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B L Lyons

Publications and source records attributed to B L Lyons.

3 recordsLinked to original sources

Development of plasmacytoid cells with Russell bodies in autoimmune "viable motheaten" mice.

Mice homozygous for the autosomal recessive mutation "viable motheaten" (mev) are severely immunodeficient, show polyclonal B-cell activation, and express multiple autoantibodies over a maximum life span of 25 weeks. Lymphoid tissues from these mice contain large numbers of atypical plasma cells in which discrete glycoprotein inclusions are found within the endoplasmic reticulum. Such plasma cells are termed "Mott cells," and the inclusions are called "Russell bodies." Dense accumulations of Mott cells are present in the marginal zones of the spleen and in the lymph nodes of mev/mev mice. Russell bodies in Mott cells from mev/mev mice contain immunoglobulin (Ig) as shown by immunofluorescence microscopy at the light-microscopic level and by indirect protein A-immunogold localization at the electron-microscopic level. Ultrastructural analyses reveal the presence of amorphous, lamellar, and crystalline Russell bodies. These Ig crystals have a periodicity of 150-190 A. Lymph node cell preparations which were enriched in Mott cells by velocity sedimentation failed to secrete Ig in a polyclonal reverse plaque assay. An obligate role of the thymus in Mott cell development is evidenced by the absence of Mott cells in neonatally thymectomized mev/mev mice and in mice doubly homozygous for the nude (nu) and mev mutations. These data suggest that Mott cells in mev/mev mice are thymic-dependent plasmacytoid cells resulting from chronic B-cell activation accompanied by impaired Ig secretion.

Age Factors

Ascorbate stimulation of PAT cells causes an increase in transcription rates and a decrease in degradation rates of procollagen mRNA.

Procollagen alpha 2 (I) mRNA can be induced congruent to 6-fold in primary avian tendon (PAT) cells on addition of ascorbate to the culture medium. Previously, we have shown that the induction is linear after a 12 h lag and requires a total of 60-72 h to achieve maximum levels. We have now investigated in more detail the changes that have occurred in the metabolism of procollagen mRNA in fully induced cells to account for the observed induction. Ascorbate was found to triple the rate of procollagen gene transcription. In addition, there was a stabilization of the mRNA causing the half-life to increase from 10.5 h to 20 h. The increased stability of the procollagen mRNA, however, did not correlate with its ability to bind to oligo (dT)-cellulose. Since a 3-fold change in transcription rates and a 2-fold increase in half-life would account for the 6-fold overall increase in procollagen mRNA levels, we conclude that these are the primary alterations caused by ascorbate addition that give rise to the specific increase in procollagen mRNA.

Animals