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J W Stocker

Publications and source records attributed to J W Stocker.

14 recordsLinked to original sources

Biochemical characterization and electron-transfer reactions of sym1, a Rhodobacter capsulatus reaction center symmetry mutant which affects the initial electron donor.

A 51 bp section of the Rhodobacter capsulatus photosynthetic reaction center M subunit gene (nucleotides M562-M612 of the pufM structural sequence) encoding amino acids M187-M203 was replaced by the homologous region of the L subunit gene. This resulted in the symmetrization of much of the amino acid environment of the reaction center initial electron donor, P. This is the first in a series of large-scale symmetry mutations and is referred to as sym1. The sym1 mutant was able to grow photosynthetically, indicating that reaction center function was largely intact. Isolated reaction centers showed an approximately 10-nm blue shift in the QY band of P. The standard free energy change between P* and P+BphA- determined from analysis of the long-lived fluorescence from quinone-reduced reaction centers decreased from about -120 meV in the wild-type to about -75 meV in the sym1 mutant. A 65-70% quantum yield of electron transfer from P* to P+QA- was observed, most of the yield loss occurring between P* and P+BphA-. The decay of the stimulated emission from P* was about 3-fold slower in this mutant than in the wild-type. Time-resolved spectral analysis of the charge-separated intermediates formed in sym1 reaction centers indicated that the major product was P+BphA-. A model-dependent analysis of the observed rates and electron-transfer yields gave the following microscopic rate constants for sym1 reaction centers (wild-type values under the same conditions are given in parentheses): [formula: see text] Analysis of the sym1 mutant, mutants near P made by other groups, and interspecies variation of amino acids in the vicinity of P suggests that the protein asymmetry in the environment of the initial electron donor is important for optimizing the rate and yield of electron transfer, but is not strictly required for overall reaction center function.

Amino Acid Sequence

Spectroscopic and redox properties of sym1 and (M)F195H: Rhodobacter capsulatus reaction center symmetry mutants which affect the initial electron donor.

The redox properties, absorption, electroabsorption, CD, EPR, and P+QA- recombination kinetics have been measured for the special pairs of two mutants of Rhodobacter capsulatus reaction centers involving amino acid changes in the vicinity of the special pair, P. Both mutants symmetrize amino acid residues so that portions of the M-sequence are replaced with L-sequence: sym1 symmetrizes all residues between M187 and M203, whereas (M)F195H is a single amino acid subset of the sym1 mutation. (M)F195H introduces a His residue in a position where it is likely to form a hydrogen bond to the acetyl group of the M-side bacteriochlorophyll of P. For both mutants compared with wild-type, (i) the redox potential is at least 100 meV greater, (ii) the P+QA- recombination rate is about twice as fast at room temperature, and (iii) the large electroabsorption feature for the QY band of P is shifted relative to the absorption spectrum. The comparison of the properties observed for the sym1 and (M)F195H reaction center mutants and the differences between these mutants and wild-type suggest that residue M195 is an important determinant of the properties of the special pair.

Circular Dichroism

Methods for binding cells to plastic: application to a solid-phase radioimmunoassay for cell-surface antigens.

Two methods are described for attaching cells to plastic plates such that they may be used for antibody binding assays. In the first method, lymphoid cells or erythrocytes were attached to the wells of plastic plates using glutaraldehyde. This resulted in monolayers of fixed cells which retained surface antigens and were stable to storage. The second method involved binding of unfixed cells to the plastic surface by means of antibodies non-specifically adsorbed to the plate. Both methods resulted in cell layers which remained attached to the plate during the washing and incubation procedures of a radioimmunoassay. The cell layers were shown to be suitable for screening the product of hybrid cell lines for the presence of monoclonal antibodies to cell-surface antigens.

Animals

Separation of human cells bearing HLA-DR antigens using a monoclonal antibody rosetting method.

A technique is described for enriching, from human blood, cells bearing HLA-DR antigens. The method depends on the use of monoclonal mouse antibody which reacts with HLA-DR structures. Cells to which this antibody has bound can be separated after rosetting with bovine erythrocytes coated with anti-mouse immunoglobulin. The cells thus enriched may be used for HLA-DR typing by standard cytotoxicity methods with allogeneic sera.

Antibodies, Anti-Idiotypic

Functional maturation of B cells in vitro.

Maturation of B-cell function was studied in a two-stage tissue culture system. In the first stage, cells were cultured in the absence of antigen and then transferred to microcultures where the frequency of hapten-specific plaque-forming cell (PFC) precursors was determined; Bone-marrow cells and spleen cells from 6--8-day-old mice mice were shown to act as sources of B-cell neogenesis in vitro. Both populations had very low initial frequencies of hapten-specific PFC precursors, but this increased ten- to seventeen-fold during a period of 72 h in the preliminary cultures. This increase could not be accounted for by selective cell death, nor by decay of a suppressor cell subpopulation nor by proliferation of pre-existing Fc-receptor-bearing B cells. The mechanism for the increase in frequency of functional B cells in cultures of bone marrow and neonatal spleen was thus the result of maturation of B-cell precursors to a state of immune competence during the culture interval.

Age Factors

Tolerance induction in maturing B cells.

A two-stage tissue culture system was used to test the concept of clonal abortion as a mechanism for tolerance induction in B cells. In the first stage, neonatal spleen cells or bone marrow cells were cultured for 72 h under conditions in which B-cell neogenesis occurred. Haptens coupled to various carriers, were introduced during this stage. Following this culture phase, the cells were washed and their competence to respond to hapten-POL was measured in microcultures where feedback effects were minimized. The results indicated that immature B cells were specially susceptible to tolerance but that the conditions under which hapten was presented were also important in determining the outcome of the cell-antigen encounter.

Animals

Estimation of hapten-specific antibody-forming cell precursors in microcultures.

The immune response of mouse spleen cells to hapten-conjugated polymer of flagellin (DNP-POL, NIP-POL) was studied using a microculture system. When increasing numbers of spleen cells were added to a 'filler' cell system, negative feedback effects became apparent and resulted in the generation of progressively lower numbers of plaque-forming cells (PFC) per input cell. This feedback inhibition was shown to be antigen-specific and mediated by factors released into the culture medium. The effect precludes calculation of the frequency of PFC precursors in cultures containing spleen cells alone and complicates the analysis of tolerance using in vitro assay systems. The addition of small numbers of spleen cells to a constant number of thymocytes provided a system in which Poisson analysis could be used to determine the frequency of PFC precursors capable of being activated by hapten-POL conjugates. This system was used to estimate the frequency of anti-NIP-PFC precursors in CBA spleen cells.

Animals