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Helixes Collection

"Unraveling the Beauty of Helixes: Exploring the Intricate World of DNA Transcription and Molecular Models" In the realm of science

Background imageHelixes Collection: DNA transcription, molecular model

DNA transcription, molecular model. Secondary structure of the enzyme RNA polymerase II synthesising a mRNA (messenger ribonucleic acid, lilac) strand from a DNA (deoxyribonucleic acid)

Background imageHelixes Collection: DNA molecule, artwork

DNA molecule, artwork
DNA molecule. Computer artwork of a double stranded DNA (deoxyribonucleic acid) molecule amongst clouds of swirling gas. DNA is composed of two strands twisted into a double helix

Background imageHelixes Collection: Parathyroid hormone molecule

Parathyroid hormone molecule. Computer model showing the structure of parathyroid hormone (PTH), or parathormone. Atoms are colour-coded (carbon: dark grey, hydrogen: light grey, oxygen: red)

Background imageHelixes Collection: Circular DNA molecule, artwork F006 / 7088

Circular DNA molecule, artwork F006 / 7088
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageHelixes Collection: Circular DNA molecule, artwork F006 / 7072

Circular DNA molecule, artwork F006 / 7072
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageHelixes Collection: Circular DNA molecule, artwork F006 / 7095

Circular DNA molecule, artwork F006 / 7095
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageHelixes Collection: Circular DNA molecule, artwork F006 / 7086

Circular DNA molecule, artwork F006 / 7086
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageHelixes Collection: Circular DNA molecule, artwork F006 / 7083

Circular DNA molecule, artwork F006 / 7083
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageHelixes Collection: Circular DNA molecule, artwork F006 / 7084

Circular DNA molecule, artwork F006 / 7084
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageHelixes Collection: DNA 6-way junction, artwork C014 / 2585

DNA 6-way junction, artwork C014 / 2585
DNA (deoxyribonucleic acid) cube, computer artwork. The DNA cube is formed from six different DNA strands. Each side of the cube is composed of a single circular DNA strand

Background imageHelixes Collection: Damaged DNA, conceptual artwork C013 / 9999

Damaged DNA, conceptual artwork C013 / 9999
Damaged DNA, conceptual computer artwork

Background imageHelixes Collection: GM plants, conceptual artwork

GM plants, conceptual artwork
Genetically modified plants, conceptual artwork. Plant stems and leaves forming structures that echo DNA (deoxyribonucleic acid) double helices. This could represent genetically modified (GM) plants

Background imageHelixes Collection: DNA molecules, conceptual artwork

DNA molecules, conceptual artwork
DNA molecules, conceptual computer artwork

Background imageHelixes Collection: DNA cube, artwork

DNA cube, artwork
DNA (deoxyribonucleic acid) cube, computer artwork. The DNA cube is formed from six different DNA strands. Each side of the cube is composed of a single circular DNA strand

Background imageHelixes Collection: DNA, conceptual artwork

DNA, conceptual artwork
DNA, conceptual computer artwork

Background imageHelixes Collection: Circular DNA molecule, artwork

Circular DNA molecule, artwork
Circular DNA (deoxyribonucleic acid) molecule, computer artwork. Circular DNA has no ends, but consists of a ring structure

Background imageHelixes Collection: Unzipped DNA molecule, artwork

Unzipped DNA molecule, artwork
Unzipped DNA molecule, conceptual computer artwork



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"Unraveling the Beauty of Helixes: Exploring the Intricate World of DNA Transcription and Molecular Models" In the realm of science, helixes hold a mesmerizing allure as they unlock the secrets of life itself. From DNA transcription to intricate molecular models, these captivating structures have fascinated scientists for generations. The iconic double-helix structure of a DNA molecule stands as an emblematic symbol in scientific discovery. Its elegant twists and turns form the blueprint for all living organisms, showcasing nature's ingenuity in every strand. Artwork depicting circular DNA molecules further amplifies their enchantment. Pieces like F006/7088, F006/7072, F006/7095, F006/7086, F006/7083, and F006/7084 showcase these spiraling wonders with vibrant colors and meticulous details. Each brushstroke captures the essence of genetic information coiled within each loop. Delving deeper into this microscopic world reveals even more intricacies. The DNA 6-way junction depicted in artwork C014/2585 showcases how these helical strands intertwine seamlessly to create complex structures essential for cellular function. However, not all they can perfect; some bear scars that tell stories of damage and repair. Conceptual artwork C013/9999 portrays damaged DNA strands—a reminder that even our genetic code is susceptible to imperfections but possesses remarkable resilience. Beyond its biological significance lies another dimension—genetically modified (GM) plants represented through conceptual artwork. These manipulated helixes represent humanity's quest for innovation in agriculture while raising ethical questions about tampering with nature's design. Helixes transcend mere scientific concepts; they embody artistry intertwined with knowledge. They inspire awe at both their aesthetic beauty and profound implications for understanding life on Earth. So let us marvel at these captivating creations—the helixes that unravel mysteries from within our cells—and appreciate their timeless elegance as they continue to shape our understanding of the world around us.