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Biomedical subjects

M Hagiya

Publications and source records attributed to M Hagiya.

At least 37 records · Page 2Linked to original sources

Hairpin loop and second kringle domain are essential sites for heparin binding and biological activity of hepatocyte growth factor.

Hepatocyte growth factor (HGF) has a strong affinity for heparin. About one fourth of HGF secreted from MRC-5 human embryonic lung fibroblast cells was found to be associated with heparin and heparan sulfate proteoglycan on the cell surface and extracellular matrix. To identify heparin-binding sites within the HGF molecule, we constructed variously deleted mutant HGFs and examined their binding ability to an immobilized heparin column. Native HGF and mutant HGFs, including d-K1 (deletion of the first kringle domain), d-K3 (deletion of the third kringle domain), d-K4 (deletion of the fourth kringle domain), d-beta (deletion of beta-chain), and HK1K2 (consisting of the N-terminal hairpin loop and the first two kringle domains), tightly bound to a heparin column, but d-H (deletion of the N-terminal hairpin loop) and d-K2 (deletion of the second kringle domain) markedly decreased binding ability to the column. These observations suggest that the N-terminal hairpin loop and the second kringle domain are essential for the heparin-binding of HGF. The finding that HK1K2 competed the binding of 125I-HGF to immobilized heparin provided additional evidence that the N-terminal half of HGF alpha-chain is the principal heparin-binding site. The hairpin loop in HGF possesses a cluster of basic amino acid residues and a highly positive net charge, when compared with hairpin loop structures in the other proteins, plasminogen and HGF-like protein. The second kringle domain in HGF has the basic amino acid cluster in the central region. Thus, it is likely that the basic clusters in these domains cooperatively contribute to the binding of HGF to the anionic heparin or heparan sulfate molecule.

Amino Acid Sequence↗

Deletion of kringle domains or the N-terminal hairpin structure in hepatocyte growth factor results in marked decreases in related biological activities.

To determine the essential domain for biological activity in the hepatocyte growth factor (HGF) molecule, we prepared various mutated recombinant HGFs using site-directed mutagenesis, and examined the effects on DNA synthesis in hepatocytes, scattering of MDCK cells and the antiproliferative activity on HepG2 hepatoma cells. Native HGF and mutant HGFs, in which Gln534 and/or Tyr673 were respectively substituted for His and Ser to coincide with the catalytic triad amino acids in plasmin, markedly stimulated DNA synthesis of hepatocytes and scattering of MDCK cells but inhibited DNA synthesis of HepG2 cells. The mutant HGF deleted with the third or fourth kringle domain resulted in marked decrease of all three biological activities, while deletion of the N-terminal hairpin structure or the first or second kringle domain almost completely inactivated biological activities. We propose that the N-terminal hairpin structure and the first and second kringle domains are essential for biological activities of HGF and possibly for binding to its receptor.

Animals↗

Organization of the human hepatocyte growth factor-encoding gene.

Human genomic phage libraries were screened for the human hepatocyte growth factor (HGF)-encoding gene (HGF) using a cDNA encoding the human protein as a probe. Characterization of the clones revealed that this gene is composed of 18 exons interrupted by 17 introns spanning approx. 70 kb. The first exon contains the 5'-untranslated region and the signal peptide. The next ten exons encode the alpha-chain which contains four kringle structures. Each kringle domain is encoded by two exons as observed in other kringle-containing proteins. The twelfth exon contains the short spacer region between the alpha- and beta-chains and the remaining six exons comprise the beta-chain. The beta-chain is structurally similar to the catalytic domains of serine proteases; amino acid substitutions in the active site were found. The organization of the HGF gene is highly homologous to those of the serine proteases involved in blood coagulation and fibrinolysis, especially with that of plasminogen. This suggests that the human HGF gene is evolutionally related to these genes.

Amino Acid Sequence↗

Isolation and expression of cDNA for different forms of hepatocyte growth factor from human leukocyte.

Human leukocyte cDNA library was screened to isolate cDNA clones coding for hepatocyte growth factor using cDNA from human liver as a probe. Nucleotide and deduced amino acid sequences were analyzed for two of four clones obtained. One of them contained an open reading frame coding for a polypeptide chain of 728 amino acid residues like that of cDNA clone derived from human liver. In another clone a spontaneous deletion of 15 base pairs was found within the coding sequence. When expressed transiently using COS-1 cells both clones produced protein with similar biological activity against rat hepatocyte in vitro.

Amino Acid Sequence↗

Changes in breathing patterns after lung operations.

To assess the effects of thoracic surgery on breathing patterns without conscious intervention, we analyzed and compared the breathing patterns observed immediately before and after surgical procedure while anesthesia was maintained with enflurane and nitrous oxide at a constant level in 15 patients undergoing thoracic surgery. Our results showed that immediately after the surgical procedure, respiratory frequency (f) was significantly higher and tidal volume (V(T)) was significantly smaller than those observed immediately before the surgical procedure. The increased f during the period immediately after the surgical procedure was due to shortening of both inspiratory time (T(I)) and expiratory time (T(E)) without changing the ratio of T(I) to the total breath time (T(tot)). Despite the significant decrease in V(T) observed immediately after the surgical procedure, the value of negative pressure during the occluded inspiration (P(max)) was significantly higher than that observed immediately before the surgical procedure. These results indicate that a rapid, shallow type of breathing pattern can occur after thoracic surgery without conscious intervention.

Journal Article↗

Deduced primary structure of rat hepatocyte growth factor and expression of the mRNA in rat tissues.

The primary structure of rat hepatocyte growth factor (HGF) was elucidated by determining the base sequence of the complementary DNA (cDNA) of HGF. The cDNA for rat HGF was isolated by screening a liver cDNA library with oligonucleotides based on the partial N-terminal amino acid sequence of the beta subunit of purified rat HGF. HGF is encoded in an mRNA of about 6 kilobases. Both alpha and beta subunits of HGF are specified in a single open reading frame for a 728-amino acid protein with a calculated molecular weight of 82,904. The N-terminal part of HGF has a signal sequence and a prosequence with 30 and 25 amino acid residues, respectively. The mature heterodimer structure is derived proteolytically from this single pre-pro precursor polypeptide. The calculated molecular weights of the alpha and beta subunits are 50,664 and 25,883, respectively, and each subunit has two potential N-linked glycosylation sites. The amino acid sequence of HGF is 38% identical with that of plasminogen. The alpha subunit of HGF contains four "kringle" structures, and the beta subunit has 37% amino acid identity with the serine protease domain of plasmin. Northern blot analysis revealed that HGF mRNA was expressed in rat various tissues, including the liver, kidney, lung, and brain.

Amino Acid Sequence↗

[Ventilatory effects of halothane and enflurane in dogs].

The ventilatory effects of halothane and enflurane were studied in permanently tracheostomized dogs at the same anesthetic depth of 1 MAC. Inspiratory and expiratory durations were longer and tidal volume greater during enflurane than during halothane anesthesia. Mean inspiratory flow rate and minute ventilation during enflurane anesthesia were less than those during halothane anesthesia. As a result, end-expiratory carbon-dioxide concentration was higher during enflurane than during halothane anesthesia. When end-expiratory carbon-dioxide concentration was held at 7.5%, tidal volume was not different between the two anesthetics, while the difference of other parameters still remained. In addition, the magnitude of Hering-Breuer reflex determined by end-expiratory airway occlusion was essentially identical between halothane and enflurane anesthesia. The present results indicate that 1) depressant effect of enflurane on respiratory drive is greater than that of halothane and 2) the two anesthetics act on the respiratory timing mechanism differently.

Animals↗

Molecular cloning and expression of human hepatocyte growth factor.

Hepatocyte growth factor (HGF) is the most potent mitogen for mature parenchymal hepatocytes in primary culture, and seems to be a hepatotrophic factor that acts as a trigger for liver regeneration after partial hepatectomy and liver injury. The partial purification and characterization of HGF have been reported. We have demonstrated that pure HGF from rat platelets is a new growth factor effective at concentrations as low as 1 ng ml-1. The effects of HGF and epidermal growth factor (EGF) are additive. The activity of HGF is not species-specific, although it does not stimulate growth in Swiss 3T3 fibroblasts. HGF has a relative molecular mass (Mr) of 82,000 and is a heterodimer composed of a large alpha-subunit of Mr 69,000 and a small beta-subunit of Mr 34,000. Here we report the amino-acid sequence of human HGF determined by complementary DNA cloning and the expression of biologically active human HGF from COS-1 cells transfected with cloned cDNA. The nucleotide sequence of the human HGF cDNA reveals that both alpha- and beta-chains are contained in a single open reading frame coding for a pre-pro precursor protein of 728 amino acids.

Amino Acid Sequence↗

Effects of enflurane on contractile response of canine trachealis muscle.

The effect of enflurane anesthesia on bronchomotor tone was studied in 15 dogs, using isolated tracheal segments in situ. In six animals, the changes of tracheal tension in response to changing enflurane concentration were continuously measured while keeping tidal volume, respiratory frequency, and end-tidal PCO2 constant. In nine other dogs, the contractile response to a brief period of apnea was assessed in three planes of anesthesia, namely 0% (baseline anesthesia with pentobarbital), 1%, and 2% of inspired enflurane concentration. In addition, effects of hypercapnia, hypoxia, and changing tidal volume were also examined in three of these nine animals. Furthermore, the magnitude of contraction elicited by electrical stimulation of the recurrent laryngeal nerve (RLN) was determined at each depth of anesthesia in six animals. Increasing enflurane concentrations invariably decreased resting tracheal tension as well as the magnitude of contraction in response to apnea and RLN stimulation in a dose-dependent manner. These data suggest that enflurane not only decreases unstimulated canine bronchomotor tone but also inhibits contraction produced by various stimuli used in the present experiments.

Animals↗

Gene rearrangements of T cell receptor beta and gamma chains in HTLV-I infected primary neoplastic T cells.

Rearrangements of T cell receptor beta and gamma chain (T beta and T gamma) genes were analyzed by Southern blot method in samples from 30 patients with adult T cell leukemia (ATL) and 17 patients with non-ATL T cell neoplasms. The DNA probes used were the constant and joining region of T beta gene and the joining region of T gamma gene. Rearranged bands of T beta gene on one or both allelic chromosomes were detected in all neoplastic T cells, even those of smoldering ATL, in which only a small percentage of peripheral blood T cells were detected as leukemic. T gamma gene was rearranged in the cells of all but one patient, the exception being one ATL patient. In order to test whether any given variable region (V) of T beta gene was expressed in ATL cells, two functionally rearranged V beta sequences of ATL were compared with a V beta sequence from T cells acute lymphoblastic leukemia cells. No significant homologies were noted among the three deduced gene product amino acid sequences, confirming that T beta molecules of ATL cells contained no specific structures in common. The observed heterogeneity of T beta and T gamma gene rearrangements in ATL cells further supported these findings.

Amino Acid Sequence↗

Non-germ-line elements (NGE) are present in the T cell receptor beta-chain genes isolated from the mutant mouse, motheaten (me/me).

Extra nucleotides (which we call NGE, for non-germ-line elements) are inserted at the junctions of rearranged V, D, and J segments in the immunoglobulin heavy and T cell receptor beta-chain V region genes. NGE addition helps diversity HV3 regions of these genes. It is believed that NGE are added enzymatically and without template during the joining process. Terminal deoxynucleotidyl transferase (TdT) is thought to be the cause of NGE formation. TdT is normally detected in murine thymus and bone marrow cells, but its presence in the immunodeficient mutant mouse, Motheaten (me/me), is extremely reduced in these tissues. To determine whether this TdT deficiency could affect NGE formation during the V-D-J joining of antigen receptor genes, we cloned several rearranged T cell receptor beta-chain genes from thymocytes of me/me mice. Our sequence analysis revealed that Motheaten thymus beta-chain genes have approximately 4 base pair NGE, which are comparable in size to the NGE of wild-type genes. These results do not support the idea that TdT is the NGE-forming enzyme, although it is still possible that a low but residual level of TdT is capable of NGE formation in Motheaten. Alternatively, our data may suggest that the TdT activity in Motheaten T cells is normal; however, the number of TdT+ cells is greatly reduced in the Motheaten thymus, due to a severe defect in T cell development.

Animals↗

Two types of immunoglobulin-negative Abelson murine leukemia virus-transformed cells: implications for B-lymphocyte differentiation.

Both alleles of immunoglobulin (Ig) heavy-chain joining region (JH) genes in three Ig-negative Abelson murine leukemia virus (Ab-MuLV)-transformed cell lines were characterized by DNA cloning and nucleotide sequence determination. These studies unambiguously identified two distinct types of Ig-negative B-lineage cells. The first type of cell (e.g., R8) is an "immature pre-B cell," and it contains at least one intermediate recombinant structure containing heavy-chain diversity (DH) and JH sequences but no variable region (VH) sequence. This type of cell, which has also been characterized by other investigators, generates mu-positive sublines during subsequent culturing of cells and represents a precursor stage to pre-B cells. The second type of cell (e.g., RAW253) is an "abortive pre-B cell," in that both JH alleles contain nonfunctional VH-DH-JH structures. The nucleotide sequence determinations in this study demonstrated that these nonfunctional V-D-J structures were generated by nonproductive somatic recombinations, involving either out-of-phase joining events, or the formation of termination codons in the DH coding sequences. The identification of abortive pre-B cells suggests that the recombinational joining of Ig VH, DH, and JH segments is not actively regulated by a putative recombinase to preserve the translational reading frame. This in turn implies that a large portion of precursor cells at the early stage of B-cell differentiation are abortive and possibly blocked to further differentiation.

Abelson murine leukemia virus↗

Identification of pTiC58 plasmid-encoded proteins for virulence in Agrobacterium tumefaciens.

Analyses were made of the host-dependent-variation (hdv) locus of the virulence (vir) region of the pTiC58 plasmid of Agrobacterium tumefaciens. The hdv locus is comprised of at least four genes that encode polypeptides of 13, 15, 29, and 28 kDa. Insertion of transposon Tn5 in the first gene abolishes the expression of all four genes in vitro and in vivo. Nucleotide sequence analysis of the hdv locus revealed four open reading frames tandemly arranged with spacer sequences having no promoter-like sequences and lacking the ability to bind A. tumefaciens RNA polymerase. These studies suggest that the hdv locus is comprised of at least four genes arranged in an operon in the vir region. The protein products of these genes are likely to function in some aspect of the host-range determination of A. tumefaciens.

Amino Acid Sequence↗