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HIV reverse transcription enzyme F006 / 9684

HIV reverse transcription enzyme F006  /  9684


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HIV reverse transcription enzyme F006 / 9684

HIV reverse transcription enzyme. Molecular model of the reverse transcriptase enzyme found in HIV (the human immunodeficiency virus) bound to the inhibitor nevirapine. Reverse transcriptase transcribes the single-stranded RNA (ribonucleic acid) genome of HIV into DNA that is capable of integrating with DNA in a human cell

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

Media ID 9256987

© LAGUNA DESIGN/SCIENCE PHOTO LIBRARY

Acquired Immunodeficiency Syndrome Aids Alpha Helix Beta Sheet Drug Enzyme Hiv 1 Hiv 1 Reverse Transcriptase Human Immunodeficiency Virus Immune System Inhibiting Inhibitor Microbiology Proteomics Rna Dependent Dna Polymerase Strand Tertiary Structure Viral Biochemical Biochemistry Cutouts Microbiological Molecular Molecular Model Molecular Structure Protein


EDITORS COMMENTS
This print showcases the intricate molecular structure of the HIV reverse transcription enzyme, F006 / 9684. The image depicts a detailed model of the reverse transcriptase enzyme found in HIV, bound to the inhibitor nevirapine. Against a clean white background, this illustration highlights key elements of biology and research in medicine. The reverse transcriptase enzyme plays a crucial role in transcribing the single-stranded RNA genome of HIV into DNA capable of integrating with human cell DNA. This process is essential for viral replication and infection within our immune system. By inhibiting this enzymatic activity, drugs like nevirapine aim to impede viral reproduction and combat the progression of acquired immunodeficiency syndrome (AIDS). The molecular structure presented in this artwork reveals alpha helixes and beta sheets that form its tertiary structure. These structural features are vital for understanding how inhibitors interact with specific regions on the enzyme's surface to hinder its function. With its cut-out presentation, this medical illustration provides valuable insights into proteomics, biochemistry, and microbiology research related to HIV-1 reverse transcriptase. It serves as a powerful visual aid for scientists studying potential drug targets or designing novel therapeutic strategies against this devastating virus.

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