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Discovering allatostatin type-C receptor specific agonists

Nature Communications, ISSN: 2041-1723, Vol: 15, Issue: 1, Page: 3965
2024
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  • 16
    Captures
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    Mentions
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Metric Options:   Counts1 Year3 Year

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  • Captures
    16
  • Mentions
    1
    • News Mentions
      1
      • News
        1

Most Recent News

Findings in Science Reported from Bogazici University (Discovering allatostatin type-C receptor specific agonists)

2024 MAY 23 (NewsRx) -- By a News Reporter-Staff News Editor at NewsRx Science Daily -- Researchers detail new data in science. According to news

Article Description

Currently, there is no pesticide available for the selective control of the pine processionary moth (Thaumetopoea pityocampa-specific), and conventional methods typically rely on mechanical techniques such as pheromone traps or broad-spectrum larvicidal chemicals. As climate change increases the range and dispersion capacity of crop and forest pests, outbreaks of the pine processionary occur with greater frequency and significantly impact forestry and public health. Our study is carried out to provide a T. pityocampa-specific pesticide targeting the Allatostatin Type-C Receptor (AlstR-C). We use a combination of computational biology methods, a cell-based screening assay, and in vivo toxicity and side effect assays to identify, for the first time, a series of AlstR-C ligands suitable for use as T. pityocampa-specific insecticides. We further demonstrate that the novel AlstR-C targeted agonists are specific to lepidopteran larvae, with no harmful effects on coleopteran larvae or adults. Overall, our study represents an important initial advance toward an insect GPCR-targeted next-generation pesticide design. Our approach may apply to other invertebrate GPCRs involved in vital metabolic pathways. Pesticides safeguard crops against pest infestations and mitigate associated risks. In this work, the authors develop a pesticide targeting AlstR-C of T.pityocampa pests, showing promising results without harming other insects, and advancing the development of GPCR-targeted pesticides for insect control.

Bibliographic Details

Kahveci, Kübra; Düzgün, Mustafa Barbaros; Atis, Abdullah Emre; Yılmaz, Abdullah; Shahraki, Aida; Coskun, Basak; Durdagi, Serdar; Birgul Iyison, Necla

Springer Science and Business Media LLC

Chemistry; Biochemistry, Genetics and Molecular Biology; Physics and Astronomy

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