This is a research article published in the journal Nature, and it discusses the neuroendocrine control of calcium mobilization in fruit flies. The article provides an overview of the current understanding of this process and presents new findings on the molecular mechanisms involved.
The article can be downloaded as a PDF file from the SpringerLink website or accessed online through various libraries and academic databases.
Here is a summary of the article:
**Title:** Neuroendocrine control of calcium mobilization in the fruit fly
**Authors:** N. Okamoto, Y. Mizuno, A. Watanabe, et al.
**Journal:** Nature
**Year:** 2025
**DOI:** 10.1038/s41586-025-09670-z
The article discusses the role of neuroendocrine signals in regulating calcium mobilization in fruit flies (Drosophila melanogaster). Calcium plays a crucial role in various cellular processes, including muscle contraction and neurotransmission.
Using a combination of genetic and biochemical approaches, the authors identify key genes involved in the regulation of calcium mobilization. They demonstrate that these genes interact with each other to form a complex signaling network that regulates calcium release from intracellular stores.
The study provides new insights into the molecular mechanisms underlying calcium mobilization in fruit flies and has implications for our understanding of calcium homeostasis in other organisms, including humans.
**Keywords:** Calcium mobilization, Neuroendocrine signals, Fruit fly, Drosophila melanogaster, Molecular mechanisms.
The article can be downloaded as a PDF file from the SpringerLink website or accessed online through various libraries and academic databases.
Here is a summary of the article:
**Title:** Neuroendocrine control of calcium mobilization in the fruit fly
**Authors:** N. Okamoto, Y. Mizuno, A. Watanabe, et al.
**Journal:** Nature
**Year:** 2025
**DOI:** 10.1038/s41586-025-09670-z
The article discusses the role of neuroendocrine signals in regulating calcium mobilization in fruit flies (Drosophila melanogaster). Calcium plays a crucial role in various cellular processes, including muscle contraction and neurotransmission.
Using a combination of genetic and biochemical approaches, the authors identify key genes involved in the regulation of calcium mobilization. They demonstrate that these genes interact with each other to form a complex signaling network that regulates calcium release from intracellular stores.
The study provides new insights into the molecular mechanisms underlying calcium mobilization in fruit flies and has implications for our understanding of calcium homeostasis in other organisms, including humans.
**Keywords:** Calcium mobilization, Neuroendocrine signals, Fruit fly, Drosophila melanogaster, Molecular mechanisms.