Sandbox Reserved 1771: Difference between revisions

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==Structure Summary==
==Structure Summary==
The BCR complex is anchored to the membrane through its transmembrane region and its interactions. Upon antigen binding, the BCR will undergo a unique structural conformation change that will allow transmission of the signal through the extracellular regions and the cell membrane to elicit an intracellular response. Interaction with a foreign antigen occurs at hyper-variable loop regions and causes the separation of Fab fragments <Ref name="Shen Z">Zhixun Shen, Sichen Liu, Xinxin Li, Zhengpeng Wan, Youxiang Mao, Chunlai Chen, Wanli Liu. July 2019. Conformational change within the extracellular domain of B cell receptor in B cell activation upon antigen binding. DOI:  https://doi.org/10.7554/eLife.42271. </Ref>. This structural, conformational change will be transmitted through the heavy chains to the interface of heavy chain 1 and the Iga/ Igb complex. The signal will then be carried through the Iga/ Igb complex past the membrane and into the cell from a shifting of interactions and overall conformational change due to binding <Ref name="Shen Z">Zhixun Shen, Sichen Liu, Xinxin Li, Zhengpeng Wan, Youxiang Mao, Chunlai Chen, Wanli Liu. July 2019. Conformational change within the extracellular domain of B cell receptor in B cell activation upon antigen binding. DOI:  https://doi.org/10.7554/eLife.42271. </Ref>. This will trigger intracellular signaling that will elicit subsequent production of free antibodies to recognize and target the foreign antigen. Therefore, any improper functioning of one of these regions will lead to improper functioning of the BCR and lessen the immune response as a whole.
The BCR complex is anchored to the membrane through its transmembrane region and interactions between heavy chains and Ig/ Igb. Upon antigen binding, the BCR will undergo a unique structural conformation change that will allow transmission of the signal through the extracellular regions and the cell membrane to elicit an intracellular response. Interaction with a foreign antigen occurs at hyper-variable loop regions and causes the separation of Fab fragments <Ref name="Shen Z">Zhixun Shen, Sichen Liu, Xinxin Li, Zhengpeng Wan, Youxiang Mao, Chunlai Chen, Wanli Liu. July 2019. Conformational change within the extracellular domain of B cell receptor in B cell activation upon antigen binding. DOI:  https://doi.org/10.7554/eLife.42271. </Ref>. This structural, conformational change will be transmitted through the heavy chains to the interface of heavy chain 1 and the Iga/ Igb complex. The signal will then be carried through the Iga/ Igb complex past the membrane and into the cell from a shifting of interactions and overall conformational change due to binding <Ref name="Shen Z">Zhixun Shen, Sichen Liu, Xinxin Li, Zhengpeng Wan, Youxiang Mao, Chunlai Chen, Wanli Liu. July 2019. Conformational change within the extracellular domain of B cell receptor in B cell activation upon antigen binding. DOI:  https://doi.org/10.7554/eLife.42271. </Ref>. This will trigger intracellular signaling that will elicit subsequent production of free antibodies to recognize and target the foreign antigen. Any malfunction of one of these regions will lead to improper functioning of the BCR and lessen the immune response as a whole.





Revision as of 00:16, 17 April 2023

This Sandbox is Reserved from February 27 through August 31, 2023 for use in the course CH462 Biochemistry II taught by R. Jeremy Johnson at the Butler University, Indianapolis, USA. This reservation includes Sandbox Reserved 1765 through Sandbox Reserved 1795.
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IgM B-cell Receptor

Human mIgM B Cell Receptor. Heavy chain 1 is represented in blue, heavy chain 2 in magenta, light chain 1 in green, and light chain 2 in yellow. Iga is shown in red while Igb is in orange. 7XQ8

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References


Student Contributors

  • Joel Wadas
  • Olivia Gooch
  • Delaney Lupoi