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Biomedical subjects

G B Beck-Engeser

Publications and source records attributed to G B Beck-Engeser.

6 recordsLinked to original sources

Surrogate light chain-dependent selection of Ig heavy chain V regions.

Bone marrow B cell precursors frequently rearrange the Ig heavy chain variable (VH) gene segment VH81X. It is puzzling, therefore, that mature B cells in adult mice rarely express mu-heavy chains bearing this VH gene segment. We show in this work in transformed pre-B cell lines that two VH81X/mu-chains that differ in their VH-D-JH joining sequences are not assembled covalently with the B cell precursor-specific surrogate light (SL) chain and are not expressed on the cell surface. From these findings, we propose that a B cell precursor clonally expands and proceeds to the next developmental stage only if it expresses a mu-chain with a VH domain that, together with the SL chain, directs the formation of a signal-transducing mu/SL chain membrane complex. Therefore, a checkpoint exists early in B cell development, at which SL chain not only screens B cell precursors for the presence of a full-length mu-chain, but also for a VH domain that promotes the assembly of a mu/SL chain complex.

Amino Acid Sequence

Sequence of the rabbit glyceraldehyde-3-phosphate dehydrogenase-encoding cDNA.

Two full-length cDNA clones encoding rabbit glyceraldehyde-3-phosphate dehydrogenase (GAPDH) were isolated from a lambda gt10 rabbit spleen cDNA library and sequenced. As predicted from the open reading frame (ORF) in vitro translation of a sense orientation GAPDH cDNA clone yielded a protein product with a molecular mass of 37 kDa. Rabbit GAPDH exhibits a high degree of homology to the mouse, rat, hamster, chicken and human GAPDH on both the nucleotide (nt) and amino acid (aa) levels.

Amino Acid Sequence

Roles of heavy and light chains in IgM polymerization.

IgM antibodies are secreted as multisubunit polymers that consist of as many as three discrete polypeptides: mu heavy chains, light (L) chains, and joining (J) chains. We wished to determine whether L chains that are required to confer secretory competence on immunoglobulin molecules must be present for IgM to polymerize--that is, for intersubunit disulfide bonds to form between mu chains. Using a L-chain-loss variant of an IgM-secreting hybridoma, we demonstrated that mu chains were efficiently polymerized independent of L chains, in a manner similar to that observed for conventional microL complexes, and that the mu polymers incorporated J chain. These mu polymers were not secreted but remained associated with the endoplasmic reticulum-resident chaperone BiP (GRP78). This finding is consistent with the endoplasmic reticulum being the subcellular site of IgM polymerization. We conclude that mu chain alone has the potential to direct the polymerization of secreted IgM, a process necessary but not sufficient for IgM to attain secretory competence.

Animals

Allelic inclusion in the pre-B-cell line 18-81.

In an Abelson-virus-transformed mouse lymphoid cell line with pre-B-cell characteristics, a few cells continuously produce heavy chains from both homologs. Each chain has a different variable region. These cells thereby exhibit allelic inclusion rather than allelic exclusion.

Abelson murine leukemia virus

Immunoglobulin heavy-chain class switching in a pre-B cell line is accompanied by DNA rearrangement.

Switching of an Abelson virus-transformed mouse lymphoid cell line from immunoglobulin mu to gamma 2b heavy-chain synthesis in vitro is accompanied by loss of DNA sequences between the JH and C gamma 2b gene segments, and thus cannot be explained by differential RNA processing. The light-chain loci of both mu- and gamma 2b-producing cell clones are in the embryonic configuration, which indicates that class switching can occur in pre-B cells.

Animals