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Biomedical subjects

J M Boss

Publications and source records attributed to J M Boss.

At least 73 records · Page 4Linked to original sources

Genetic complexity and expression of human class II histocompatibility antigens.

The genes encoding nearly all of the serologically defined class II antigens of the major histocompatibility complex have been isolated. Three class II loci have been studied in great detail. The DR region contains a single alpha gene and 3 beta chain genes, 1 of which is a pseudogene. The DR alpha chain gene has been linked to a DR beta gene which encodes a beta protein which contains the serological determinant MT3. A second cosmid cluster contains 2 beta genes, 1 of which encodes the DR4 allospecificity. The identification of these genes has been made by the comparison of amino terminal sequences of DR molecules obtained from a DR4 cell line and the deduced protein sequences of the beta 1 exons from cosmid and phage clones. A conserved element including the promoter and signal sequence is found at the 5' end of each of the 3 DR beta genes. Additionally, this element occurs three more times in the DR region, raising the question of whether additional beta chain genes might be found. The DQ region contains 2 pairs of genes, 1 of which encodes the DQ antigen. The 2nd pair of genes, called DX alpha and beta, appears to be capable of expressing a DQ-related product, although, to date, there is no evidence for its expression. The DP region also contains 2 pairs of genes. One pair encodes the DP antigen while the 2nd alpha-beta pair is shown to be composed of pseudogenes. The location of polymorphic regions in these genes and aspects of their relationship to the serology, evolution, and function of the class II MHC are discussed. The control of expression of class II genes by gamma-interferon has been examined. The promoters of class II genes are characterized by two conserved sequences common to all alpha and beta chain genes as well as by conserved sequences specific for either alpha or beta chain genes. In addition to studies of expression by DNA-mediated gene transformation, a system for the gene transfer of MHC antigens utilizing transmissible retrovirus vectors is described. Retrovirus vectors have been used to transmit DR alpha, DR beta, and the invariant chain (gamma) sequences to recipient cells with resultant expression of these proteins.

Alleles↗

Sequence analysis of the human major histocompatibility gene SX alpha.

The DP subregion of the human major histocompatibility complex contains two closely linked gene pairs, DP alpha, DP beta and SX alpha, SX beta. The exon-intron organization and the complete DNA sequence of the SX alpha gene are reported here. There are several mutations within the SX alpha gene which strongly suggest that it is a pseudogene. These include two frameshift mutations, one in the alpha 1 domain and the other in the cytoplasmic domain. A 5' splice site mutation at the end of the alpha 1 exon also exists. DNA sequence homology between DP alpha and SX alpha suggests that these genes arose through a gene duplication event.

Base Sequence↗

Accuracy of endoscopy in the diagnosis of inflamed gastric and duodenal mucosa.

Two hundred twenty-three patients underwent upper gastrointestinal endoscopy and biopsy. Correlation of endoscopic and histological findings revealed that a normal gastric and duodenal mucosa could be correctly diagnosed endoscopically in about 80 and 88% of cases, respectively. Duodenitis was diagnosed correctly in 83% of cases; however, the correct endoscopic recognition of gastritis was achieved in only about 50% of the cases. Better results were achieved in "anastomitis," in which the endoscopic diagnosis was correct in 90% of cases. This study supports the view that endoscopy alone should not be relied upon in the diagnosis of gastritis or duodenitis.

Atrophy↗

Immune interferon activates multiple class II major histocompatibility complex genes and the associated invariant chain gene in human endothelial cells and dermal fibroblasts.

Immune interferon (IFN-gamma) increases the surface expression of HLA-A,B antigens and induces the surface expression of HLA-DR antigens on vascular endothelial cells and dermal fibroblasts. Here we report that IFN-gamma induces parallel expression of two other class II major histocompatibility complex (MHC) antigens, SB and DC. Maximal surface expression of all three antigens is reached in 4-6 days, and HLA-DR and -SB are induced to a higher level of expression than HLA-DC. For all three class II antigens, induction is marked by the de novo appearance of detectable transcripts of class II heavy and light chains and of the non-MHC-encoded invariant chain, suggestive of the transcription of multiple previously silent genes. Class I message levels and antigen expression are also increased by IFN-gamma at similar rates but from initial levels that are 50% of maximal. After removal of IFN-gamma, class II antigen expression persists for at least 4 days, while mRNA levels decrease rapidly. The parallel induction and persistence of the several class II MHC antigens may be important in conferring immune accessory function on vascular and stromal cells.

Endothelium↗

Cloning and sequence analysis of the human major histocompatibility complex gene DC-3 beta.

The DC antigen is one of the class II major histocompatibility antigens involved in the regulation of the immune response. This molecule is a heterodimer composed of an alpha and a beta chain. Southern blot analysis of several homozygous cell lines shows that there are two DC beta genes. The DC-3 beta gene, corresponding to a polymorphic restriction fragment, was cloned and sequenced and found to exist in five exons spanning 8 kilobase pairs of DNA. These exons correspond to the functional domains of the DC beta protein. Comparison of the beta 1 domains of known DC beta chains shows that the polymorphism is clustered in four regions. A similar comparison of the mouse A beta sequences shows only two prominent diversity regions. The DC beta chain sequences are eight amino acids shorter than the A beta chain sequences due to the elimination of a small exon by an aberrant splice acceptor.

Base Sequence↗

Genetic mapping of a human class II antigen beta-chain cDNA clone to the SB region of the HLA complex.

A class II antigen beta-chain cDNA clone was isolated from a human B-cell cDNA library by using as a probe the murine I-A beta gene. This cDNA clone, pHA beta, was shown to be distinct from the DC beta- and DR beta-related loci by DNA sequence analysis, thus suggesting that it might correspond to a third polymorphic human class II locus, SB, which encodes secondary B-cell antigens. Genetic mapping of this beta-chain cDNA clone to the SB region was performed by the blot hybridization procedure. We showed that (i) within panels of HLA-DR homozygous human B-cell lines and of unrelated individuals who have been typed for HLA antigens, differential mobility of DNA fragments segregated with distinct SB genotypes; (ii) gamma-ray-induced deletion mutants that have lost the expression of DR or DC/MT antigens but maintain SB expression preserved a pattern consistent with (a) their SB phenotype and (b) the genetic independence of the SB locus with respect to DR and DC/MT; and (iii) within an informative family, two siblings differing only for one allele at the SB locus (because of the occurrence of an internal recombination between DR and GLO) and otherwise HLA identical exhibited a restriction enzyme polymorphism linked to the SB locus. Therefore, all available data are compatible with identity between HA beta and SB beta.

Alleles↗

The molecular characterization of three transcriptional mutations in the yeast iso-2-cytochrome c gene.

Three mutations, each of which causes overproduction of iso-2-cytochrome c, were characterized biochemically. Two, CYP3-4 and CYP3-15, were previously shown to be cis-dominant and map to the CYC7 locus which encodes the iso-2 protein, while the third, cyp1-16, maps to an unliked locus. All three mutations caused dramatically increased levels of transcription of the CYC7 gene, and the CYC7 mRNA in mutant cells was found to be the same size as that in wild type cells. The CYP3-4 mutation was found to be caused by the integration of a transposable element, Tyl, 269 base pairs 5' to the coding sequences. The CYP3-15 mutation was also found to alter the DNA, probably through a deletion or inversion with one endpoint 285 base pairs upstream from the coding sequence. The CYC7 gene in both wild type and mutant cells was not subject to catabolite repression.

Base Sequence↗

Sequence of the yeast iso-1-cytochrome c mRNA.

The nucleotide sequence of the yeast iso-1-cytochrome c (CYC1) mRNA is presented. The mRNA was enriched by hybridization to cloned CYC1 DNA attached to a solid matrix: either nitrocellulose filters or diazobenzyloxymethyl cellulose powder. The sequence of the 5'-end of the mRNA was determined by the extension of a CYC1-specific dodecanucleotide primer; the sequence of the 3'-end was determined using a decanucleotide d(pT8-G-A) primer. The CYC1 mRNA begins 61 nucleotides 5' to the AUG initiation codon, extends through the coding sequence to 172 to 175 nucleotides 3' to the UAA termination codon, followed by the poly(A) tail. There are no intervening sequences. Some of the sequences that the CYC1 mRNA shares in common with other eukaryotic mRNAs are discussed.

Base Sequence↗

Characterization of yeast iso-1-cytochrome c mRNA.

The iso-1-cytochrome c mRNA has been identified by hybridization of a 32P probe prepared from a plasmid containing the iso-1-cytochrome c gene to RNA size-fractionated on agarose gels and transferred to paper. A hybridization band was visible with RNA prepared from wild type cells, but not with RNA prepared from an iso-1-cytochrome c deletion mutant. RNA prepared from cells containing a nonsense mutation in the iso-1-cytochrome c gene showed reduced levels of hybridization. The RNA that hybridized to the probe was 700 +/- 50 nucleotides in length and was polyadenylated. The cellular levels of this RNA were repressed by glucose, and this repression was achieved within 5 min after glucose addition to a derepressed culture. No precursors of this RNA were detected in wild type cells or in an RNA1 mutant, temperature-sensitive for RNA metabolism. The length of the 3' noncoding region of this RNA was determined to be 200 +/- 25 nucleotides (excluding the poly(A) tail) and the 5' noncoding region was estimated to be about 120 nucleotides in length.

Base Sequence↗

The seventeenth-century transformation of the hysteric affection, and Sydenham's Baconian medicine.

Before 1600 the 'hysteric affection' was a paroxysmal ailment of women explained as primarily due to the condition or malposition of the womb. During the seventeenth century attention shifted from the womb to the brain. Then Thomas Sydenham's clinical method yielded a view of hysteria which comprehended a wide range of illness with a mental component, and which was related to the whole person. In the course of this paper the relation of the hysteric affection to witchcraft, demonic possession, St Vitus' dance (chorea), hypochondria and melancholy is also noted.

England↗

The effect of H1 and H2 histamine antagonists on symptomatic dermographism.

In ten patients suffering from symptomatic dermographism the combined administration of chlorpheniramine + cimetidine produced a greater reduction in the weal and flare response provoked by a standardized scratch than the administration of chlorpheniramine alone. There was a statistically significant improvement in the overall assessment of the patient's skin condition with the combined administration of chlorpheniramine + cimetidine. Chlorpheniramine given alone produced no significant benefit whilst cimetidine alone produced a marked exacerbation in itching in nearly half the patients who initially entered the study and was sufficient to require withdrawal.

Adolescent↗