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Biomedical subjects

L Hood

Publications and source records attributed to L Hood.

At least 271 records · Page 15Linked to original sources

Molecular analysis of the hotspot of recombination in the murine major histocompatibility complex.

Biological and serological assays have been used to define four subregions for the I region of the major histocompatibility complex (MHC) in the order I-A, I-B, I-J, and I-E. The I-J subregion presumably encodes the I-J polypeptide of the elusive T-cell suppressor factors. Restriction enzyme site polymorphisms and DNA sequence analyses of the I region from four recombinant mouse strains were used to localize the putative I-B and I-J subregions to a 1.0-kilobase (kb) region within the E beta gene. Sequencing this region from E beta clones derived from the two mouse strains: B10.A(3R), I-Jb and B10.A(5R), I-Jk initially used to define the I-J subregion revealed that these regions are identical, hence the distinct I-Jb and I-Jk molecules cannot be encoded by this DNA. In addition, the DNA sequence data also refute the earlier mapping of the I-B subregion. Analysis of the DNA sequences of three parental and four I region recombinants reveals that the recombinant events in three of the recombinant strains occurred within a 1-kb region of DNA, supporting the proposition that a hotspot for recombination exists in the I region. The only striking feature of this hotspot is a tetramer repeat (AGGC)n that shows 80 percent homology to the minisatellite sequence which may facilitate recombination in human chromosomes.

Animals↗

Rearrangement and expression of T cell antigen receptor and gamma genes during thymic development.

Rearrangement and expression of the T cell antigen receptor and the gamma genes during T cell ontogeny is a regulated process; the gamma genes are rearranged and expressed first, followed by the beta and then the alpha genes. Expression of both functional alpha and beta gene RNA first occurs at day 17 of gestation, along with the expression of T3 delta chain RNA. T cell antigen receptor gene rearrangements occur primarily or exclusively in the thymus, although some gamma gene rearrangements occur outside the thymus in fetal liver cells that may be committed T cell progenitors. There is no gross difference in the extent of beta and gamma gene rearrangements in the adult thymocyte subpopulations that were analyzed, despite the fact that some of these populations cannot respond to antigen and never emigrate from the thymus. Quantitative analysis of rearrangements in total adult thymocyte DNA shows that beta gene rearrangements generally occur on both chromosomal homologs, and that rearrangements occur preferentially to the J beta 2 gene segment cluster.

Aging↗

Organization and evolution of D region class I genes in the mouse major histocompatibility complex.

Chromosome walking has been used to study the organization of the class I genes in the D and Qa regions of the MHC of the BALB/c mouse and in the D region of the AKR mouse. Five and eight class I genes are found in the D and Qa regions of the BALB/c mouse, respectively, while the AKR mouse contains only a single class I D region gene that has been identified by transfection as the Dk gene. Restriction map homologies and crosshybridization experiments suggest that the multiple class I genes in the D region of the BALB/c mouse have been generated by unequal crossing-over involving class I genes from the Qa region. The expanded D region of BALB/c and other H-2d haplotype mouse strains appears to be metastable, since evidence for gene contraction in the Dd region has been found in two mutant strains. Thus the D region and also the Qa region class I genes are in a dynamic state, evolving by gene expansion and contraction.

Animals↗

Cotransfer of the Ed alpha and Ad beta genes into L cells results in the surface expression of a functional mixed-isotype Ia molecule.

Ia molecules play a key role in antigen recognition by T lymphocytes. To analyze the structural features of the individual alpha and beta chains relevant to the assembly of intact Ia molecules, mouse fibroblasts were cotransfected with various combinations of haplotype- and isotype-mismatched Ia alpha/beta gene pairs. Two important points emerged. First, the level of surface expression of a given haplotype-mismatched A alpha A beta pair appears to depend upon the alpha and beta chain alleles involved. Second, transfection with some isotype-mismatched combinations such as Ed alpha Ad beta results in a significant level of surface expression of a stable mixed-isotype dimer, which also appears to be normally expressed at a low level by an Iad-positive B lymphoma. Moreover, a T-cell hybridoma specific for human gamma globulin and restricted by the Ed molecule was found to be efficiently stimulated by the Ed alpha Ad beta-positive transfectant in the presence of antigen. The stimulation was specifically inhibited by monoclonal antibodies directed to either the Ia or the L3T4 molecule. These findings suggest that the estimates of the potential number of Ia molecules available in an animal for restricting T-lymphocyte recognition of antigens must be revised.

Animals↗

Diversity and structure of human T-cell receptor beta-chain variable region genes.

The nucleotide sequences of 27 T-cell receptor beta cDNA clones isolated from a human peripheral lymphocyte library were determined and compared to five additional published sequences. These cDNA clones represent 22 distinct T-cell receptor beta-chain variable region (V beta) gene segment sequences, which fall into 15 different V beta gene subfamilies, each containing six or fewer members. From this analysis, we estimate that the repertoire of expressed human V beta genes is less than 59, apparently much smaller than the immunoglobulin heavy chain and light chain variable region (VH and VL) repertoires. Variability plots comparing these human V beta regions with each other and with published mouse V beta regions provide evidence for only four hypervariable regions homologous to those seen in comparisons of immunoglobulin V regions. Somatic hypermutation appears to be used infrequently, if at all, in these V beta genes.

Amino Acid Sequence↗

Conservation and diversity in the class I genes of the major histocompatibility complex: sequence analysis of a Tlab gene and comparison with a Tlac gene.

The thymus leukemia (TL) antigens, encoded by class I genes in the Tla subregion of the major histocompatibility complex (MHC), are cell surface molecules expressed on thymocytes of certain strains of mice and on certain T-cell leukemias. In order to study the fine structure and interrelationships of genes of the Tla subregion, a Tla-specific probe was isolated from the TL-encoding T13c gene of BALB/c mice (Tlac haplotype). The probe hybridized with two Tla genes in the Tlac haplotype (T13c and T3c) and with only one in the Tlab haplotype (T3b). Examination of this subset of Tla genes (T3b, T3c, and T13c) by restriction enzyme analysis and oligonucleotide hybridization studies confirmed that T3b is the allele of T3c and that T3c and T13c may have arisen by duplication. The T3b gene, while not transcribed in the tissues of the TL- strain C57BL6, was shown to be transcriptionally active in the TL-expressing leukemic cell line ERLD derived from that strain. The T3b gene was cloned and its complete DNA sequence was determined. These data permit complete comparison of two Tla-region genes, T3b and its homologue T13c, and allow us to conclude that these genes show extraordinarily high sequence conservation, in contrast to alleles of the H-2K- and H-2D-region genes. Comparison of T3b with other class I sequences in the H-2 and Qa subregions suggests that the T3-subset genes are the most divergent from other class I genes.

Alleles↗

Human T-cell receptor genes: organization, diversity, and polymorphism.

The analysis of 27 human beta cDNA clones has revealed striking insights as to the germ line, combinatorial, and somatic mechanisms that operate to diversify V beta gene segments. It appears that the repertoire of human V beta genes is limited to 60 or so functional gene segments. Deletional mapping together with the analysis of large DNA fragments by field inversion gel electrophoresis and the isolation of cosmid clones should permit us to map the entire human V beta gene family. The polymorphisms that are present in these V beta gene segments will facilitate a search for interesting disease associations. A detailed comparison of the mouse and human V beta loci should permit us to come to understand in more detail the evolutionary mechanisms that have created these fascinating gene families.

Base Sequence↗

Multiple C4/Slp genes distinguished by expression after transfection.

The S region of the murine major histocompatibility complex contains two closely related genes: C4, encoding the fourth component of complement, and Slp, encoding sex-limited protein. We cloned these genes from a cosmid library of the B10.W7R strain that does not show androgen regulation of the Slp protein. Restriction site polymorphisms revealed at least four C4-like genes within the Sw7 locus, indicating evolutionary amplification of this region. Transfection of these genes into L cells resulted in expression, processing, and secretion of immunologically correct C4 and Slp proteins. At least two different Slp genes and one C4 gene were capable, after transfection, of expressing C4 and Slp indistinguishable from macrophage-derived protein. A third Slp gene exists within this locus whose recombinant cognate did not express in L cells. Thus, the B10.W7R S region includes one C4 gene and at least three Slp-like genes.

Animals↗

A randomized trial of low doses of alpha interferon in patients with breast cancer.

A randomized Phase II study was planned to test two doses of human lymphoblastoid interferon (Wellferon) in patients with metastatic breast cancer. Thirty-seven patients were entered and received either 0.5 or 3.0 million units three times a week for three months. The dose selection was based on earlier Phase I studies in order to maximize NK (natural killer) stimulation and the amount tolerated without undue toxicity. Twenty-nine patients were evaluable. There was only one excellent partial remission, sustained for one year. There were small and statistically insignificant NK increases in both groups. From this and a review of the literature, we conclude that alpha interferon has negligible activity in breast cancer.

Breast Neoplasms↗

Does maintenance therapy with alpha interferon stabilize cancer growth? A pilot study.

A pilot study was undertaken to test whether alpha interferon (alpha-IFN) maintenance could continue to stabilize cancer measurements after induction therapy. Twenty-one patients who achieved stable disease at the end of their induction treatment were randomized to receive weekly maintenance with human lymphoblastoid interferon (HLBI) (3 MU/m2, i.m.) or to be followed and not given interferon. There were 12 patients in the maintenance groups and 9 in the control observation group. There was no time difference in disease progression between the two arms. This article considers the relevance of the stable disease category in trials of interferon.

Adult↗

A phase II trial of high-dose human lymphoblastoid alpha interferon in patients with advanced renal carcinoma.

Seventeen patients with metastatic renal cancer were treated with human lymphoblastoid cell-derived alpha interferon, 30 X 10(6) U/m2, which was given intravenously for 3 consecutive days of each week for 6 weeks. On the days of interferon treatment only, patients received prednisone, 15 mg t.i.d., in order to minimize toxicity. Of the 16 evaluable patients, one had a minor regression of disease, eight had stable metastatic disease, and seven progressed. Constitutional symptoms, such as fever, anorexia, and fatigue, were common. Debilitating degrees of malaise were a treatment-limiting factor.

Central Nervous System↗

Diversity in the germline antibody repertoire. Molecular evolution of the T15 VN gene family.

The T15 heavy chain variable region (VH) gene family in BALB/c mice includes four elements each greater than 88% homologous with the other. One of these elements, V1, encodes virtually all of the VH regions in BALB/c antiphosphorylcholine antibodies, while another element, V3, is a pseudogene and cannot be transcribed or translated. We have examined the structural features of this VH gene family in other mouse strains and, in particular, have cloned and sequenced the alleles of these gene segments present in B10.P mice. Each of the four B10.P sequences can be matched with its allelic counterpart in BALB/c mice. This represents the first successful analysis of allelism in antibody variable region gene segments. The V1B10.P allele, like its BALB/c counterpart, encodes most of the known phosphorylcholine binding heavy chains from C37BL/6 mice. Similarly, the V3B10.P gene segment is a pseudogene like V3BALB, although only two of four abnormalities present in the BALB/c allele are also present in the B10.P allele. Careful analysis of the specific substitutions observed in the T15 VH gene family suggests that environmental selection for functional combining regions contributes significantly to the pattern of variation in the germline antibody repertoire. In addition, evidence is presented supporting frequent gene conversion events in the divergence of antibody genes.

Alleles↗

Molecular basis of the dm1 mutation in the major histocompatibility complex of the mouse: a D/L hybrid gene.

The H-2dm1 mutation is unique among all described H-2 mutations in that two transplantation antigens, the H-2Dd and the H-2Ld, are affected. Here, we show that the mutant gene, Ddm1, is formed by fusion of the 5' part of the Dd gene and the 3' part of the Ld gene, with the region in between deleted. The recombination junction is located in the third exon, which encodes the alpha 2 region of the protein. When the hybrid gene is transfected into mouse L cells, serological and biochemical analyses indicate the Ddm1 antigen expressed in the transformant line is identical to the mutant molecule in dm1 spleen cells. These results demonstrate that the D/L hybrid gene is most likely responsible for the dm1 mutant phenotype.

Amino Acid Sequence↗

Structure of a gene encoding a murine thymus leukemia antigen, and organization of Tla genes in the BALB/c mouse.

We have determined the DNA sequence of a gene encoding a thymus leukemia (TL) antigen in the BALB/c mouse, and have more definitively mapped the cloned BALB/c Tla-region class I gene clusters. Analysis of the sequence shows that the Tla gene is less closely related to the H-2 genes than H-2 genes are to one another or to a Qa-2,3-region genes. The Tla gene, 17.3A, contains an apparent gene conversion. Comparison of the BALB/c Tla genes with those from C57BL shows that BALB/c has more Tla-region class I genes, and that one of the genes absent in C57BL is gene 17.3A.

Alleles↗

Expression and T cell recognition of hybrid antigens with amino-terminal domains encoded by Qa-2 region of major histocompatibility complex and carboxyl termini of transplantation antigens.

Coding potential of the Q6 gene from the Qa-2a region of BALB/c Crgl mice was analyzed by a combination of hybrid class I gene construction and DNA-mediated gene transfer. Recombinant genes were created by exon shuffling of the 5' coding region of the Q6 gene and the 3' coding region of a gene encoding a transplantation antigen (Kd, Dd, or Ld), or the inverse. Some of these hybrid class I genes were expressed in the transfected mouse fibroblasts (L cells). The hybrid class I molecules encoded by the 5' end of the Q6 gene and the 3' end of the Ld gene precipitated as 45,000 mol wt molecules associated with beta 2-microglobulin. The expression of the hybrid proteins indicates that 926 basepairs of the 5' flanking region upstream of the structural Q6 gene contain a promoter that functions as a transcription initiation site in L cells. The 3' portion of the Q6 gene appears to be responsible for the lack of cell surface expression of the intact Q6 and the hybrid Ld/Q6 genes in mouse fibroblasts. Accordingly, this portion of the Q6 class I gene may play a regulatory role in tissue-specific expression. Serological analyses of hybrid Q6 proteins suggested that Q6 may be a structural gene for CR (H-2 crossreactive) antigen found normally on subpopulations of lymphocytes. If this identification is correct, Q6 gene will define a new category of class I genes encoding approximately 40,000 mol wt molecules and carrying a characteristic truncated cytoplasmic tail. Analysis of L cells transfected with Q6 hybrid genes demonstrated also that the cytotoxic T cells specific for Qa-2a region-coded antigens recognize the amino-terminal alpha 1-alpha 2 domain of Q6 fusion products. This recognition can be blocked by anti-Qa-2a alloantiserum and monoclonal antibodies reactive with the alpha 3-beta 2-microglobulin portion of the Q6 hybrids. We propose that the structural requirements for the anti-Qa-2a cytotoxic T lymphocyte-specific epitopes on target molecules are the same as for anti-H-2-alloreactive cytotoxic T lymphocyte determinants on transplantation antigens and that the mechanism of target recognition is similar in both cases. This interpretation is consistent with the following structural similarities found in both categories of class I molecules: (a) Kd and Q6 alpha 1-alpha 2 domains share serologically defined epitopes.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals↗

Major histocompatibility complex-restricted antigen receptor on T cells. VIII. Role of the LFA-1 molecule.

We show that the LFA-1 molecule on T cells does not play a role in the stimulation of T cell hybridomas by certain targets, namely antigen presented by L cell derivatives or polyvalent anti-receptor antibody. These results suggest that LFA-1 may act by binding to ligands that are not present on all cells. We hope this result will help us and others to establish the true role of LFA-1 in T cell responses.

Animals↗