Cushion : MyoD muscle protein-DNA complex
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MyoD muscle protein-DNA complex
MyoD muscle protein-DNA complex. Molecular model of the MyoD muscle protein (green and blue) bound to a strand of DNA (deoxyribonucleic acid, orange and green). MyoDs role as a protein is to aid the regulation of muscle differentiation, the process where basic cell types become more specialised, in this case for muscle tissue. MyoD is an example of a basic helix-loop-helix (bHLH) transcription factor
Science Photo Library features Science and Medical images including photos and illustrations
Media ID 9240869
© LAGUNA DESIGN/SCIENCE PHOTO LIBRARY
Binding Biomolecule Bound Complex Genetic Graphic Interacting Macromolecule Molecular Biology Molecules Nucleic Acid Proteomics Regulating Regulation Structural Transcribing Transcription Factor Biochemical Biochemistry Cutouts Deoxyribonucleic Acid Genetics Molecular Model Molecular Structure Protein
Cushion
Refresh your home decor with a beautiful full photo 16"x16" (40x40cm) cushion, complete with cushion pad insert. Printed on both sides and made from 100% polyester with a zipper on the bottom back edge of the cushion cover. Care Instructions: Warm machine wash, do not bleach, do not tumble dry. Warm iron inside out. Do not dry clean.
Accessorise your space with decorative, soft cushions
Estimated Product Size is 40cm x 40cm (15.7" x 15.7")
These are individually made so all sizes are approximate
Artwork printed orientated as per the preview above, with landscape (horizontal) or portrait (vertical) orientation to match the source image.
EDITORS COMMENTS
The captivating print showcases the intricate MyoD muscle protein-DNA complex, a molecular model that sheds light on the fascinating world of biology. Against a striking black background, this illustration vividly portrays the essential role played by MyoD in muscle differentiation. The green and blue hues represent the MyoD muscle protein, while the orange and green strands symbolize DNA - deoxyribonucleic acid. MyoD acts as a crucial transcription factor belonging to the basic helix-loop-helix (bHLH) family. Its primary function is to regulate and facilitate the specialization of basic cell types into specialized muscle tissue. This remarkable biochemical process is vital for proper muscular development and function. Through its binding with DNA, as depicted in this graphic representation, MyoD exerts its influence on genetic regulation by transcribing specific genes responsible for muscle differentiation. This interaction between protein and nucleic acid forms an awe-inspiring molecular structure that underscores the complexity of life at a microscopic level. This visually stunning artwork not only highlights key aspects of molecular biology but also serves as a testament to our ever-expanding knowledge in genetics and proteomics. It reminds us of how far we have come in unraveling nature's secrets at a molecular level while igniting curiosity about what lies ahead in our quest for understanding life's building blocks.
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