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K Udaka

Publications and source records attributed to K Udaka.

At least 37 records · Page 2Linked to original sources

Decrypting the structure of major histocompatibility complex class I-restricted cytotoxic T lymphocyte epitopes with complex peptide libraries.

Complex synthetic peptide libraries with defined amino acids in one or more positions of the H-2Kb-restricted cytotoxic T lymphocyte (CTL) epitopes SIINFEKL and RGYVYQGL and mixtures of 19 amino acids in the remaining positions were used to analyze the structural requirements of peptide binding to MHC class I molecules and antigen recognition by CTLs. This approach provides means to assess semiquantitatively the contribution of every amino acid to the binding of peptides to major histocompatibility complex (MHC) molecules without biases introduced by naturally processed peptides. Primary and secondary anchor residues were defined for their major contribution to the binding efficiency of the peptides. In contrast to primary anchors, secondary anchor amino acids vary greatly in their side chains and position in the sequences. All amino acids in the octapeptide sequences were found to exhibit positive or negative influences on binding to the MHC molecules and on recognition of the resulting complexes by CTLs. Strong interdependence of the effects of the individual residues in the epitope sequences was demonstrated. CTL responses to peptide libraries were suppressed when residues were introduced; however, they were augmented when the critical residues for T cell recognition were fixed, suggesting a potential use of the peptide libraries for defining epitope sequences in general.

Amino Acid Sequence↗

CD4+ and CD8+ alpha beta, and gamma delta T cells are cytotoxic effector cells of beta 2-microglobulin-deficient mice against cells having normal MHC class I expression.

Despite original reports that describe the absence of CD8+ CTLs in mice having homozygous deficiency in the beta 2-microglobulin gene, strong cytotoxic activities against cells with normal beta 2-microglobulin expression were observed in these animals. This cytotoxicity was reproducibly induced by immunizations with allogeneic or syngeneic cells. MHC class II expression by the stimulator cells was not required. The effector population contained alpha beta T cells with CD4+ or CD8+ phenotypes, as well as gamma delta T cells with CD8- and CD8+ phenotypes. Both alpha beta T cell types recognized MHC class I molecules. The gamma delta T cells seemed to respond to molecules that are affected by the absence of beta 2-microglobulin, but that are not encoded by classical MHC loci.

Animals↗

A ubiquitous protein is the source of naturally occurring peptides that are recognized by a CD8+ T-cell clone.

We previously isolated from mouse spleen an octapeptide (LSPFPFDL) that in association with the class I major histocompatibility complex protein Ld is recognized by the antigen-specific receptor of an alloreactive CD8+ T-cell clone (2C). Guided by an assay dependent upon the same 2C T-cell receptor, we have now isolated from the same source another naturally occurring peptide. The second peptide (VAITRIEQLSPFPFDL) includes the entire octapeptide sequence and preliminary evidence suggests that it may be a natural precursor of the octapeptide. On finding extensive sequence homology between the 16-mer and part of human 2-oxoglutarate dehydrogenase, we determined the cDNA sequence of mouse 2-oxoglutarate dehydrogenase and found that the deduced amino acid sequence matches precisely the two naturally occurring peptides, indicating their origin by cellular processing of this ubiquitous self protein.

Amino Acid Sequence↗

Increased number of cytotoxic T cells within CD4+8- T cells in beta 2-microglobulin, major histocompatibility complex class I-deficient mice.

Targeted disruption of beta 2-microglobulin gene results in deficient major histocompatibility complex class I expression and failure to develop CD4-8+ T cells. Despite this, beta 2 M-/- mice reject skin grafts and cope with most viral infections tested. We asked whether CD4+8- cytotoxic T cells would play a role in compensating for the defect in CD4-8+ cytotoxic T cell function. We found that the cytotoxic activity against class II+ targets is significantly higher among CD4+8- T cells of beta 2M-/- than among those of beta 2M+/+ mice. In the limiting dilution experiment, we showed that the precursor frequency for the cytotoxic, CD4+8-, class II-specific T cells is at least fivefold higher in beta 2M-/- than in beta 2M+/+ mice. These results suggest that CD4+8- cytotoxic T cells could play a major role in carrying out cytotoxic function in beta 2M-/- mice.

Animals↗

Irradiated fetal thymus transplantation in a patient with combined immunodeficiency with predominant T cell defect.

A 6 month old boy was diagnosed as a case of combined immunodeficiency (with predominant T cell defect by previous classification). His T cell count was decreased, his B cell count in peripheral blood was increased, his serum IgG level was decreased, his serum IgM level was normal and the thymus was not evident on CT scans and magnetic resonance imaging. Administration of the thymus hormone, thymosin, led to a partial recovery of T cell function without normalization of the T cell count. At age 26 months the patient received an irradiated thymus transplantation from a 16 week old female fetus. After the transplantation, the T cell count (mainly CD4+ cells) increased by 50-70%. A mild graft-versus-host reaction (GVHR) occurred and several immunosuppressants were prescribed. Chromosome analysis showed that the T cells have both 46 XY and 46 XX karyotypes while the B cells have the 46 XY karyotype alone. His cellular immunity (skin tests, DNA synthesis, mixed lymphocyte reaction, cytotoxic activity and natural killer cell function) and his serum IgG level remained low. However, being on regular r-globulin therapy and oral anti-fungal drugs, he is now living normally with almost no trouble at age 6 years and 3 months. This case showed that irradiated thymus transplantation might be a useful method when an adequate donor for bone marrow transplantation is not available. The unexpected observation that the increased T cells were mainly CD4 may be related to the mild GVHR and the clinical improvement.

Female↗

A naturally occurring peptide recognized by alloreactive CD8+ cytotoxic T lymphocytes in association with a class I MHC protein.

The antigenic structures that initiate T cell responses to foreign (allogeneic) cells have long attracted considerable interest. We have purified and sequenced a peptide from mouse spleen that is recognized in association with the class I MHC protein H-2Ld by 2C, an alloreactive CD8+ T cell clone. The peptide (LSP-FPFDL) greatly enhances the susceptibility of Ld+ cells to lysis by 2C, and this activity is completely blocked by a clonotypic antibody against the 2C T cell receptor. Thus, this study characterizes the naturally occurring peptide moiety of an MHC-I/peptide complex recognized by alloreactive CD8+ T cells. The peptide, which occurs in the thymus of MHC-disparate mice, can be used to study T cell development in mice expressing transgenes for the 2C T cell receptor.

Amino Acid Sequence↗

Cellular and humoral mechanisms of immunotoxicological tissue manifestations induced by immunotoxic drugs.

The adverse effects on the immune system resulting from acute and subchronic exposure to immunotoxic compounds can be divided into the following three categories. One is the tissue manifestations induced by either immunosuppressive or immunomodulative compounds through the interactions of the drug or its metabolites with cellular/humoral constituents directly or indirectly. For the detection, the functional tests especially NK activity in short-term administration were found to be valuable in the assessment of immunotoxicity of drugs in comparison with hematological and morphological alterations. The second is manifested as an allergic reaction, consisting of three sequential events: (1) sensitization by the exposure of a drug primarily recognized as an antigen; (2) the interaction of antigen and antibody and/or sensitized mononuclear cell (M), and its sequelae, which initiate the chain of events leading to tissue injury: and (3) tissue injury and inflammation. The third is manifested as autoimmunity. Of these, in the first two reactions, a primary manifestation seems to be cellular injury. In this experiment, the morphological and biochemical changes occurring in the cultured cells were analyzed when the compound was added to cultured cells obtained from (a) normal animals, (b) drug-sensitized animal models prepared by using drug-protein conjugates, and (c) animals administered drugs at the dosage equivalent to therapeutic dose. When a test compound was added to short cultured sensitized M, morphological responses observed were characterized by either diffuse swelling of the cells and decrease of pseudopod movement, or gradual shrinking. No such changes were observed in non-sensitized M. In contrast, when immunosuppressants or immunomodulators were used, increases of pseudopod movement and pinocytosis, and excitation of cytoplasmic movement, were observed in both sensitized and non-sensitized M if compounds were cytotoxic. In both cases, inflammatory cytokines responsible for tissue damage were released from the M. Little release of these factors was observed from the non-stimulated cells. For the third category, an attempt is being made to analyze autoimmune disorders immunotoxicologically by using experimentally induced MDP-arthritis in rodents.

Animals↗

Bacterial expression of immunoglobulin VH proteins.

A bacterial expression system in Escherichia coli has been developed that produces as much as 10 mg/l of culture of the VH protein associated with monoclonal antibodies specific for the 5-dimethylaminonaphthalene-2-sulfonyl (Dns) group. This system has been applied to the expression of the VH genes derived from a low-affinity, IgM-producing hybridoma and from a high-affinity, IgG-producing cell line. The plasmid vectors (contributed by Dr William F. Studier) utilize a T7 expression cassette whose activity is initiated by infection with a lambda phage derivative carrying the T7 RNA polymerase gene. The VH proteins were extracted from the bacterial pellet in 8 M urea and purified by chromatography in 8 M urea. Recombinants with the homologous light (L) chains were prepared to yield VHL molecules. These were used to measure intrinsic affinity for Dns-lysine by resonance energy transfer. The association constants were 7 x 10(6) M-1 and 7 x 10(9) M-1 for the low- and high-affinity systems, respectively. These values are not significantly different from those observed with monoclonal antibodies secreted from the corresponding cell lines. This system lends itself to the quantitative evaluation of the binding properties of the VH protein itself as well as the modulation of affinity by site-directed mutagenesis.

Escherichia coli↗

Expression of soybean glycinin subunit precursor cDNAs in Escherichia coli.

As the cDNAs encoding A1aB1b and A2B1a subunit precursors of the glycinin A2 subfamily contain a unique NcoI site sequence, (A)CCATGG, occurring at their translation initiation sites, plasmids were constructed to direct the synthesis of those precursor proteins by inserting NcoI/PstI fragments derived from those cDNA clones into the NcoI/PstI-pKK233-2 expression vector in Escherichia coli MV1190, respectively. The resultant plasmids directed the expression of 57-kDa protein components that have molecular masses in agreement with those of the in vitro translation products directed by glycinin A2 subfamily mRNAs, by the addition of isopropyl beta-D-thiogalactoside. These proteins, which comprised as much as 1% of the total bacterial protein, are immunoprecipitable with rabbit antibodies specific for glycinin subunits. This procedure makes glycinin subunits available as a model for studying structure-function relationships in seed proteins using site-directed mutagenesis. This is the first expression of glycinin-like storage protein in E. coli.

DNA↗

Co-operation between the pair of C gamma 2 domains in Clq-binding by rabbit IgG.

The single site binding constants of rabbit IgG and its plasmin-derived fragments F(acb)2, Facb and F(ab)2 for human C1q were measured by the sedimentation velocity method. The intact IgG and F(acb)2 having the paired C gamma 2 domains gave an identical association constant at 20 degrees C (Ka) of 3.02 X 10(4) M-1 in the presence of a physiological concn of salt and on the basis of six sites per C1q. The C1q-binding affinity was found to be decreased to 1.04 X 10(4) M-1 in the reduced, monomerized fragment Facb. Under the same conditions F(ab)2, which is completely unable to activate the classical complement cascade, gave an apparent C1q-affinity of 0.36 X 10(4) M-1. The results, together with previous observations, led us to the conclusion that the C1q-binding site of rabbit IgG is constituted associatively by the pair of C gamma 2 domains, each of which providing a limited, complementary part of the binding free energy between IgG and C1q.

Antibody Affinity↗

Glycinin A5A4B3 mRNA: cDNA cloning and nucleotide sequencing of a splitting storage protein subunit of soybean.

The complete nucleotide sequence of a cloned cDNA, designated pGA5A4B3822, corresponding to glycinin A5A4B3 mRNA was determined. Analysis of the cDNA insert revealed that it contained 1899 nucleotides of mRNA sequence with a 5'-terminal non-translated region of 31 nucleotides, a signal peptide region corresponding to 23 amino acids, an acidic subunit region (A5) corresponding to 97 amino acids, an acidic subunit region (A4) corresponding to 257 amino acids followed by a basic subunit region (B3) corresponding to 185 amino acids, and a 3'-terminal non-translated region of 182 nucleotides. These results show that the glycinin A4 subunit, which is not found to be linked to a basic subunit via a disulfide bond, is synthesized as a full-sized precursor, i.e. the A5A4B3 subunit complex, from a single mRNA, followed by post-translational processing to generate an intermediary subunit complex (A5-B3), covalently linked by a disulfide bond, and the mature A4 subunit, which may associate with the above subunit complex by non-covalent interactions. From the results obtained by the Chou-Fasman rules we speculated that the two post-translational cleavage sites of this subunit precursor might be processed by the same proteolytic enzyme.

Amino Acid Sequence↗

Glycinin A3B4 mRNA. Cloning and sequencing of double-stranded cDNA complementary to a soybean storage protein.

The cDNA clones encoding the precursor form of glycinin A3B4 subunit have been identified from a library of soybean cotyledonary cDNA clones in the plasmid pBR322 by a combination of differential colony hybridizations, and then by immunoprecipitation of hybrid-selected translation product with A3-mono-specific antiserum. A recombinant plasmid, designated pGA3B41425, from one of six clones covering codons for the NH2-terminal region of the subunit was sequenced, and the amino acid sequence was inferred from the nucleotide sequence, which showed that the mRNA codes for a precursor protein of 516 amino acids. Analysis of this cDNA also showed that it contained 1786 nucleotides of mRNA sequence with a 5'-terminal nontranslated region of 46 nucleotides, a signal peptide region corresponding to 24 amino acids, an A3 acidic subunit region corresponding to 320 amino acids followed by a B4 basic subunit region corresponding to 172 amino acids, and a 3'-terminal nontranslated region of 192 nucleotides, which contained two characteristic AAUAAA sequences that ended 110 nucleotides and 26 nucleotides from a 3'-terminal poly(A) segment, respectively. Our results confirm that glycinin is synthesized as precursor polypeptides which undergo post-translational processing to form the nonrandom polypeptide pairs via disulfide bonds. The inferred amino acid sequence of the mature basic subunit, B4, was compared to that of the basic subunit of pea legumin, Leg Beta, which contained 185 amino acids. Using an alignment that permitted a maximum homology of amino acids, it was found that overall 42% of the amino acid positions are identical in both proteins. These results led us to conclude that both storage proteins have a common ancestor.

Amino Acid Sequence↗

Co-operative interaction of subcomponents of the first component of complement with IgG: a functional defect of dimeric Facb from rabbit IgG.

By following dissociation kinetics of radiolabelled C1q from rabbit IgG antibody-sensitized sheep red blood cells (SRBC) before and after its incorporation in the C1 complex, it was demonstrated that the binding stability is markedly enhanced by the presence of the C1r2-C1s2 subunit of C1 which by itself exhibits no significant binding capacity to immune complexes. The dissociation of C1q was decreased by up to 95%, the extent of decrease being pronounced as the cell surface IgG antibody density increased. However, such a stabilizing effect of C1r2-C1s2 was largely abolished when SRBC sensitized with the dimeric fragment F(acb)2 lacking C gamma 3 was used as the C1 binder, whereas the dissociation rate of uncomplexed C1q from F(acb)2-sensitized cells was similar to that from whole IgG-sensitized cells. It was also shown that, although the C1r2-C1s2 subunit is dissociated selectively from C1 bound to either IgG- or F(acb)2-sensitized cells in the presence of EDTA, it is held on much longer by the former cells than the latter cells. These results were taken to indicate that, although the C1 fixation by immune complexes of IgG is undertaken primarily by the interaction between C1q and the C gamma 2 domain, it is also strengthened by the secondary interaction between the C1r2-C1s2 subunit of C1 and the C gamma 3 domain or a structure which is dependent on the pair of C gamma 3 domains.

Animals↗

Preparation and biologic characterization of fragments containing dimeric and monomeric C gamma 2 domain of rabbit IgG.

A number of fragments derived from acid-treated rabbit IgG by digestion with plasmin have been separated by high-resolution gel filtration. Fragments isolated included a dimer and monomer Facb, named F(acb)2 and Facb, respectively and a heterodimer composed of Facb and Fab subunits, named F(acb)(ab). A C gamma 2 fragment was obtained by papain digestion of Facb. A heterodimer composed of Facb and Fab', named F(acb)(ab'), was also prepared by oxidizing a reduced mixture of these fragments. Fragments thus obtained are classified into two groups--those carrying paired C gamma 2 domains, i.e. F(acb)2, and the disulfide-linked dimeric C gamma 2 fragment; and those having a single C gamma 2 domain, i.e. reduced, alkylated Facb and C gamma 2 fragment, F(acb)(ab) and F(acb)(ab'). These fragments exhibited marked differences in their capacity to activate complement in assay systems of hemolysis and complement consumption by immune complexes or aggregates on polystyrene latex. Fragments of the former group could activate complement but with a definitely reduced efficiency (50%) compared to intact IgG, whereas fragments of the latter group were practically inactive. Although it was not determined whether the C1-binding capacity itself is changed by monomerization of the C gamma 2 domain, the results suggested that the intact paired C gamma 2 module is required at least for the activation process of complement.

Animals↗

A preliminary study on long term toxicity test. Age-related alterations of bone marrow cellularity in Sprague-Dawley and Wistar rats.

Age-related alterations in bone marrow cellularity were examined on SD and Wistar SPF rats. Six rats/strain/sex were sacrificed at 58, 83, 109 and 123 or 135 weeks of age and quantitative assessment and categorization of the bone marrow cells were performed. One male and two female SD rats suffering from leukemia were excluded from statistics. Age-related increases of myeloblasts and plasma cells were observed in rats of either strain and either sex. Age-related decreases in percentages of lymphocytes were noticed in SD, but not in Wistar rats. Age-related alterations in absolute numbers of marrow lymphocytes were equivocal in either strain.

Aging↗