pGL3 [A3-luc-FMBP-1 3' UTR-SV40] co-transfected with pcDNA3 [ie1-egfp-pri-bmo-miR-2758-SV40] (P < .01). Furthermore, when the artificial antisense RNA of bmo-miR-2758 (inhibitor) was added to the above co-transfection, the expression of the luciferase reporter was recovered significantly (P < 0.01). These results suggest that bmo-miR-2758 represses the expression of BmFMBP-1 in vitro.
Insights
This study demonstrates that bmo-miR-2758 directly represses the expression of Fibroin modulator binding protein-1 (FMBP-1) in Bombyx mori. This microRNA plays a key role in regulating FMBP-1 in silk glands.
Area of Science:
- Molecular Biology
- Genetics
- Biochemistry
Background:
- MicroRNAs (miRNAs) are critical regulators of gene expression in animals and plants.
- Fibroin modulator binding protein-1 (FMBP-1) is a Bombyx mori transcription factor essential for fibroin gene activation.
- Bioinformatic analysis predicted binding sites for bmo-miR-2b*, bmo-miR-305, and bmo-miR-2758 on the BmFMBP-1 3' UTR.
Purpose of the Study:
- To investigate the regulatory roles of specific bmo-miRNAs on BmFMBP-1 expression in Bombyx mori.
- To validate the interaction between bmo-miR-2758 and BmFMBP-1.
Main Methods:
- Semi-quantitative reverse transcription polymerase chain reaction (RT-PCR) was used to measure miRNA and BmFMBP-1 expression levels in silk glands.
- Recombinant plasmids were constructed for bmo-miR-2758 and the BmFMBP-1 3' UTR.
- Dual-luciferase reporter assays were performed in BmN cells to assess gene regulation.
Main Results:
- bmo-miR-2758 exhibited the highest expression among the three predicted miRNAs and showed higher levels in the posterior silk gland (PSG) compared to the middle silk gland (MSG).
- The expression pattern of bmo-miR-2758 correlated with BmFMBP-1 expression, suggesting a regulatory relationship.
- Co-transfection with bmo-miR-2758 significantly decreased luciferase reporter expression, which was reversed by an antisense inhibitor of bmo-miR-2758.
Conclusions:
- bmo-miR-2758 directly represses the expression of BmFMBP-1 in vitro.
- This finding highlights the role of bmo-miR-2758 in the post-transcriptional regulation of BmFMBP-1 in Bombyx mori silk glands.

