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Double Helix Collection (page 6)

"The Double Helix: Unraveling the Blueprint of Life" In this captivating journey

Background imageDouble Helix Collection: TATA box-binding protein complex C017 / 7088

TATA box-binding protein complex C017 / 7088
TATA box-binding protein complex. Molecular model showing a TATA box-binding protein (TBP, green) complexed with a strand of DNA (deoxyribonucleic acid, yellow) and transcription factor IIB

Background imageDouble Helix Collection: Genetics research, conceptual artwork C017 / 7410

Genetics research, conceptual artwork C017 / 7410
Genetics research. conceptual computer artwork

Background imageDouble Helix Collection: DNA molecule, artwork C017 / 0615

DNA molecule, artwork C017 / 0615
DNA molecule. Computer artwork looking along the interior of a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageDouble Helix Collection: DNA molecule, artwork C017 / 0617

DNA molecule, artwork C017 / 0617
DNA molecule. Computer artwork looking along the interior of a double stranded DNA (deoxyribonucleic acid) molecule. DNA is composed of two strands twisted into a double helix

Background imageDouble Helix Collection: TATA box-binding protein complex C017 / 7084

TATA box-binding protein complex C017 / 7084
TATA box-binding protein complex. Molecular model showing a TATA box-binding protein (TBP, green) complexed with a strand of DNA (deoxyribonucleic acid, yellow) and transcription factor IIB

Background imageDouble Helix Collection: Genetics research, conceptual artwork C017 / 7408

Genetics research, conceptual artwork C017 / 7408
Genetics research. conceptual computer artwork

Background imageDouble Helix Collection: Genetics research, conceptual artwork C017 / 7411

Genetics research, conceptual artwork C017 / 7411
Genetics research. conceptual computer artwork

Background imageDouble Helix Collection: DNA molecule, artwork F007 / 4200

DNA molecule, artwork F007 / 4200
DNA molecule, computer artwork

Background imageDouble Helix Collection: DNA molecule, artwork F007 / 4196

DNA molecule, artwork F007 / 4196
DNA molecule, computer artwork

Background imageDouble Helix Collection: DNA molecule, artwork F007 / 4203

DNA molecule, artwork F007 / 4203
DNA molecule, computer artwork

Background imageDouble Helix Collection: DNA molecule, artwork F007 / 4207

DNA molecule, artwork F007 / 4207
DNA molecule, computer artwork

Background imageDouble Helix 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 imageDouble Helix Collection: Tablet computer showing a DNA molecule F006 / 6310

Tablet computer showing a DNA molecule F006 / 6310
Tablet computer showing artwork of a DNA molecule

Background imageDouble Helix Collection: Circular DNA molecule, space artwork F006 / 7089

Circular DNA molecule, space artwork F006 / 7089
Circular DNA (deoxyribonucleic acid) molecule, computer artwork and space nebula artwork, depicting origin of life

Background imageDouble Helix 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 imageDouble Helix Collection: DNA molecule, artwork F006 / 3715

DNA molecule, artwork F006 / 3715
DNA molecule, computer artwork

Background imageDouble Helix Collection: DNA molecule, artwork F006 / 7147

DNA molecule, artwork F006 / 7147
DNA (deoxyribonucleic acid) molecule, computer artwork

Background imageDouble Helix 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 imageDouble Helix 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 imageDouble Helix Collection: DNA molecule, artwork F006 / 3711

DNA molecule, artwork F006 / 3711
DNA molecule, computer artwork

Background imageDouble Helix 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 imageDouble Helix Collection: Circular DNA molecule, space artwork F006 / 7077

Circular DNA molecule, space artwork F006 / 7077
Circular DNA (deoxyribonucleic acid) molecule, computer artwork and space nebula artwork, depicting origin of life

Background imageDouble Helix 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 imageDouble Helix Collection: Circular DNA molecule, space artwork F006 / 7087

Circular DNA molecule, space artwork F006 / 7087
Circular DNA (deoxyribonucleic acid) molecule, computer artwork and space nebula artwork, depicting origin of life

Background imageDouble Helix Collection: DNA molecule, artwork F006 / 7127

DNA molecule, artwork F006 / 7127
DNA (deoxyribonucleic acid) molecule, computer artwork

Background imageDouble Helix Collection: DNA molecule F007 / 6423

DNA molecule F007 / 6423
DNA (deoxyribonucleic acid) molecule

Background imageDouble Helix Collection: Genetic research, conceptual artwork F007 / 6404

Genetic research, conceptual artwork F007 / 6404
Genetic research, conceptual computer artwork

Background imageDouble Helix Collection: DNA nucleosome, molecular model F007 / 9883

DNA nucleosome, molecular model F007 / 9883
DNA nucleosome. Molecular model of a nucleosome, the fundamental repeating unit used to package DNA (deoxyribonucleic acid) inside cell nuclei

Background imageDouble Helix Collection: DNA nucleosome, molecular model F007 / 9888

DNA nucleosome, molecular model F007 / 9888
DNA nucleosome. Molecular model of a nucleosome, the fundamental repeating unit used to package DNA (deoxyribonucleic acid) inside cell nuclei

Background imageDouble Helix Collection: DNA molecule, artwork F008 / 3371

DNA molecule, artwork F008 / 3371
DNA molecule and chromosome, artwork

Background imageDouble Helix Collection: Human chromosome

Human chromosome. Coloured scanning electron micrograph (SEM) of a human chromosome. Chromosomes occur in the nucleus of every cell in the body

Background imageDouble Helix Collection: DNA molecules, artwork F008 / 3372

DNA molecules, artwork F008 / 3372
DNA molecules, artwork

Background imageDouble Helix Collection: DNA molecule, artwork F008 / 2034

DNA molecule, artwork F008 / 2034
DNA molecule, computer artwork

Background imageDouble Helix Collection: DNA molecule, artwork F008 / 3370

DNA molecule, artwork F008 / 3370
DNA molecule, artwork

Background imageDouble Helix Collection: DNA molecules, artwork F008 / 3264

DNA molecules, artwork F008 / 3264
Deoxyribonucleic acid (DNA) molecules, computer artwork

Background imageDouble Helix Collection: Human genome, conceptual artwork F008 / 3292

Human genome, conceptual artwork F008 / 3292
Human genome, conceptual computer artwork

Background imageDouble Helix Collection: DNA molecule, artwork F008 / 2036

DNA molecule, artwork F008 / 2036
DNA molecule, computer artwork

Background imageDouble Helix Collection: DNA molecule F008 / 3657

DNA molecule F008 / 3657
DNA molecule. Computer artwork of the structure of deoxyribonucleic acid (DNA) with a double helix in the background. DNA is composed of two strands twisted into a double helix

Background imageDouble Helix Collection: Chromosomes, SEM

Chromosomes, SEM
Chromosomes. Coloured scanning electron micrograph (SEM) of two chromosomes. The SEM is overlaid on a DNA autoradiogram background

Background imageDouble Helix Collection: DNA molecules, artwork F008 / 3266

DNA molecules, artwork F008 / 3266
Deoxyribonucleic acid (DNA) molecules, computer artwork

Background imageDouble Helix Collection: DNA molecules, artwork F008 / 3265

DNA molecules, artwork F008 / 3265
Deoxyribonucleic acid (DNA) molecules, computer artwork

Background imageDouble Helix Collection: DNA molecule, artwork F008 / 2040

DNA molecule, artwork F008 / 2040
DNA molecule, computer artwork

Background imageDouble Helix Collection: Human genome, conceptual artwork F008 / 3302

Human genome, conceptual artwork F008 / 3302
Human genome, conceptual computer artwork

Background imageDouble Helix Collection: MicroRNA precursor molecule

MicroRNA precursor molecule
MicroRNA (miRNA) precursor, molecular model. This miRNA (micro ribonucleic acid) precursor will be further processed into an even shorter mature miRNA oligonucleotide that can regulate the expression

Background imageDouble Helix Collection: MicroRNA molecule

MicroRNA molecule
MicroRNA (miRNA), molecular model. This miRNA (micro ribonucleic acid) oligonucleotide regulates the expression of a target gene

Background imageDouble Helix Collection: Human cloning, conceptual artwork F005 / 0397

Human cloning, conceptual artwork F005 / 0397
Human cloning, conceptual computer artwork



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"The Double Helix: Unraveling the Blueprint of Life" In this captivating journey, we delve into the intricate world of the double helix - a mesmerizing DNA molecule that holds the secrets to our existence. As we peer at a computer screen displaying a human genetic sequence, we witness nature's most remarkable code come alive. A double-stranded RNA molecule dances across another computer screen, showcasing its vital role in gene expression and regulation. Computer artwork depicting a beta DNA segment and spheres reminds us of the complex structure that underlies life itself. With awe-inspiring precision, a DNA molecule is meticulously crafted in a computer model, revealing its elegant beauty. A nucleosome molecule stands as an architectural marvel, protecting and organizing our genetic material within cells. An abstract image captures the essence of this extraordinary molecule - its twists and turns hinting at endless possibilities encoded within. Molecular models bring forth vivid representations of DNA nucleosomes, unraveling their crucial function in packaging our genome. As we contemplate these wonders, our minds are drawn to the enigmatic Arecibo message and its decoded key C016/6817. Like Rosalind Franklin, the brilliant British chemist who played an instrumental role in deciphering DNA's structure through X-ray crystallography; we too strive to unlock nature's mysteries hidden within this double helix. The double helix serves as both an emblematic symbol and profound testament to life's complexity. It invites us on an intellectual voyage where science meets artistry—a harmonious blend that continues to shape our understanding of ourselves and all living beings around us.