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Showing 1–6 of 6 results
Advanced filters: Author: Kamila B. Muchowska Clear advanced filters
  • The acetyl-CoA pathway is the most ancient CO2 fixation pathway in nature. Here, the authors show that metals selectively reduce CO2 to the intermediates and end-products of the acetyl-CoA pathway, which is consistent with a prebiotic origin of this pathway.

    • Sreejith J. Varma
    • Kamila B. Muchowska
    • Joseph Moran
    Research
    Nature Ecology & Evolution
    Volume: 2, P: 1019-1024
  • Explaining the controlled emergence and growth of molecular complexity at life’s origins is one of prebiotic chemistry’s grand challenges. Now, it has been shown that we can observe how the self-organization of a complex carbohydrate network can be modulated by its environment.

    • Quentin Dherbassy
    • Kamila B. Muchowska
    News & Views
    Nature Chemistry
    Volume: 14, P: 597-599
  • The reverse Krebs cycle is a potential primordial anabolic pathway central to biochemistry. Here, the authors show that more than half of the cycle can be promoted by metals and metal ions without enzymes.

    • Kamila B. Muchowska
    • Sreejith J. Varma
    • Joseph Moran
    Research
    Nature Ecology & Evolution
    Volume: 1, P: 1716-1721
  • A chemical reaction network that overlaps with the biological Krebs and glyoxylate cycles arises from pyruvate and glyoxylate in the presence of iron, suggesting how early metabolic pathways might have arisen from CO2.

    • Kamila B. Muchowska
    • Sreejith J. Varma
    • Joseph Moran
    Research
    Nature
    Volume: 569, P: 104-107