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Biomedical subjects

H Harris

Publications and source records attributed to H Harris.

At least 73 records · Page 4Linked to original sources

First identification of a gene defect for hypophosphatasia: evidence that alkaline phosphatase acts in skeletal mineralization.

Hypophosphatasia is a heritable disorder characterized by defective osteogenesis and deficient liver/bone/kidney alkaline phosphatase (L/B/K ALP) activity. Severe forms of the disease are inherited in an autosomal recessive fashion. We examined cultured skin fibroblasts from twelve patients with severe hypophosphatasia. All were deficient in L/B/K ALP activity, yet produced normal levels of the corresponding mRNA. Sequence analysis of L/B/K ALP cDNA isolated from one of the patient-derived fibroblast lines revealed a point mutation that converted amino acid 162 of mature L/B/K ALP from alanine to threonine. The patient was homozygous and the parents, who are second cousins, heterozygous for this mutation. Introduction of the mutation into an otherwise normal cDNA disrupted the expression of active enzyme, demonstrating that a defect in the L/B/K ALP gene resulted in hypophosphatasia and that the enzyme is, therefore, essential for normal skeletal mineralization.

Alkaline Phosphatase↗

Analysis of liver/bone/kidney alkaline phosphatase mRNA, DNA, and enzymatic activity in cultured skin fibroblasts from 14 unrelated patients with severe hypophosphatasia.

Hypophosphatasia is a heritable disorder characterized by defective bone mineralization and a deficiency of liver/bone/kidney alkaline phosphatase (L/B/K ALP) activity in serum and tissues. Severe forms of the disease, which are generally lethal in infancy, are inherited in an autosomal recessive fashion. The gene defects that produce hypophosphatasia are poorly understood, but many are likely to occur at the L/B/K ALP locus. To investigate these gene defects, we analyzed L/B/K ALP DNA, RNA, and enzyme activity in cultured dermal fibroblasts from 14 patients with perinatal or infantile hypophosphatasia and from 12 normal individuals. Southern blot analyses of the L/B/K ALP genes from patients and controls revealed identical restriction patterns. Control fibroblast ALP activity correlated with the corresponding L/B/K ALP mRNA levels estimated by blot hybridization analysis and densitometry (r = .94, P less than .0001). In contrast, fibroblasts from the hypophosphatasia patients were deficient in ALP enzyme activity but expressed apparently full-sized L/B/K ALP mRNA at normal levels. Bone specimens from one of the patients were examined and found to be deficient in histochemical ALP but contained immunologic cross-reactive material detected by anti-human liver ALP antiserum. Our results demonstrate that the deficiency of ALP activity in fibroblasts from 14 patients with severe hypophosphatasia is not due to decreased steady-state levels of the corresponding mRNA. The presence of enzymatically inactive L/B/K ALP protein in one of these patients is consistent with a point mutation or small in-frame deletion in the coding region of L/B/K ALP gene.

Alkaline Phosphatase↗

The biology of tumour suppression.

Evidence is presented for the view that suppression of malignancy in hybrids between malignant and normal cells is achieved in one of two ways. The normal cell either imposes its own pattern of terminal differentiation on the hybrid or it complements a genetic block in the differentiation programme of the malignant cell. The progressive multiplication of malignant cells in the animal is seen as a secondary consequence of blocked differentiation. Karyological examination of hybrids in which malignancy is suppressed is entirely consistent with the view that programmes of differentiation may be governed in a pleiotropic fashion by single genes.

Animals↗

Sequence and characterization of the human intestinal alkaline phosphatase gene.

At least four genes encode the human alkaline phosphatases (ALPs). The genes encoding three of these proteins (intestinal, placental, and placental-like ALPs), are linked on the long arm of chromosome 2, while the fourth gene (encoding liver/bone/kidney ALP) is located on chromosome 1. One of the linked genes, intestinal alkaline phosphatase, has been isolated on two overlapping phage clones and sequenced in its entirety. The gene is composed of 11 exons interrupted by 10 introns. Introns in intestinal, placental, and liver/bone/kidney ALPs occur at analogous positions (see accompanying articles), confirming that these genes arose from a single ancestral ALP gene. Multiple intestinal ALP mRNA species can be detected in RNA isolated from adult and fetal intestine and from cell line RNAs. In cell line RNA, the various species are the result of differential use of at least three of the four polyadenylation signals present in the intestinal ALP gene. A 125-base pair fragment located 5' to the first exon can function as a promoter in mammalian cells. This region contains two putative transcription signals, a TATA-like sequence and a consensus binding site for the transcription factor Sp1.

Alkaline Phosphatase↗

Structure of the human liver/bone/kidney alkaline phosphatase gene.

In man, there are multiple forms of alkaline phosphatase encoded by at least three homologous genes: placental, intestinal, and liver/bone/kidney. This report describes the characterization of the human liver/bone/kidney alkaline phosphatase locus. The gene appears to exist as a single copy in the haploid genome and is comprised of 12 exons distributed over more than 50 kilobases. In liver, kidney, SAOS-2 human osteosarcoma cells, and cultured fibroblasts, there is a single major start for transcription situated about 25 nucleotides downstream of an A/T-rich motif. The promoter region is extremely G/C-rich, is relatively abundant in the dinucleotide CpG, and contains four copies of the consensus sequence for SP1 binding (GGGCGG). The liver/bone/kidney alkaline phosphatase gene is at least five times larger than the intestinal and placental alkaline phosphatase genes, mainly due to intron size differences. Intron-exon junctions occur at analogous positions in all three genes, but there is an extra non-coding exon at the 5' end of the liver/bone/kidney alkaline phosphatase gene. The relevance of our findings with respect to the evolution of the human alkaline phosphatase multigene family is discussed.

Alkaline Phosphatase↗

Validity of arterial hematocrits in newborns.

Various methods are used to obtain specimens for hematocrit determination in neonates. We evaluated arterial sampling and found this method to be acceptable. Arterial values correlated closely with simultaneously obtained venous samples. Venous blood obtained with a tourniquet had a significantly higher hematocrit than that obtained without a tourniquet.

Arteries↗

Regional assignment of the gene for human liver/bone/kidney alkaline phosphatase to chromosome 1p36.1-p34.

We have used three different methods to map the human liver/bone/kidney alkaline phosphatase (ALPL) locus: (1) Southern blot analysis of DNA derived from a panel of human-rodent somatic cell hybrids; (2) in situ hybridization to human chromosomes; and (3) genetic linkage analysis. Our results indicate that the ALPL locus maps to human chromosome bands 1p36.1-p34 and is genetically linked to the Rh (maximum lod score of 15.66 at a recombination value of 0.10) and fucosidase A (maximum lod score of 8.24 at a recombination value of 0.02) loci. These results, combined with restriction fragment length polymorphisms identified by ALPL DNA probes, provide a useful marker for gene mapping studies involving the short arm of chromosome 1. In addition, our results help to elucidate further the structure and evolution of the human alkaline phosphatase multigene enzyme family.

Alkaline Phosphatase↗

Expression of a human placental alkaline phosphatase gene in transfected cells: use as a reporter for studies of gene expression.

The human placental alkaline phosphatase gene has been cloned and reintroduced into mammalian cells. When a plasmid carrying the gene under control of the simian virus 40 early promoter (pSV2Apap) is transfected into a variety of different cell types, placental alkaline phosphatase activity can readily be detected by using whole cell suspensions or cell lysates. Alkaline phosphatase activity can also be visualized directly in individual transfected cells by histochemical staining. The gene is appropriate for use as a reporter in studies of gene regulation since its expression is dependent on the presence of exogenous transcription control elements. The overall assay to detect the expression of the gene is quantitative, very rapid, and inexpensive. Cotransfections of cells with pSV2Apap and a related plasmid carrying the bacterial chloramphenicol acetyltransferase gene (pSV2Acat) indicate that transcription of these two genes is detected with roughly the same sensitivity.

Alkaline Phosphatase↗

A missense mutation in the human liver/bone/kidney alkaline phosphatase gene causing a lethal form of hypophosphatasia.

Hypophosphatasia is an inherited disorder characterized by defective bone mineralization and a deficiency of serum and tissue liver/bone/kidney alkaline phosphatase (L/B/K ALP) activity. Clinical severity is variable, ranging from death in utero (due to severe rickets) to pathologic fractures first presenting in adult life. Affected siblings, however, are phenotypically similar. Severe forms of the disease are inherited in an autosomal recessive fashion; heterozygotes often show reduced serum ALP activity. The specific gene defects in hypophosphatasia are unknown but are thought to occur either at the L/B/K ALP locus or within another gene that regulates L/B/K ALP expression. We used the polymerase chain reaction to examine L/B/K ALP cDNA from a patient with a perinatal (lethal) form of the disease. We observed a guanine-to-adenine transition in nucleotide 711 of the cDNA that converts alanine-162 of the mature enzyme to threonine. The affected individual, whose parents are second cousins, is homozygous for the mutant allele. Introduction of this mutation into an otherwise normal cDNA by site-directed mutagenesis abolishes the expression of active enzyme, demonstrating that a defect in the L/B/K ALP gene results in hypophosphatasia and that the enzyme is, therefore, essential for normal skeletal mineralization.

Alkaline Phosphatase↗

Ganglioside composition in human cataractous nuclei.

Gangliosides were isolated from human cataractous nuclei by solvent extraction, dialysis, and thin-layer chromatography and compared to gangliosides present in human whole normal and cataractous lenses. Three predominant gangliosides were tentatively identified as GM1, GM3, and GD1a, and several other resorcinol-positive components were observed in each of the sets of lens tissue. Thin-layer chromatographic patterns were similar, although some minor and possibly significant differences in band intensities were observed when chromatograms of gangliosides from cataractous nuclei and cataractous whole lenses were visually compared with those of whole normal lenses. Total ganglioside extracts were methanolyzed and the fatty acid methyl esters extracted with hexane and resolved by gas chromatography. Nervonic acid (C-24:1) content was increased in cataractous nuclei as compared to normal and cataractous whole lenses.

Cataract↗

The role of the ras oncogene in the formation of tumours.

A c-Ha-ras 1 oncogene, cloned from the EJ human bladder carcinoma cell line, was inserted into a shuttle vector carrying the selectable marker gene gpt that encodes the enzyme xanthine-guanine phosphoribosyl transferase. This construct, pSV2gptEJ, was transfected into NIH 3T3 cells by the calcium phosphate precipitation method and cells that had incorporated the plasmid were selected by growth in the presence of mycophenolic acid to which gpt confers resistance. A number of transfectant clones were tested for tumorigenicity by inoculation into nude mice. The take incidence was variable and the tumours arose only after a prolonged latent period. Many inocula produced no tumours. These results were consistent with the view that the tumours arose by selective overgrowth of minority cell populations. Cell lines were derived by explantation of these tumours and were back-selected in 2-thioxanthine, a cytotoxic analogue of the xanthine-guanine phosphoribosyl transferase substrate. Five clones were obtained that did not express detectable levels of the c-Ha-ras 1 oncogene product, p21ras. All of them showed a less-transformed morphology than the transfected NIH 3T3 cells from which they originated. Nonetheless three of these clones were found to be tumorigenic at all sites tested. This finding demonstrates that once tumorigenic variants have been selected from the ras-transformed cells, continued production of the p21ras protein is not necessary for the maintenance of tumorigenicity. Cytogenetic analysis revealed that the transfection procedure itself introduced major and stable perturbations of the genome of the transfected cells and confirmed that tumours were produced by selective overgrowth of variants with a chromosome constitution palpably different from that of the majority of the cells injected. In the light of the complex background of genomic changes produced in NIH 3T3 cells by transfection with the c-Ha-ras 1 oncogene, no conclusion can be drawn in genetic terms concerning its dominance.

Animals↗

The extracellular matrix of hybrids between melanoma cells and normal fibroblasts.

It has been shown that when malignant tumour cells are fused with normal fibroblasts the suppression of malignancy in the hybrids is linked to their ability to produce a collagenous extracellular matrix in vivo. When, as a consequence of chromosome loss, segregants arise that reacquire malignancy, these do not produce any detectable matrix. In this paper we examine the main components of the extracellular matrix produced in vitro by hybrids between malignant mouse melanoma cells and normal mouse fibroblasts. Hybrids in which malignancy is suppressed synthesize about ten times as much type 1 procollagen as the malignant segregants derived from them; they also retain more fibronectin in the cell layer and release less protease activity into the medium. Malignant segregants more closely resemble the parental melanoma cells in producing fibronectin and mainly types IV and V procollagen. When hybrid cells in which malignancy is initially suppressed are grown continuously in vitro, the production of type I procollagen declines, and the production of type V procollagen and the release of protease activity into the medium increase. These changes, which are associated with the loss from the hybrid cells of both copies of the chromosome 4 derived from the parental fibroblast, predict the reacquisition of malignancy when the cells are inoculated into mice. It is possible that one gene or set of genes located on chromosome 4 determines both the execution of the fibroblast differentiation programme and the suppression of malignancy.

Animals↗

Subjective effects of 3,4-methylenedioxymethamphetamine in recreational users.

3,4-Methylenedioxymethamphetamine (MDMA; Ecstasy) is a serotonergic neurotoxin in laboratory animals that has been used for recreational purposes by humans. The subjective effects of this drug were determined in recreational users at a university campus. Of individuals who had admitted to using MDMA recreationally, 100 of 143 agreed to complete a detailed questionnaire concerning the subjective effects of this Schedule I compound. The most common effect of MDMA was a heightened sense of "closeness" with other people (90% of subjects). Tachycardia, dry mouth, bruxism and/or trismus were reported by the majority of users. These effects probably result from the amphetaminelike properties of the drug. Visual hallucinations were reported by 20% of users. Untoward side effects were most common on the day following the use of MDMA, with complaints of muscle aches, fatiguability, depression, and difficulty concentrating noted by 21% to 36% of subjects. Sixty-seven percent of frequent users of the drug (six or more separate doses) reported that the "positive" effects of the drug decreased with successive doses while the "negative" effects increased. Although these observations should be considered preliminary, they represent the first documentation of the subjective effects of MDMA in recreational users and confirm previous reports obtained from patients treated with this drug.

3,4-Methylenedioxyamphetamine↗