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Dna Pol Collection

Caption: Unraveling the Secrets of DNA Pol: A Molecular Dance in Transcription In this captivating molecular ballet

Background imageDna Pol 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 imageDna Pol Collection: DNA polymerase molecule F007 / 6422

DNA polymerase molecule F007 / 6422
DNA polymerase molecule. DNA polymerases are enzymes that synthesise new strands of DNA from a complementary template strand

Background imageDna Pol Collection: DNA transcription, molecular model F006 / 9584

DNA transcription, molecular model F006 / 9584
DNA transcription. Molecular model of the enzyme RNA polymerase II synthesising a mRNA (messenger ribonucleic acid) strand from a DNA (deoxyribonucleic acid) template

Background imageDna Pol Collection: DNA polymerase with DNA F006 / 9559

DNA polymerase with DNA F006 / 9559
DNA polymerase with DNA. Molecular model of human DNA polymerase beta (beige) complexed with a molecule of DNA (deoxyribonucleic acid, red and blue)

Background imageDna Pol Collection: DNA polymerase with DNA F006 / 9512

DNA polymerase with DNA F006 / 9512
DNA polymerase with DNA. Molecular model of DNA polymerase (purple) complexed with a molecule of DNA (deoxyribonucleic acid, pink and blue)

Background imageDna Pol Collection: DNA transcription, molecular model F006 / 9424

DNA transcription, molecular model F006 / 9424
DNA transcription. Molecular model of the enzyme RNA polymerase II synthesising a mRNA (messenger ribonucleic acid) strand from a DNA (deoxyribonucleic acid) template

Background imageDna Pol Collection: DNA transcription, molecular model F006 / 9368

DNA transcription, molecular model F006 / 9368
DNA transcription. Molecular model of the enzyme RNA polymerase II synthesising a mRNA (messenger ribonucleic acid) strand from a DNA (deoxyribonucleic acid) template

Background imageDna Pol Collection: DNA polymerase with DNA C016 / 2684

DNA polymerase with DNA C016 / 2684
DNA polymerase with DNA. Molecular model of DNA polymerase (purple) complexed with a molecule of DNA (deoxyribonucleic acid, pink and blue)

Background imageDna Pol Collection: DNA polymerase with DNA C016 / 2682

DNA polymerase with DNA C016 / 2682
DNA polymerase with DNA. Molecular model of DNA polymerase (grey) complexed with a molecule of DNA (deoxyribonucleic acid, pink and orange)

Background imageDna Pol Collection: DNA polymerase III subunit molecule

DNA polymerase III subunit molecule
DNA polymerase III beta subunits, molecular model. DNA polymerases are enzymes that synthesise new strands of DNA from a complementary template strand during DNA replication

Background imageDna Pol Collection: DNA polymerase III subunit molecule C013 / 9008

DNA polymerase III subunit molecule C013 / 9008
DNA polymerase III beta subunits, molecular model. DNA polymerases are enzymes that synthesise new strands of DNA from a complementary template strand during DNA replication

Background imageDna Pol Collection: DNA polymerase, molecular model

DNA polymerase, molecular model
DNA polymerase. Computer model showing the structure of a DNA polymerase molecule (green). DNA polymerase is an enzyme that aids DNA (deoxyribonucleic acid)


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Caption: Unraveling the Secrets of DNA Pol: A Molecular Dance in Transcription In this captivating molecular ballet, we witness the intricate workings of DNA polymerase (DNA Pol), a key player in the process of DNA transcription. The image showcases various snapshots, each revealing a different aspect of this fascinating molecule. The first glimpse presents us with an elegant molecular model of DNA polymerase F007 / 6422. Its complex structure hints at its ability to accurately replicate and repair our genetic material, ensuring the integrity and stability of our genome. Moving forward, we are immersed in the heart of transcription as we observe DNA polymerase engaging with its partner - DNA itself. These interactions are beautifully captured through multiple frames showcasing their intimate connection. The precise binding between these two entities highlights how DNA Pol faithfully reads the genetic code encoded within our genes and transcribes it into RNA molecules that serve as blueprints for protein synthesis. As we delve deeper into this mesmerizing process, additional models come into view - F006 / 9584, F006 / 9559, F006 / 9512, F006 / 9424, and F006 / 9368. Each model represents a distinct stage or conformation during transcription – a testament to the dynamic nature of this essential biological mechanism. Through these images, we gain insight into how DNA Pol orchestrates its movements along the template strand while simultaneously synthesizing a complementary daughter strand. This synchronized dance ensures accurate replication and minimizes errors that could lead to detrimental mutations. These captivating snapshots remind us that behind every living organism lies an intricate world governed by molecular intricacies such as those exhibited by DNA polymerase. Understanding these processes not only unravels fundamental aspects of life but also holds immense potential for medical advancements and therapeutic interventions aimed at combating diseases rooted in faulty transcription mechanisms. Exploring the mysteries surrounding DNA Pol takes us on an awe-inspiring journey through the intricate world of DNA transcription.