AI Article Synopsis

  • Dynein is a crucial motor protein in fly development that moves toward the minus-end of microtubules.
  • A new mutant allele of the fly gene was identified that allows heterozygotes to survive lethal overexpression of the Sona protein, which supports cell survival and promotes Wingless (Wg) signaling.
  • The study found that knockdown of the gene led to significant cell death and disorganized Wg expression, while coexpression with another gene prevented cell death and maintained normal Wg patterns, suggesting that the gene plays a unique role in regulating the survival of Wg-producing cells.

Article Abstract

Dynein is a multi-subunit motor protein that moves toward the minus-end of microtubules, and plays important roles in fly development. We identified , a new mutant allele of the fly () gene whose heterozygotes survive against lethality induced by overexpression of Sol narae (Sona). Sona is a secreted metalloprotease that positively regulates Wingless (Wg) signaling, and promotes cell survival and proliferation. Knockdown of in fly wings induced extensive cell death accompanied by widespread and disorganized expression of Wg. The disrupted pattern of the Wg protein was due to cell death of the Wg-producing cells at the DV midline and overproliferation of the Wg-producing cells at the hinge in disorganized ways. Coexpression of and resulted in no cell death and normal pattern of Wg, demonstrating that cell death is responsible for all phenotypes induced by expression. The effect of Dhc64C on Wg-producing cells was unique among components of Dynein and other microtubule motors. We propose that Dhc64C differentially regulates survival of Wg-producing cells, which is essential for maintaining normal expression pattern of Wg for wing development.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8544498PMC
http://dx.doi.org/10.3390/jdb9040043DOI Listing

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