4.7 Article

Estrogen-Related Receptor Influences the Hemolymph Glucose Content by Regulating Midgut Trehalase Gene Expression in the Last Instar Larvae of Bombyx mori

Journal

Publisher

MDPI
DOI: 10.3390/ijms22094343

Keywords

estrogen-related receptor; trehalase; hemolymph glucose; transcriptional regulation; silkworm

Funding

  1. Doctoral Fund Project of Southwest University, China [7110300034]
  2. National Natural Science Foundation of China [31772532]

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The study revealed that the silkworm ERR is concentrated in the midgut during the last larval stage, and its expression is closely correlated with trehalase. ERR regulates trehalase transcription and promoter activity by directly binding to the core response elements of the trehalase promoter, impacting trehalose metabolism.
The expression of trehalase in the midgut of insects plays an important role in glucose supply to the hemolymph. Energy metabolism is usually regulated by the estrogen-related receptor (ERR). A decrease in ATP levels is caused by the ERR hindering glycolysis. However, the relationship between trehalose accumulation and ERR expression is still unclear. Here, we found that silkworm ERR (BmERR) is concentrated and BmERR expression is strongly correlated with trehalase in the midgut during the last instar silkworm larval stage. We cloned the promoter of the trehalase from Bombyx mori (BmTreh) and found that the ERR bound directly to the core response elements of the promoter. Cell level interference and the overexpression of ERR can reduce or enhance BmTreh transcription and promoter activity. Overexpressed transgenic BmERR can significantly increase the expression of BmTreh in the midgut of the last instar silkworm larvae, thereby hydrolyzing trehalose into glucose and releasing it into the hemolymph. Additionally, increased hemolymph glucose content reduces silkworm pupa weight but does not affect silk protein production from the silk gland. Our results suggest a novel function for BmERR through its involvement in BmTreh regulation and expand the understanding of ERR functions in insect trehalose metabolism.

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