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Max transcription factor-DNA complex

Max transcription factor-DNA complex


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Max transcription factor-DNA complex

Max transcription factor-DNA complex. Molecular model of the Max transcription factor (purple and red) bound to a strand of DNA (deoxyribonucleic acid, light blue and orange). Transcription factors are proteins that bind to DNA as part of the process of enabling the genetic information in DNA to be used with other molecules and biochemical processes. Max (myc-associated factor X) is part of the basic helix-loop-helix leucine zipper (bHLHZ) transcription factor family

Science Photo Library features Science and Medical images including photos and illustrations

Media ID 9218145

© LAGUNA DESIGN/SCIENCE PHOTO LIBRARY

Binding Biomolecule Bound Complex Genetic Graphic Macromolecule Molecular Biology Molecules Proteins Proteomics Strand Structural Transcribing Transcription Transcription Factor Biochemical Biochemistry Cutouts Deoxyribonucleic Acid Genetics Molecular Model Molecular Structure Protein


EDITORS COMMENTS
This print showcases the Max transcription factor-DNA complex, revealing the intricate molecular interactions that underlie genetic processes. In this striking illustration against a black background, we witness the elegant binding of the Max transcription factor (depicted in shades of purple and red) to a strand of DNA (represented by light blue and orange hues). Transcription factors like Max play a crucial role in enabling the utilization of genetic information stored within DNA. By binding to specific regions on the DNA molecule, they facilitate its interaction with other molecules and biochemical processes. The Max protein belongs to the basic helix-loop-helix leucine zipper (bHLHZ) transcription factor family, which is known for its involvement in regulating gene expression. The detailed structural representation depicted here not only highlights the complexity of this molecular dance but also emphasizes its significance in understanding fundamental biological mechanisms. With cut-out precision and meticulous attention to detail, this artwork offers an insightful glimpse into how proteins interact with DNA at a molecular level. As part of Science Photo Library's extensive collection dedicated to scientific exploration, this image stands as a testament to their commitment towards capturing visually stunning representations from various fields such as biology and genetics. It serves as a reminder that even at microscopic scales, beauty can be found within our cellular machinery.

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