Ras Protein Structure Comparison Print
Framed Prints From ScienceSource
This artwork is available as
Framed Print of Inactive and active Ras proteins
3d computer illustration of the structure differences between an inactive Ras protein (left) with GDP bound and an active Ras protein (right) with GTP bound.
Ras proteins are involved in transmitting signals within cells turning on genes involved in cell growth, differentiation and survival. Mutations in ras genes can lead to permanently activated proteins causing cells to subdivide without control. © Juan Gaertner / Science Source
Artwork Licensed From ScienceSource (2069806)
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Media ID 48005538
Editors' Comments
Unlock the beauty of science with our range of Framed Prints. This 3D computer illustration, "Inactive and active Ras proteins" by Juan Gaertner from ScienceSource, brings to life the intricate differences between an inactive Ras protein bound to GDP and its active counterpart bound to GTP. A perfect addition to any room, this print not only shows the wonders of molecular biology but also adds a touch of sophistication and elegance to your space.
Unlocking the Secrets of Cell Growth. A 3D computer illustration reveals the structural differences between an inactive Ras protein bound to GDP on the left and its active counterpart bound to GTP on the right, highlighting their pivotal role in transmitting signals within cells that promote growth, differentiation, and survival.
This artwork is also available as...
Photo Prints - Unlock the secrets of cellular communication with our prints from ScienceSource. This 3D computer illustration shows the remarkable difference between inactive and active Ras proteins, highlighting the crucial role they play in cell signaling pathways. A representation of science at its finest, perfect for any lab or office space looking to inspire curiosity and wonder.
Greetings Cards - Discover the fascinating world of cell signaling with our Greetings Cards featuring "Inactive and active Ras proteins" by Juan Gaertner from ScienceSource. Learn about the structure differences between inactive (GDP bound) and active (GTP bound) Ras proteins, a crucial aspect of cellular communication. Perfect for science enthusiasts and educators, these cards make great gifts or teaching tools.
Photo Mugs - Elevate your coffee break with Photo Mugs featuring 'Inactive and active Ras proteins' by Juan Gaertner from ScienceSource, showcasing the 3D computer illustration of structural differences between inactive GDP-bound and active GTP-bound Ras proteins. Perfect for science enthusiasts, lab professionals, or anyone fascinated by molecular biology on personalized Photo Mugs.
Poster Prints - Poster Prints featuring 'Inactive and active Ras proteins' by Juan Gaertner from ScienceSource, a 3D computer illustration highlighting the structural differences between inactive GDP-bound and active GTP-bound Ras proteins. Perfect for science enthusiasts, medical professionals, and art lovers alike, our Poster Prints make ideal decorative pieces.
Metal Prints - Metal Prints featuring 'Inactive and active Ras proteins' by Juan Gaertner from ScienceSource, a 3D computer illustration showcasing the structural differences between inactive (GDP bound) and active (GTP bound) Ras proteins. Perfect for science enthusiasts, Metal Prints offer durable, glossy finishes in various styles.
Canvas Prints - Bring home Canvas Prints of 'Inactive and active Ras proteins' by Juan Gaertner from ScienceSource, a 3D computer illustration highlighting the structural differences between inactive GDP-bound and active GTP-bound Ras proteins. Perfect for science enthusiasts, art lovers, or office decor, our Canvas Prints are an addition to any space.
Cushions - Cushions of molecular insight: Explore the structural differences between inactive and active Ras proteins, as illustrated in a 3D computer model by Juan Gaertner from ScienceSource. This visual representation shows the distinct conformations of Ras proteins bound to GDP and GTP, offering valuable information for biomedical research and understanding cellular signaling pathways.
Mouse Mats - Stay on the pulse of innovation with our mouse mats, featuring visuals that bring complex concepts to life. This design shows the intricate differences between inactive and active Ras proteins, a fascinating glimpse into the world of molecular biology. Add a touch of scientific sophistication to your workspace and stay inspired by the wonders of science.
Tote Bags - Elevate your eco-friendly style with Tote Bags featuring a 3D computer illustration of Ras protein structures by Juan Gaertner from ScienceSource. Learn about the differences between inactive and active Ras proteins, highlighting the importance of GTP and GDP binding in cellular processes. Perfect for science enthusiasts, tote bags make great gifts or accessories.
Modern 14"x12" (36x31cm)
Ready to Hang Contemporary Framed Prints adds style, protection, and a polished touch to your space - effortlessly.
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Wood effect frame, card mounted, 10x8 fade resistant photo print. Overall outside dimensions 14x12 inches (36x31cm). Environmentally and ozone friendly, 40mm wide x 15mm Polycore® moulding has the look of real wood, is durable and light and easy to hang. Biodegradable and made with non-chlorinated gases (no toxic fumes) it is efficient; producing 100 tons of polystyrene can save 300 tons of trees! Prints are glazed with lightweight, shatterproof, optical clarity acrylic (providing the same general protection from the environment as glass). The back is stapled hardboard with a sawtooth hanger attached. Note: measurements provided are estimated outer dimensions, which include both the image and the frame. While we aim to keep sizing consistent, exact dimensions may vary slightly due to differences in print size or production requirements, which may result in a variation in the overall size (up to approximately 2.5cm (1"))
These are individually made so all sizes are approximate
Estimated Image Size (if not cropped) is 24.4cm x 18.3cm (9.6" x 7.2")
Estimated Product Size is 36cm x 31cm (14.2" x 12.2")
















