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DNA repair protects against cutaneous and internal neoplasia: evidence from xeroderma pigmentosum
Abstract:
Xeroderma pigmentosum (XP), is a rare, autosomal recessive disease with sun sensitivity and multiple neoplasms in association with reduced DNA repair. As a reflection of the clinical consequences of deficient DNA repair, XP serves as a model for determining the effects of proficient DNA repair. To estimate the risk of developing neoplasms in XP, we abstracted reports of 726 XP patients (from 41 countries) published from 1874 to 1982. Despite limitations of a literature survey, the XP patients under age 20 years had an estimated 2000-fold increase in frequency of basal cell and squamous cell carcinoma of the skin, of cutaneous melanoma, of cancer of the anterior eye, and of cancer of the anterior tongue, in comparison to the general population. These sites are all potentially exposed to u.v. radiation, a strong carcinogen which produces DNA damage that is poorly repaired by XP cells. XP patients under age 20 years also had an estimated 12-fold increase in occurrence of neoplasms in sites not exposed to u.v. radiation. Among the XP patients under age 40 years with internal cancer, there was a disproportionate representation of malignant neoplasms of the brain (especially sarcomas), and oral cavity (excluding tongue) compared to US whites under age 40 years. These internal neoplasms may be related to exposure to chemical environmental carcinogens that cause DNA damage which, like u.v.-induced damage, is poorly repaired by XP cells. These reports provide no evidence of an increase in XP of common lethal neoplasms such as lymphomas, or female genital tract or endocrine system cancers. These findings suggest that DNA repair plays a role in protection against u.v.-induced neoplasia and in protection against some internal neoplasms in the general population.
Insights
Xeroderma pigmentosum (XP) patients have a significantly higher risk of skin, eye, and tongue cancers due to reduced DNA repair. This rare genetic disorder also shows increased risks for brain and oral cancers, highlighting DNA repair
Area of Science:
- Genetics and Molecular Biology
- Dermatology
- Oncology
Background:
- Xeroderma pigmentosum (XP) is a rare autosomal recessive disease characterized by extreme sun sensitivity and a high incidence of neoplasms.
- XP results from deficient DNA repair mechanisms, making it a valuable model for understanding the role of DNA repair in preventing cancer.
- The study investigates the clinical consequences of impaired DNA repair in XP patients.
Purpose of the Study:
- To estimate the risk of developing various neoplasms in patients with Xeroderma pigmentosum.
- To assess the association between DNA repair deficiency and cancer development in XP patients.
- To explore the potential role of DNA repair in protection against both UV-induced and other environmental carcinogens.
Main Methods:
- A literature survey was conducted, abstracting reports of 726 XP patients from 41 countries.
- Data from patients diagnosed between 1874 and 1982 were analyzed.
- Cancer frequencies in XP patients were compared to the general population, considering age and exposure to UV radiation.
Main Results:
- XP patients under 20 years old showed a ~2000-fold increase in skin, eye, and tongue cancers, sites exposed to UV radiation.
- A ~12-fold increase in neoplasms in non-UV-exposed sites was observed in XP patients under 20.
- XP patients under 40 with internal cancers had a higher prevalence of brain (especially sarcomas) and oral cavity cancers.
Conclusions:
- Deficient DNA repair in XP significantly elevates the risk of UV-associated cancers.
- Impaired DNA repair may also contribute to the development of certain internal neoplasms, potentially linked to environmental carcinogens.
- The study suggests DNA repair is crucial for protection against UV-induced and some internal cancers in the general population.