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Biomedical subjects

J C Howard

Publications and source records attributed to J C Howard.

At least 19 recordsLinked to original sources

Proteasome subunits encoded by the major histocompatibility complex are not essential for antigen presentation.

Major histocompatibility complex (MHC) class I molecules bind and deliver peptides derived from endogenously synthesized proteins to the cell surface for survey by cytotoxic T lymphocytes. It is believed that endogenous antigens are generally degraded in the cytosol, the resulting peptides being translocated into the endoplasmic reticulum where they bind to MHC class I molecules. Transporters containing an ATP-binding cassette encoded by the MHC class II region seem to be responsible for this transport. Genes coding for two subunits of the '20S' proteasome (a multicatalytic proteinase) have been found in the vicinity of the two transporter genes in the MHC class II region, indicating that the proteasome could be the unknown proteolytic entity in the cytosol involved in the generation of MHC class I-binding peptides. By introducing rat genes encoding the MHC-linked transporters into a human cell line lacking both transporter and proteasome subunit genes, we show here that the MHC-encoded proteasome subunit are not essential for stable MHC class I surface expression, or for processing and presentation of antigenic peptides from influenza virus and an intracellular protein.

ATP Binding Cassette Transporter, Subfamily B, Mem

Cloning and expression of class I major histocompatibility complex genes of the rat.

Little is known about the organization of class I genes in the rat although there is prima facie evidence that it is distinct from that of the mouse. We report the cloning of 61 nonclassical rat class I genes into cosmid clusters with a total mapped length of 1,264 kb. It is certain that the total number of class I genes in the rat must exceed this number. From restriction maps it is possible to identify substantial regions of duplication. By transfection of cosmids into mouse L cells, it has been possible to demonstrate at least seven different nonclassical rat class I genes that are expressible on the cell surface. Crossreaction of a single mouse monoclonal antibody with all of these class I molecules is consistent with sequence homogenization within the rat nonclassical system. Attempts to find rat homologues of the mouse Tla genes by crosshybridization of rat cosmids with a range of different TLa-specific probes were unsuccessful, suggesting that this large group of divergent class I genes is absent or nearly so from the rat. The large number of class I genes in the rat appears to have arisen by expansion of genes more closely related to the classical sequence.

Animals

Effect of polymorphism of an MHC-linked transporter on the peptides assembled in a class I molecule.

Short antigenic peptides bound in the groove of class I major histocompatibility complex molecules enable T cells to detect intracellular pathogens. It has been assumed that structural features of the class I molecule alone select which peptides are bound. It is now demonstrated that a complex polymorphism in one of the major histocompatibility complex-encoded putative peptide-transporter genes is associated with an altered spectrum of bound peptides.

Alleles

Expression and characterization of ovine major histocompatibility complex class II (OLA-DR) genes.

Previous work made use of nucleic acid probes corresponding to different subtypes of the class II regions of the human and murine major histocompatibility complex (MHC) to isolate seven different alpha and 24 different beta genes of the ovine MHC from two cosmid libraries. In an attempt to identify pairs of alpha and beta genes capable of cell surface expression, all permutations of alpha and beta genes were in turn transfected into mouse L-cells. Two pairs of alpha and beta genes co-expressed and stable ovine MHC class II L-cell lines were developed. The expressed alpha genes had previously been defined as DR-alpha homologues (DRA) by differential Southern hybridization to human subtype specific class II probes. The expressed ovine beta genes were also assigned as ovine DR-beta homologues (DRB) on the basis of their sequence having a higher degree of similarity with human DRB than any other subtype. A total of eight out of 23 anti-sheep class II specific monoclonal antibodies were typed OLA-DR specific by FACScan analysis using the L-cell lines.

Amino Acid Sequence

The major histocompatibility complex class II-linked cim locus controls the kinetics of intracellular transport of a classical class I molecule.

The dominant trans-acting major histocompatibility complex (MHC)-linked class I modifier (cim) locus, previously recognized through its ability to determine altered alloantigenicity of a rat class I molecule, RT1.A3, is shown here to influence class I intracellular transport. The MHC recombinant laboratory rat strains PVG.R1 and PVG.R8 display unusually long retention of RT1.Aa within the endoplasmic reticulum or cis-Golgi. In appropriate F1 hybrid cells heterozygous for RT1.Aa and another class I MHC allele, RT1.Ac, only the RT1.Aa protein is subject to slow transport. The cim gene product therefore shows class I allele specificity in its action, cim appears to be a polymorphic locus whose product is directly involved in the processes of class I MHC assembly and/or intracellular transport.

Animals

Targeting behavior of rat monoclonal IgG antibodies in vivo: role of antibody isotype, specificity and the target cell antigen density.

The studies described in this report were designed to investigate factors that could influence the behavior of erythrocytes following their interaction with monoclonal antibodies (mAb) in a fully homologous experimental opsonization system in vivo. The clearance profiles and tissue distribution of target erythrocytes were examined in both normal and decomplemented rats preinjected with rat IgG2a or IgG2b mAb directed against the same or different sites on RT1Aa, the classical class I major histocompatibility complex antigen of the DA rat. Complement played a major role in augmenting the clearance and promoting hepatic sequestration of target erythrocytes in rats preinjected with IgG2a mAb directed against the S site. In contrast, an intact complement system was not an essential requirement for erythrocyte clearance when S site-specific IgG2b mAb were used. With each antibody tested, (DA x PVG)F1 cells, expressing about half as much antigen, were removed significantly slower than DA erythrocytes, this finding being more pronounced when the animals had been preinjected with mAb of the IgG2a isotype. A comparison of the tissue distribution of DA and (DA x PVG)F1 erythrocytes indicated that hepatic uptake was greater for target cells expressing higher antigen density. A considerable degree of heterogeneity was observed in the in vivo behavior of the target erythrocytes with three groups of IgG2b mAb that recognized different sites on the class I molecule. The S site-specific IgG2b mAb were much more efficient in the hepatic Fc receptor-mediated clearance system than were the P site-directed mAb of the same subclass. Our results suggest that antibody specificity may also be a contributory factor, in addition to antibody isotype and target cell antigen density, in determining the fate of target cells in vivo.

Animals

Cim: an MHC class II-linked allelism affecting the antigenicity of a classical class I molecule for T lymphocytes.

Two alleles at the major histocompatibility complex (MHC)-linked locus cim determine "gain and loss" changes in the rat RT1.Aa class I molecule which affect its structure both as an alloantigen and as a restriction element. Alleles at the cim locus also influence the post-translational modification of RT1.Aa. These effects may reflect the participation of the cim gene product in the processes of peptide loading or assembly of RT1.Aa. In this study we have used the discriminating RT1.Aa-specific monoclonal antibody JY3/84, as well as cytotoxic T cells raised in appropriate combinations, to determine the cim alleles of eight haplotypes in 15 independent inbred strains of rat. We have also employed the same techniques to analyse a panel of F1 hybrid animals derived from various MHC recombinant strains. These experiments map the cim locus to the class II region of RT1, probably between the DP-related genes (RT1.H) and the DQ-related RT1.B alpha.

Alleles

Xenogeneic responses in vitro in the Syrian hamster, Mesocricetus auratus. I. Evidence for a normal T cell repertoire.

We have investigated the ability of Syrian hamster lymphocytes to generate cytotoxic responses against classical MHC molecules on xenogeneic cells. Our data show that hamster lymph node cells can be stimulated in an in vitro primary mixed lymphocyte culture by irradiated rat or mouse lymphoid cells to produce a substantial cytotoxic response assayed on 51Cr-labelled xenogeneic blasts. Using congenic recombinant rat and mouse targets, the specificity of the cytotoxic activity could be localized to genetic regions known to determine classical class I histocompatibility antigens in these two species. In addition, specific cytotoxicity could be demonstrated on transfectant target cells expressing only the relevant rat class I molecules, and specific cytotoxicity could be inhibited by a monoclonal antibody specific for a rat classical class I molecule. Elimination of B cells did not affect the ability of the responder population to generate xenogeneic cytotoxicity. In further experiments it was shown that hamster xenogeneic killers could distinguish between two subtly modified forms of a rat classical class I molecule essentially as efficiently as can allogeneic rat killers. Finally, lymph node cells from female hamsters primed in vivo with male hamster cells were able to generate weak but significant male-specific cytotoxicity after boosting in vitro. In sum, our experiments show that the general outline of the cytotoxic T cell repertoire of the Syrian hamster is conventional. These results suggest that monomorphic class I molecules expressed by the Syrian hamster probably function normally to direct the differentiation of its cytotoxic T cell repertoire.

Animals

Class II major histocompatibility complex genes of the sheep.

The class II genes of the sheep major histocompatibility complex (MHC) have been cloned from two unrelated heterozygous sheep into cosmid vectors. By restriction mapping and hybridization with a number of class II probes of human and mouse origin, the cloned genetic material has been assigned to seven distinct alpha genes, 10 distinct beta genes and 14 beta-related sequences. It was difficult to identify homologues of specific HLA class II genes because of a tendency for the ovine genes to cross-hybridize between HLA probes representing different loci. Such cross-hybridization was especially marked among the beta genes. While DQ and DR homologues have been tentatively identified by several criteria, no genes corresponding to DP have been identified. Cosmids containing class II alpha and beta genes have been transfected into mouse LTK- cells, and surface expression of a sheep class II molecule has been obtained.

Animals

Concerted evolution of class I genes in the major histocompatibility complex of murine rodents.

Full-length cDNA sequences of two class I major histocompatibility complex molecules from the DA strain of Rattus norvegicus are reported. One codes for the classical class I restriction element RT1.Aa, which maps to the locus in the rat major histocompatibility complex homologous to H-2K in the mouse. The other probably codes for a soluble nonclassical class I molecule present in DA rat serum; a short deletion in the fifth exon implies that the translated product will terminate in the membrane-spanning region. These sequences have been compared with mouse classical class I sequences as well as with three published rat class I cDNA partial sequences. The results show, first, that "locus-specific" substitutions from the H-2K, H-2D, and H-2L data set are scrambled in the RT1.Aa molecule; a majority of these substitutions have H-2D/L-specific features. Second, the data show that the four rat sequences are strikingly similar to one another regardless of locus or haplotype of origin; they share a number of apparently species-specific features that distinguish them all from mouse classical class I sequences, which likewise share distinctive features of their own. The results suggest that segmental sequence exchange plays a major role in determining the evolution of sequence in class I major histocompatibility complex molecules.

Amino Acid Sequence

A trans-acting major histocompatibility complex-linked gene whose alleles determine gain and loss changes in the antigenic structure of a classical class I molecule.

The RT1.A locus of the rat MHC encodes the H chain of the single classical class I molecule of this species. One of the alleles of this polymorphic locus, RT1.Aa, is present in several laboratory inbred, congenic, and MHC recombinant rat strains. Studies of the RT1.Aa class I molecule from a number of these strains as a target for CTL show that its antigenicity, both as an alloantigen and a restricting element, is subject to gain and loss alterations by the action of a gene mapping in the MHC to the right of RT1.A. This locus is apparently present in two allelic forms (one possibly a null allele) corresponding to the presence or absence of a dominant transacting modifier, and has been named class I modification, or cim. The antigenic change brought about by cim is scarcely detectable serologically but highly immunogenic for CTL. Biochemical investigations show that cim affects the post-translational modification of RT1.Aa.

Alleles

The class II genes of the rat MHC.

Genes that encode class II Ag from the MHC of the rat, the RT1 region, have been isolated as a series of cosmid clones. The cosmids define two clusters, each of which contains three identifiable sequences; one homologous to alpha-chain and two to beta-chain genes. Both the serologically identified rat class II Ag have been expressed in mouse L cell fibroblasts after the introduction of each alpha-chain gene along with a beta-chain gene from the same cluster. There are substantial homologies to the I region of the mouse H-2 complex in the presence, location, orientation, and expression of the six identified sequences from the rat RT1, supporting the view that the overall organization of the two gene complexes has remained conserved since the species separated.

Animals

Cost-related variables: a pilot study.

The advent of prospective payment systems prompts nurses to examine cost-related factors in demonstrating savings resulting from quality care. The clinical nurse specialist plays an active role in the examination of variables influencing costs for patients within the specialty. This pilot study utilized a retrospective chart audit of 142 women falling within Diagnostic-related Group 355 (non-radical hysterectomy, age less than 70 years, without comorbid condition or complication) during 1985 to identify demographic, illness/treatment-related, and discharge variables related to charge variance. Independent (length of stay, p less than 0.001 and previous admission, p = 0.066) predictors of charge variance were found among the 14 variables studied. The value of the research as a model for other practitioners is discussed.

Costs and Cost Analysis