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Life and death signaling pathways contributing to skin cancer
Brian J Nickoloff1, Jian-Zhong Qin, Vijava Chaturvedi
1Loyola University Medical Center, Department of Pathology, Skin Cancer Research Laboratory, Cardinal Bernardin Cancer Center, Maywood, IL 60153, USA. bnickol@lumc.edu
Abstract:
Apoptosis is generally regarded as a critical regulatory event in the development of malignancies in several different organ systems (Thompson, 1995). Initially, oncologists focused on alterations in rates of proliferation and cell cycle kinetics, but more recently an emphasis on apoptosis has dominated the fight against cancer (Evan and Vousden, 2001). As approximately 1,000,000 individuals in the U.S.A. develop skin cancer each year, it is important to elucidate the molecular mechanisms that govern cell survival and cell death in the epidermis (Miller and Weinstock, 1994). Moreover, given that most skin cancers occur on sun-exposed skin, the pro-apoptotic and antiapoptotic response of keratinocytes (KC) to UV light is of particular relevance to the development of skin cancer (Brash et al, 1996). Whereas both squamous cell carcinoma (SCC) and basal cell carcinoma (BCC) arise from epidermal KC, it is becoming increasingly apparent that the natural history of their development, their underlying molecular pathogenesis, and potential involvement of antiapoptotic pathways are significantly different. Nonetheless, as pointed out later in the text, significant progress is being made in our understanding of the pathophysiology of these relatively common epithelial-cell-derived neoplasms. In this review we will explore four topics: first, a review of the life and death signaling pathways operative in normal human skin that prevents premature apoptosis of KC with an emphasis on nuclear factor kappaB (NFkappaB) survival signals; second, the molecular pathways that are engaged and regulate apoptosis after normal KC are exposed to ultraviolet (UV) light; third, the apoptotic resistant mechanisms that premalignant and malignant KC utilize to avoid cell death; fourth, therapeutic strategies that can render malignant cells more susceptible to apoptosis with an emphasis on a death pathway mediated by the death ligand TRAIL.
Insights
Apoptosis, or programmed cell death, is key in skin cancer development. Understanding how keratinocytes (KC) control cell survival and death, especially after UV exposure, is vital for new cancer therapies.
Area of Science:
- Oncology
- Dermatology
- Molecular Biology
Background:
- Apoptosis is a critical regulatory mechanism in cancer development.
- Skin cancer affects approximately 1,000,000 individuals annually in the U.S.A.
- The response of epidermal keratinocytes (KC) to UV light is crucial for skin cancer pathogenesis.
Purpose of the Study:
- To review molecular mechanisms governing cell survival and death in the epidermis.
- To explore the role of apoptosis in skin cancer, including squamous cell carcinoma (SCC) and basal cell carcinoma (BCC).
- To discuss therapeutic strategies targeting apoptosis in malignant keratinocytes.
Main Methods:
- Review of signaling pathways involved in keratinocyte (KC) apoptosis.
- Analysis of molecular mechanisms of apoptosis regulation in response to UV light.
- Examination of antiapoptotic mechanisms in premalignant and malignant KC.
Main Results:
- Nuclear factor kappaB (NFkappaB) plays a role in KC survival signals.
- UV light exposure engages specific molecular pathways regulating KC apoptosis.
- Malignant KC develop resistance to apoptosis through various mechanisms.
Conclusions:
- Understanding KC apoptosis is essential for combating skin cancer.
- Targeting apoptotic pathways, such as TRAIL-mediated death, offers therapeutic potential.
- Distinct molecular pathogenesis exists for SCC and BCC, impacting treatment strategies.