Juvenile hormone counteracts the bHLH-PAS transcription factors MET and GCE to prevent caspase-dependent programmed cell death in Drosophila.
2009
Juvenile hormone (JH) regulates many developmental and physiological events
in insects, but its molecular mechanism remains conjectural. Here we report
that genetic ablation of the corpus allatum cells of the Drosophila
ring gland (the JH source) resulted in JH deficiency, pupal lethality and
precocious and enhanced programmed cell death (PCD) of the larval fat body. In
the fat body of the JH-deficient animals, Dronc and Drice ,
two caspase genes that are crucial for PCD induced by the molting hormone
20-hydroxyecdysone (20E), were significantly upregulated. These results
demonstrated that JH antagonizes 20E-induced PCD by restricting the mRNA
levels of Dronc and Drice . The antagonizing effect of JH on
20E-induced PCD in the fat body was further confirmed in the JH-deficient
animals by 20E treatment and RNA interference of the 20E receptor
EcR . Moreover, MET and GCE, the bHLH-PAS transcription factors
involved in JH action, were shown to induce PCD by upregulating Dronc
and Drice . In the Met- and gce -deficient animals,
Dronc and Drice were downregulated, whereas in the
Met -overexpression fat body, Dronc and Drice were
significantly upregulated leading to precocious and enhanced PCD, and this
upregulation could be suppressed by application of the JH agonist methoprene.
For the first time, we demonstrate that JH counteracts MET and GCE to prevent
caspase-dependent PCD in controlling fat body remodeling and larval-pupal
metamorphosis in Drosophila .
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