Tag: DNA repair

MRN Complex

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The MRN complex, composed of MRE11, RAD50 and NBS1, is the primary sensor of DNA double‑strand breaks and a central regulator of genome stability. By activating ATM, initiating homologous recombination and stabilising damaged chromosomes, MRN safeguards cells against genomic instability and disease.

DNA Damage Response Pathways

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ATM, ATR, DNA-PK, and p53 are key regulators of the DNA damage response. Learn how these pathways detect DNA damage, coordinate repair, control the cell cycle, and protect genome stability.

DNA-PK

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DNA-PK is a key component of the DNA damage response that helps repair DNA double-strand breaks through the non-homologous end joining pathway and supports genome stability.

Single‑Chain RING Finger Ubiquitin Ligase

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Single‑chain RING finger ubiquitin ligases form an important subgroup of E3 enzymes within the ubiquitin–proteasome system. Unlike multi‑subunit Cullin–RING ligases,…

Genomic Instability

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Genomic instability describes the increased tendency of cells to accumulate genetic alterations due to failures in DNA repair, replication fidelity, and chromosome segregation. It plays a central role in cancer development, ageing, and hereditary disorders.

RING Finger Ubiquitin Ligase

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RING finger ubiquitin ligases are the largest class of E3 enzymes in the ubiquitin–proteasome system, defined by a zinc‑binding cross‑brace RING domain that positions E2~Ub for direct ubiquitin transfer. They regulate essential cellular processes including cell cycle progression, DNA repair, immunity, and neuronal function. Dysregulation of RING and RBR ligases such as MDM2 and Parkin contributes to cancer and neurodegeneration, while modern PROTAC therapeutics harness CRL4^CRBN and CRL2^VHL complexes to redirect ubiquitination toward disease‑associated proteins.

DNA Repair

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DNA repair is essential for maintaining genome stability and protecting genetic information. Explore how cells detect, repair, and respond to different types of DNA damage.

DNA Structure

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DNA structure allows genetic information to be stored, copied, and expressed. Explore the DNA double helix, nucleotides, base pairing, chromosomes, chromatin, replication, and genome organization.

MRN Complex

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The MRN complex, composed of MRE11, RAD50 and NBS1, is the primary sensor of DNA double‑strand breaks and a central regulator of genome stability. By activating ATM, initiating homologous recombination and stabilising damaged chromosomes, MRN safeguards cells against genomic instability and disease.

DNA Damage Response Pathways

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ATM, ATR, DNA-PK, and p53 are key regulators of the DNA damage response. Learn how these pathways detect DNA damage, coordinate repair, control the cell cycle, and protect genome stability.

DNA-PK

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DNA-PK is a key component of the DNA damage response that helps repair DNA double-strand breaks through the non-homologous end joining pathway and supports genome stability.

Single‑Chain RING Finger Ubiquitin Ligase

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Single‑chain RING finger ubiquitin ligases form an important subgroup of E3 enzymes within the ubiquitin–proteasome system. Unlike multi‑subunit Cullin–RING ligases,…

Genomic Instability

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Genomic instability describes the increased tendency of cells to accumulate genetic alterations due to failures in DNA repair, replication fidelity, and chromosome segregation. It plays a central role in cancer development, ageing, and hereditary disorders.

RING Finger Ubiquitin Ligase

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RING finger ubiquitin ligases are the largest class of E3 enzymes in the ubiquitin–proteasome system, defined by a zinc‑binding cross‑brace RING domain that positions E2~Ub for direct ubiquitin transfer. They regulate essential cellular processes including cell cycle progression, DNA repair, immunity, and neuronal function. Dysregulation of RING and RBR ligases such as MDM2 and Parkin contributes to cancer and neurodegeneration, while modern PROTAC therapeutics harness CRL4^CRBN and CRL2^VHL complexes to redirect ubiquitination toward disease‑associated proteins.

DNA Repair

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DNA repair is essential for maintaining genome stability and protecting genetic information. Explore how cells detect, repair, and respond to different types of DNA damage.

DNA Structure

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DNA structure allows genetic information to be stored, copied, and expressed. Explore the DNA double helix, nucleotides, base pairing, chromosomes, chromatin, replication, and genome organization.