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Static Adhesion Assay for the Study of Integrin Activation in T Lymphocytes
Published on: June 13, 2014
Mechanisms and assessment of lectin-mediated mitogenesis
1100436.51@compuserve.com
Insights
Lectins can trigger lymphocyte proliferation, acting as mitogens, comitogens, or antimitogens. Their varied effects on lymphocyte activation depend on experimental conditions and interactions with cell surface molecules.
Area of Science:
- Immunology
- Cell Biology
Background:
- Lectins, discovered in 1960, are proteins that bind carbohydrates.
- Their role in lymphocyte activation (mitogenesis) has been extensively studied.
- Lectins exhibit diverse activities, including mitogenic, comitogenic, and antimitogenic effects on lymphocytes.
Purpose of the Study:
- To explore the multifaceted roles of lectins in lymphocyte activation.
- To understand how lectin-cell surface molecule interactions influence lymphocyte responses.
- To investigate the mechanisms underlying lectin-mediated lymphocyte proliferation.
Main Methods:
- Studying lectin interactions with lymphocyte surface glycoproteins.
- Utilizing monoclonal antibodies to identify key cell-surface molecules.
- Assessing lymphocyte activation via [3H]-thymidine incorporation and nonradioactive methods.
Main Results:
- Lectins can bind to multiple lymphocyte glycoproteins, leading to varied functional outcomes.
- Lectin activity (mitogenic, comitogenic, antimitogenic) is condition-dependent.
- Lectin interactions likely involve the T-cell receptor complex and costimulatory pathways.
Conclusions:
- A wide array of cell-surface molecules regulate lymphocyte activation and proliferation.
- Plant lectin-lymphocyte interactions may mimic microbial superantigens.
- Understanding lectin functions provides insights into lymphocyte activation mechanisms.
Abstract:
The discovery of lectin-mediated mitogenesis by Nowell in 1960 stimulated interest in the properties of lectins while advancing knowledge of immunology. Although some lectins are polyclonal activators both in vitro and in vivo, others may display a broad range of activities toward human lymphocytes. Indeed, the same lectin (e.g., wheat germ agglutinin or Datura lectin) may be mitogenic, comitogenic, or antimitogenic, depending on the experimental conditions. An individual lectin may bind to several glycoproteins on the lymphocyte surface, resulting in interactions that may or may not be functionally relevant, and that may have opposing effects. Studies with lectins and with monoclonal antibodies (MAbs) have established that a surprisingly large variety of cell-surface molecules can influence the initiation and regulation of lymphocyte activation and proliferation. Interactions between lymphocytes and accessory cells are crucial; some signals are cell-mediated, but others depend on soluble cytokines. Mitogenic lectins presumably bind to the T-cell receptor complex and also promote a positive costimulatory signal leading to the synthesis of interleukin 2 and interleukin 2 receptors (IL-2R). Nonmitogenic, comitogenic, and antimitogenic lectin activities also probably act via accessory molecules involved in costimulation. Plant lectin-animal lymphocyte interactions presumably have no physiological significance, but it is suggested that the former mimics microbial superantigens, which may function in the colonization of host cells. Mitogenic stimulation of lymphocytes can be assessed in several ways. The standard technique measures [3H]-thymidine incorporation into DNA, but nonradioactive procedures are also available.
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