Related Experiment Videos
Apoptosis and predisposition to oral cancer
1Department of Oral Medicine/Pathology/Surgery, University of Michigan School of Dentistry, Ann Arbor 48109-1078, USA.
Abstract:
The term apoptosis, also known as programmed cell death (PCD), was coined by developmental biologists a number of years ago to describe a form of cell death characterized by several unique morphological and biochemical features. Genetic studies of the round worm Caeneorhabditis elegans, a simple multicellular organism, first revealed apoptosis to be an integral part of the developmental program. Subsequently, the importance of apoptosis in higher organisms was demonstrated in several eukaryotic systems. [n mammals, apoptosis is widespread during embryogenesis and in adult tissues. It is required for normal tissue homeostasis and for clonal selection in the immune system. In both developing and adult organisms, apoptosis plays a central role in reinforcing appropriate cellular patterns and in regulating cell number by eliminating cells that are harmful or no longer needed. It is becoming increasingly clear that disruption in the apoptosis pathway can contribute to the development of a number of developmental, inflammatory, degenerative, and neoplastic diseases. The effector arm of the apoptotic program includes members of the Bcl-2 gene family that function as either death agonists or death antagonists. These proteins participate in an elaborate genetically controlled biochemical pathway that functions to maintain tissue and organ homeostasis and serve as a critical defense mechanism to guard against malignant transformation. Cancer is the result of a series of genetic lesions that include activation of oncogenes and inactivation or loss of tumor suppressor genes. Several groups of investigators have observed that deregulated expression of oncogenes can subvert apoptotic pathways, resulting in prolonged cell survival. In pathological settings such as cancer, members of the Bcl-2 gene family are able to synergize with oncogenes and tumor suppressor genes to transform cells. In this review, we describe the process of apoptosis in mammalian cells and define the role and biochemical pathways through which the Bcl-2 gene family induce and/or protect cells from apoptosis. Last, we will discuss the evidence which suggests that alterations in this pathway may play a central role in tumorigenesis by allowing genetically damaged cells normally destined for elimination to persist, predisposing them to additional mutations and driving them to malignancy.
Insights
Apoptosis, or programmed cell death, is vital for development and tissue homeostasis. Dysregulation of apoptosis, particularly involving the Bcl-2 gene family, contributes to diseases like cancer by allowing damaged cells to survive.
Area of Science:
- Cell Biology
- Developmental Biology
- Genetics
Background:
- Apoptosis, or programmed cell death (PCD), is a fundamental biological process with distinct morphological and biochemical features.
- Initially studied in Caenorhabditis elegans, apoptosis is now recognized as crucial for development and tissue homeostasis in mammals.
- Disruptions in apoptotic pathways are implicated in various diseases, including developmental disorders, inflammation, degeneration, and cancer.
Purpose of the Study:
- To review the process of apoptosis in mammalian cells.
- To define the role and biochemical pathways of the Bcl-2 gene family in inducing or preventing apoptosis.
- To discuss the link between altered apoptosis pathways and tumorigenesis.
Main Methods:
- Review of existing literature on apoptosis and the Bcl-2 gene family.
- Analysis of genetic studies in model organisms and mammalian systems.
- Examination of the interplay between Bcl-2 family proteins, oncogenes, and tumor suppressor genes.
Main Results:
- Apoptosis is essential for embryogenesis, adult tissue homeostasis, and immune system function in mammals.
- The Bcl-2 gene family acts as a key regulator of apoptosis, with members functioning as death agonists or antagonists.
- Aberrant expression of oncogenes can interfere with apoptosis, promoting cell survival and contributing to cancer development.
Conclusions:
- The Bcl-2 gene family plays a critical role in maintaining tissue homeostasis and preventing malignant transformation.
- Alterations in apoptotic pathways, particularly involving Bcl-2, can lead to the persistence of genetically damaged cells, promoting tumorigenesis.
- Understanding these pathways is crucial for comprehending cancer development and for potential therapeutic strategies.