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Alpha Helices Collection

"Unraveling the Marvels of Alpha Helices: A Nobel Prize-Worthy Conceptual Artwork" In a groundbreaking scientific achievement

Background imageAlpha Helices Collection: Nobel Prize, conceptual artwork

Nobel Prize, conceptual artwork
Nobel Prize. Conceptual artwork representing the Nobel Prizes, leading awards made annually for outstanding cultural and scientific advances

Background imageAlpha Helices Collection: Erythropoietin hormone complex C016 / 4461

Erythropoietin hormone complex C016 / 4461
Erythropoietin hormone complex. Computer model showing the secondary structure of a molecule of the human hormone Erythropoietin (EPO), complexed with an erythropoetin receptor molecule

Background imageAlpha Helices Collection: Erythropoietin hormone complex C016 / 4458

Erythropoietin hormone complex C016 / 4458
Erythropoietin hormone complex. Computer model showing the secondary structure of a molecule of the human hormone Erythropoietin (EPO), complexed with an erythropoetin receptor molecule

Background imageAlpha Helices Collection: Erythropoietin hormone complex C016 / 4451

Erythropoietin hormone complex C016 / 4451
Erythropoietin hormone complex. Computer model showing the secondary structure of a molecule of the human hormone Erythropoietin (EPO), complexed with an erythropoetin receptor molecule

Background imageAlpha Helices Collection: Erythropoietin hormone complex

Erythropoietin hormone complex. Computer model showing the secondary structure of a molecule of the human hormone Erythropoietin (EPO), complexed with an erythropoetin receptor molecule

Background imageAlpha Helices Collection: Pancreatic hormone molecule

Pancreatic hormone molecule. Molecular model showing the secondary structure of the hormone known as pancreatic polypeptide (PP)

Background imageAlpha Helices Collection: Interleukin-12 protein molecule

Interleukin-12 protein molecule. Molecular model of a molecule of the cytokine protein interleukin-12 (IL-12)

Background imageAlpha Helices Collection: Vancomycin antibiotic action

Vancomycin antibiotic action. Computer model showing the secondary structure of the enzyme glycosyltransferase (spirals and ribbons)

Background imageAlpha Helices Collection: NovoSeven clotting protein molecule

NovoSeven clotting protein molecule
NovoSeven clotting protein, molecular model. NovoSeven is the brand name for an artificial version of the natural blood protein Factor VII, or proconvertin

Background imageAlpha Helices Collection: Section of human apolipoprotein A-I

Section of human apolipoprotein A-I, molecular model. This is a fragment of a high-density lipoprotein (HDL) molecule known as an apolipoprotein


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"Unraveling the Marvels of Alpha Helices: A Nobel Prize-Worthy Conceptual Artwork" In a groundbreaking scientific achievement, they have emerged as key players in the intricate world of molecular structures. These elegant and versatile protein formations have garnered immense attention, even earning them a spot on the prestigious Nobel Prize stage. One captivating artwork that showcases their beauty is the Erythropoietin hormone complex C016/4461. With its mesmerizing twists and turns, this masterpiece captures the essence in all their glory. Equally enchanting are its counterparts, Erythropoietin hormone complexes C016/4458 and C016/4451, which further highlight the complexity and sophistication of these structural motifs. As we delve deeper into this microscopic realm, another remarkable creation comes to light – the Pancreatic hormone molecule. Its intertwining alpha helices form an exquisite dance that orchestrates vital processes within our bodies. But it doesn't stop there; alpha helices continue to amaze us with their versatility. The Interleukin-12 protein molecule showcases how these structures play a crucial role in immune responses and communication between cells. Meanwhile, Vancomycin antibiotic action demonstrates how nature's defense mechanism utilizes alpha helices to combat harmful bacteria. The journey through these molecular wonders wouldn't be complete without mentioning NovoSeven clotting protein molecule. This extraordinary creation exemplifies how alpha helices contribute to blood clotting mechanisms – a true marvel of biological engineering. From conceptual artworks to life-saving proteins, alpha helices captivate scientists and artists alike with their elegance and functionality. As we unravel their secrets one by one, we gain a deeper understanding of nature's ingenuity at its finest.

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