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Synthesis And Processing Of The Alpha Heavy Chains Of Secreted And Membrane-Bound Iga, H. Kikutani, R. Sitia, R. A. Good, Janet Stavnezer Apr 2008

Synthesis And Processing Of The Alpha Heavy Chains Of Secreted And Membrane-Bound Iga, H. Kikutani, R. Sitia, R. A. Good, Janet Stavnezer

Janet M. Stavnezer

We have compared the synthesis and processing of immunoglobulin alpha chains in two murine cell lines, a B cell lymphoma that expresses membrane-bound IgA and a hybridoma that secretes IgA. Results of biosynthetic labeling experiments demonstrated that membrane-bound and secreted alpha chains have two distinct intracellular precursors, of different molecular weights and isoelectric points. RNAs from both of these cell lines direct the synthesis in vitro of two alpha polypeptides of Mr 59,000 and 62,000, the larger one being the precursor for membrane-bound alpha chain and the smaller one being the precursor for secreted alpha chain. These cell lines each …


Presence Of A Polyadenylated Rna Fragment Encoding The Membrane Domain For Immunoglobulin Alpha Chain Indicates That Mrnas For Both Secreted And Membrane-Bound Alpha Chains Can Be Produced From The Same Rna Transcript, Janet Stavnezer Apr 2008

Presence Of A Polyadenylated Rna Fragment Encoding The Membrane Domain For Immunoglobulin Alpha Chain Indicates That Mrnas For Both Secreted And Membrane-Bound Alpha Chains Can Be Produced From The Same Rna Transcript, Janet Stavnezer

Janet M. Stavnezer

RNA blotting was employed to examine polyadenylated immunoglobulin alpha chain RNAs in a B lymphoma synthesizing membrane-bound and secretory IgA and in a hybridoma which synthesizes predominantly secretory IgA. Both cell lines were derived from the I.29 lymphoma and expressed the identical heavy chain variable region gene. In addition to the predicted mRNA precursors, four novel species of polyadenylated alpha RNAs were detected. The presence of a RNA species which was too large to have the same 3' end as the largest mRNA for membrane-bound alpha chain (alpha m) implied that transcription continued past the alpha m poly(A) site, and …