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From Proteopedia
H. sapiens mIgM B Cell Receptor
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Medical Relevancy
Janeway CA Jr, Travers P, Walport M, et al. Immunobiology: The Immune System in Health and Disease. 5th edition. New York: Garland Science; 2001.
ContentsIntroductionStructureAntigen Binding SiteThe binding of an antigen to the human B Cell receptor is identical to other common soluble antibodies (such as IgG, IgA, IgM, IgE, or IgD). The antibody portion of the B Cell Receptor is roughly "Y" shaped and consists of two identical heavy and two identical light chains creating two similar epitope or binding regions[1]. Thus, two antigen molecules can bind independent of one another to produce a response. Within this structure, there are both constant and variable regions. The stem of the "Y" is a constant region (Fc) composed of only heavy chain interactions[1]. The two heavy chains then branch at a flexible hinge region. These interact individually with one light chain creating two Fab fragments or branches of the "Y"[1]. Each Fab fragment additionally contains a variable region (Fv) and a constant region[1]. The variable region sits on top of the constant region and consists of hyper-variable loops which are random coils of amino acids that are unique to an antibody and exposed to allow specific recognition of an antigen[1]. Furthermore, the light chains interact with the heavy chains via weak intermolecular forces and disulfide bridges[1]. Therefore, binding to an antigen is processed through intermolecular interactions and is specific due to unique hyper variable loop sequences. Heavy Chain Interactions (Iga and IgB)Transmembrane InteractionsFunctionProposed Conformational ChangesSignal Pathway | ||||||||||||
Janeway CA Jr, Travers P, Walport M, et al. Immunobiology: The Immune System in Health and Disease. 5th edition. New York: Garland Science; 2001.
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