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Viewing September 1976 — 4 paper(s) from the local store. (Local view only — run without --view to fetch new papers.)
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Also flagged:-immune responses
Journal Article 1976-09-01 No Snippets Okumura K, Herzenberg LA, Murphy DB, McDevitt HO, Herzenberg LA.
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Data presented here show that locidentify in the I-region of the H-2 gene complex are selectively expressed in different functional T-cell subpopulations. These loci are closely linked (or possibly identical) to loci that control immune responses. They control surface determinants which identify helper and suppressor T lymphocytes. Determinants described here on allotype suppressor T cells (Ts) are found on normal (nonsuppressed) lymphoid cells, but are not found on helper T cells (Th). These determinants are controlled by a locus mapping in the I region of the H-2 complex. In an accompanying publication we show that this locus (Ia-4) marks a new I subregion (I-J) and is expressed only on T cells. Thus Ia-4 determinants idenfity a T-cell subpopulation which includes Ts but not Th. Th also carry identifying surface determinants controlled by loci that map to the H-2 complex, probably within the I region. These determinants are not found on Ts. Data presented also establish that loci in the I region control determinants on Th, but do not conclusively demonstrate that these are the determinants that distinguish Th from Ts. The selective expression of H-2-controlled determinants on Ts and Th suggests that these determinants are directly involved in immunoregulation.

Also flagged:IaAntibodychromosomal segment
Journal Article 1976-09-01 No Snippets Murphy DB, Herzenberg LA, Okumura K, Herzenberg LA, McDevitt HO.
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In an accompanying publication we show that a subpopulation of T lymphocytes, which includes allotype suppressor T cells, selectively expresses I-region determinants. In this report, we show that these determinants are controlled by a new locus, Ia-4. Unlike the classically defined Ia antigens, they are not found on B lymphocytes. Antibody against Ia-4 determinants cannot be detected by conventional dye exclusion cytoxicity assays, suggesting that they are present on a small subpopulation (less than 10%) of peripheral T lymphocytes. The Ia-4 locus marks a new I subregion, provisionally designated I-J. This chromosomal segment is defined by the crossover positions in strains B10.A(5R) (K-end boundary) and B10.HTT (D-end boundary), and maps between the I-B and I-C subregions.

Also flagged:IaantibodyH-2 histocompatibility complex
Journal Article 1976-09-01 No Snippets Tada T, Taniguchi M, David CS.
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The locus of the gene that codes for the antigen-specific suppressive T-cell factor was determined to be in a new subregion "I-J" which locates between I-B and I-C subregions in the H-2 histocompatibility complex. This was shown by two different lines of evidence: (a) The absorbing capacity for the suppressive T-cell factor of several alloantisera against restricted I subregions did not correlate with their specificity for previously known Ia molecules which are coded for by genes in I-A and I-C subregions, but was associated with the specificity for the products of genes putatively present between I-B and I-C subregions. By the occurrence of special recombinant strains, i.e. B10.A(5R), B10.A(3R), B10.S(9R), and B10.HTT, which differ with respect to the I-J subregion, we were able to produce alloantisera which distinguish I-J subregion gene products. The absorption studies using these special alloantisera directed to I-J subregion clearly indicated that the suppressive T-cell factor is a product of I-J subregion gene(s), and that the molecule is distinct from known Ia molecules expressed on splenic B cells. (b) Taking advantage of the fact that there is a strict histocompatibility requirement for the effective suppression between the donor and recipient strains of the suppressive T-cell factor, we were able to determine the required identities of the genes in the H-2 complex existing among those present between I-B and I-C. Again, utilizing the T-cell factors obtained from special recombinant strains, i.e. B10.A(4R) and B10.A(5R), we were able to locate the gene that codes for the suppressive T-cell factor reactive only with relevant haplotype strains between I-B and I-C subregions. These results are most reasonably explained by the presence of a new subregion I-J which is specialized in coding for the suppressive T-cell factor as a different molecule from previously known Ia molecules.

Also flagged:catecholamineadenylate cyclasemembranesisoproterenolFluorideL-epinephrine
Journal Article 1976-09-01 ✓ 5 Snippets Schramm M.
In-Text Gene Mentions

Incubation of erythrocytes or their isolated membranes with N, N'dicyclohexyl carbodiimide (DCC) blocked isoproterenol activation of the adenylate cyclase.

…findings indicate thatDCCattacks a group…

…nominal concentration ofDCCin the aqueous…

…high concentration ofDCCin the hydrophobic…

…The reaction withDCCmay prove to…

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Incubation of erythrocytes or their isolated membranes with N, N'dicyclohexyl carbodiimide (DCC) blocked isoproterenol activation of the adenylate cyclase. Fluoride activation remained unaffected. L-epinephrine and DL-propranolol partially and transiently protected the system against DCC. D-Epinephrine and dopamine did not protect. The enzyme system preactivated by isoproterenol plus Gpp(NH)p was no longer sensitive to DCC. In contrast to the water insoluble DCC, a water soluble carbodiimide acted only at high concentration and blocked fluoride as well as catecholamine activation of the adenylate cyclase. The findings indicate that DCC attacks a group on, or near, the beta-adrenergic receptor and that this group is located in a hydrophobic region of the cell membrane. It is argued that a low nominal concentration of DCC in the aqueous suspension of erythrocytes actually represents a very high concentration of DCC in the hydrophobic region of the cell membranes, near the beta-adrenergic receptor. The reaction with DCC may prove to be a useful tool in future analyses of beta-adrenergic receptor function.