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Biomedical subjects

N Tanahashi

Publications and source records attributed to N Tanahashi.

At least 19 recordsLinked to original sources

Transient vasodilatory effects of adrenomedullin on cerebral parenchymal microvessels in cats.

We studied the effects of adrenomedullin, structural homology of calcitonin gene-related peptide (CGRP), on the cerebral parenchymal microvessels in cats by our photoelectric method. Adrenomedullin significantly increased cerebral blood volume (CBV) at 0.5 and 1 min after intracarotid injection (0.01-1 nmol/kg, maximum; +0.71 vol% for 0.1 nmol/kg adrenomedullin). Adrenomedullin antagonist, adrenomedullin22-62 (0.01-10 nmol/kg), caused no significant changes in CBV and mean arterial blood pressure. Preinjection of 10 nmol/kg adrenomedullin22-52 blocked the vasodilatory effect of 0.01 nmol/kg adrenomedullin (P < 0.05). Pretreatment of 1 nmol/kg CGRP8-37, which has antagonistic activity against CGRP, also inhibited the vasodilatation of adrenomedullin. The degree of CBV reduction after adrenomedullin22-52 injection was greater than that after CGRP8-37 injection. Adrenomedullin has no major role in the maintenance of resting tone of intracerebral parenchymal vessels. Intravascularly administered adrenomedullin dilates cortical microvessels mainly through the specific adrenomedullin receptor.

Adrenomedullin

The proteasome-dependent proteolytic system.

The 20S proteasome is an intriguingly large complex that acts as a proteolytic catalytic machine. Accumulating evidence indicates the existence of multiple factors capable of regulating the proteasome function. They are classified into two different categories, one type of regulator is PA700 or PA28 that is reversibly associated with the 20S proteasome to form enzymatically active proteasomes and the other type including a 300-kDa modulator and PI31 indirectly influences proteasome activity perhaps by promoting or suppressing the assembly of the 20S proteasome with PA700 or PA28. Thus, there have been documented two types of proteasomes composed of a core catalytic proteasome and a pair of symmetrically disposed PA700 or PA28 regulatory particle. Moreover, the recently-identified proteasome containing both PA28 and PA700 appears to play a significant role in the ATP-dependent proteolytic pathway in cells, as can the 26S proteasome which is known as a eukaryotic ATP-dependent protease.

Adenosine Triphosphatases

Pathologic findings of silent, small hyperintense foci in the basal ganglia and thalamus on MRI.

We analyzed the pathologic features of silent, small hyperintense foci in the basal ganglia and thalamus on MRI T2-weighted images (T2WI). Eight foci were histologically lacunar infarcts (LI), and 21 were dilated perivascular spaces (DPS). The foci with smooth margins were mostly DPS, whereas those with irregular margins were mostly LI (p = 0.018). Most putaminal foci were DPS, whereas most thalamic foci were LI (p = 0.001). The mean areas of LI and DPS overlapped below 19.6 mm2. The shape and site of hyperintense foci on T2WI are important for differentiating LI from DPS.

Aged

Contribution of proline residue for efficient production of MHC class I ligands by proteasomes.

Proteasomes are processing enzymes capable of generating major histocompatibility complex (MHC) class I ligands, but the mechanism of how they excise ligands without destroying them is largely unknown. Previously, we reported that most products of ornithine decarboxylase degraded in vitro by the 26 S ATP-dependent proteasome, which contained one or two Pro residues (Tokunaga, F., Goto, T., Koide, T., Murakami, Y., Hayashi, S., Tamura, T., Tanaka, K., and Ichihara, A. (1994) J. Biol. Chem. 269,17382-17385), which implied that the Pro residue has a role in the escape from random cleavage by proteasomes. Here, we examine the role of the Pro residue in producing MHC class I ligands in vitro. Proteasomes generated two cytotoxic T lymphocyte-epitopic precursor peptides, SIIPGLPLSL and DMYPHFMPTNL, from the 29-mer and 25-mer peptides harboring these sequences, which are derived from the c-akt proto-oncogene and the pp89 protein of mouse cytomagalovirus, respectively. Replacement of the first or second Pro residue within these epitopes by Ala resulted in a marked reduction of this epitope-derived production or their random cleavage by proteasomes, irrespective of the presence of PA28, which greatly accelerates the generation of unmodified ligands. Moreover, replacement of a single amino acid residue other than Pro in both epitopic and flanking regions by Ala or Leu had no or little appreciable effect on the SIIPGLPLSL or its derivative production. Thus, Pro residue(s) within these epitopic sequences presumably contributes to efficient production of MHC class I ligands through prevention of their random cleavage by proteasomes.

Amino Acid Sequence

Platelet adhesion to aortic endothelial cells in vitro after thrombin treatment: observation with video-enhanced contrast microscopy.

Secondary thrombus formation following arterial occlusion is suggested to play an important role in the exacerbation of ischemic organ damage. We investigated the effect of thrombin on endothelial cells from the aspect of morphological changes and induction of platelet adhesion to the endothelial cells. Using a video-enhanced contrast microscopy, we observed human aortic endothelial cells (HAEC) following perfusion of human alpha-thrombin of 1.0 U/ml (n = 7) or vehicle (n = 7) for 30 minutes. The endothelial cells began to shrink 15 minutes after thrombin administration. Gaps between the cells were formed. The cells became rearranged orderly in the same direction 30 minutes later. In another study, following pretreatment with human alpha-thrombin 1.0 U/ml (n = 10) or vehicle (n = 7) for 20 minutes and washout, platelets were perfused over HAEC for 30 minutes. Platelets adhered directly to thrombin-treated endothelial cells and became flat on the endothelial cells. Then other platelets were observed to approach to the flattened platelets and aggregated onto it. After washout of floating platelets, adhesion of platelets was further confirmed. These results suggest that thrombin may be involved in the endothelial damage and formation of platelet thrombi on the endothelial cells after blood flow disturbance.

Aorta

cDNA cloning and characterization of a human proteasomal modulator subunit, p27 (PSMD9).

We have employed cDNA cloning to deduce the complete primary structure of a new subunit, designated p27, of the modulator trimer complex that stimulates the association of the PA700 regulator with the catalytic 20S proteasome to form the ATP-dependent active 26S proteasome. We found two distinct cDNAs encoding two highly homologous proteins except in the C-terminal region, which are termed tentatively p27-1 and p27-2. The short p27-2 cDNA has a deletion of 65 bp near the 3'-end region of the long p27-1 cDNA, which encodes a large protein with an extended C-terminal region, designated p27-L, whereas the long p27-1 cDNA encodes a small protein named p27-S. The polypeptides of p27-L and p27-S consist of 223 and 209 amino acid residues with calculated molecular masses of 24,852 and 22,764 and isoelectric points of 6.50 and 5.28, respectively. Immunoblot analysis with anti-p27 antibody revealed that p27, together with two other ATPase components, TBP1 and p42, was associated with not only the modulator complex but also significantly with the 26S proteasome complex, suggesting that the three are common/sharing subunits in these two complexes. By the fluorescence in situ hybridization method, the p27 (PSMD9) gene was mapped to the q24.2-q24.3 band of human chromosome 12. Computer-assisted homology analysis revealed the high sequence similarities of p27-L with a possible counterpart in Caenorhabditis elegans and Saccharomyces cerevisiae whose function is yet unknown, the yeast gene that is here termed NAS2 (non-ATPase subunit 2). Disruption of NAS2 had no effect on cell viability, indicating that the subunit is not essential for proliferation of yeast cells.

Adenosine Triphosphatases

The proteasome is involved in angiogenesis.

The proteasome is a recently identified intracellular protease whose catalytic active site is a threonine residue and has been shown to play key roles in a variety of important intracellular events, including cell cycle progression, the antigen-presenting pathway, and apoptosis. However, its biological significance in multicellular organisms is still largely unknown because of lack of experimental systems for its study. Here we verified potential involvement of the proteasome in angiogenesis using lactacystin, a specific proteasome inhibitor. Lactacystin treatment resulted in almost complete prevention of in vivo neovascularization in the developing chick embryo chorioallantoic membrane. It also inhibited vascular endothelial tube formation on Matrigel, a model for in vitro angiogenesis, in a concentration-dependent fashion. Moreover, it prevented production of plasminogen activator, an important protease responsible for induction of angiogenesis, by endothelial cells, which correlated well with its suppression of intracellular proteasome activity. Our studies suggest that the proteasome operates in the process of angiogenesis, a phenomenon essential in important physiological and pathological settings.

Acetylcysteine

Chromosomal localization and immunological analysis of a family of human 26S proteasomal ATPases.

The 26S proteasome is a eukaryotic ATP-dependent protease functioning as a protein death machine. It is a large multisubunit complex, consisting of a catalytic 20S proteasome and two regulatory modules, named PA700. The PA700 complex is composed of multiple subunits of 25-110 kDa, which are classified into two subgroups, a subgroup of at least 6 ATPases that consitute a unique multi-gene family encoding homologous polypeptides conserved during evolution and a subgroup of approximately 15 non-ATPase subunits, most of which are structurally unrelated to each other. In the present study, we report the chromosomal localization and immunological properties of six members of the human 26S proteasomal ATPase family. By use of the fluorescence in situ hybridization method, the S4 (PSMC1), MSS1 (PSMC2), TBP1 (PSMC3), TBP7 (PSMC4), p45 (PSMC5), and p42 (PSMC6) genes were mapped to human chromosomes 19p13.3, 7q22.1-q22.3, 11p11.2, 19q13.11-q13.13, 17q23.1-q23.3, and 12q15, respectively, indicating that the genes for multiple ATPases of the 26S proteasome are located on different chromosomes. Immunoblot analysis revealed that all these ATPases were associated with the purified 26S proteasome and that some of them showed striking heterogeneity in their electrical charges.

Adenosine Triphosphatases

Hydrogen peroxide enhances phagocytic activity of ameboid microglia.

Microglia are considered to serve as a guardian of the brain. In achieving this task, they have been observed to transform into a reactive form and then an ameboid form. Several substances are implicated in the control of such behavior. We examined the effect of hydrogen peroxide on cultured microglia of ameboid form obtained from the fetal rat brain employing video-enhanced contrast-differential interference contrast microscopy. Microglia harvested from the culture bottle were observed to float in a spherical shape with abundant filopodia on the surface. However, on coming into contact with the glass surface of a cover slip, they immediately transformed into an ameboid form. The microglia spread themselves out, surrounded by thin transparent lammellipodia, which would not be clearly observable by either light microscopy or electron microscopy. In a concentration-dependent fashion, 10(-3)-10(-1) M hydrogen peroxide solution enhanced the ruffling process of the lamellipodia and formation of vesicles (phagosomes), which displayed a typical phagocytotic form. It is concluded that an increase in free radicals in ischemic tissue tends to facilitate the phagocytosis of ameboid microglia as macrophages.

Animals

cDNA cloning and functional analysis of p44.5 and p55, two regulatory subunits of the 26S proteasome.

We have employed cDNA cloning to deduce the complete primary structures of p44.5 and p55, two subunits of PA700, a 700-kDa multisubunit regulatory complex of the human 26S proteasome. These polypeptides consist of 422 and 456 amino acids with calculated molecular masses of 47463 and 52903, and isoelectric points of 6.06 and 7.56, respectively. Computer-assisted homology analysis revealed high sequence similarities of p44.5 and p55 with yeast proteins whose functions are yet unknown. Disruption of the yeast genes, termed NAS4 and NAS5 (non-ATPase subunits 4 and 5), resulted in lethality, indicating that each of the two subunits is essential for proliferation of yeast cells.

Amino Acid Sequence

Double-cleavage production of the CTL epitope by proteasomes and PA28: role of the flanking region.

BACKGROUND: Proteasomes are known to produce major histocompatibility complex (MHC) class I ligands from endogenous antigens, and the gamma-interferon-inducible proteasome activator PA28 has been thought to play an important role in the generation of immunodominant MHC ligands by proteasomes. Several attempts have been made to show that proteasomes have the ability to yield cytotoxic T lymphocyte (CTL) epitopes effectively from model polypeptides derived from viral and intracellular proteins in vitro, but their antigen processing mechanism is poorly understood. RESULTS: Proteasomes produce the tumour rejection antigen precursor peptide pRL1b (SIIPGLPLSL), but not pRL1a (IPGLPLSL), bound to the H-2Ld molecule, from synthetic peptides covering the CTL epitope. This double cleavage production of pRL1b by proteasomes seemed to depend on the length of the flanking regions adjacent to either end of the CTL epitope, in which their successive deletions caused the almost complete prevention of pRL1b excision. The newly identified PA28 collaborates with proteasomes for efficient production of pRL1b, by promoting not only single cleavage of all susceptible peptides, but also dual cleavage in some peptides harboring certain characteristic lengths. CONCLUSION: The flanking regions outside pRL1b of suitable length appear to be essential for the correct CTL epitope production, possibly functioning as anchors to trap target peptides for proteasomal degradation. We propose a novel mechanism for dual-cleavage excision of immunodominant epitopes by proteasomes and PA28.

Amino Acid Sequence

Molecular properties of the proteasome activator PA28 family proteins and gamma-interferon regulation.

BACKGROUND: Recent cDNA cloning of two homologous proteasome activators, PA28 alpha and PA28 beta, indicated the presence of a structurally related third protein, Ki antigen, but a functional relationship between Ki antigen and the two PA28 proteins is unknown. Accumulating evidence has implicated an important role for PA28 in the major histocompatibility complex (MHC) class I-restricted antigen processing pathway. Recently, an immunomodulatory cytokine gamma-interferon (gamma-IFN) was found to increase greatly the messages for PA28 alpha and PA28 beta, but not Ki antigen, in human cells. RESULTS: Ki antigen was co-immunoprecipitated with the 20S proteasome by anti-proteasome antibody, and associated reversibly with the 20S proteasome, as observed for PA28 alpha and PA28 beta. Therefore, Ki antigen was renamed PA28 gamma. Anti-PA28 gamma antibody, however, did not immunoprecipitate PA28 alpha and PA28 beta. gamma-IFN caused an almost complete loss of the PA28 gamma protein in cells without affecting its mRNA level, whereas the levels of both mRNA and protein for PA28 alpha and PA28 beta were coordinately upregulated by gamma-IFN. Finally we showed that the human chromosomal genes of PA28 alpha and PA28 gamma were located on 14q11.2 and 17q21.32-21.33, respectively. CONCLUSION: PA28 gamma (equivalent to Ki antigen) is a new member of the PA28 family proteins. It exists as a unique homopolymer under non-denaturing conditions. gamma-IFN was found to induce the expression of PA28 alpha and PA28 beta, whereas it caused almost complete loss of the PA28 gamma protein in cells. The reciprocal expression of the PA28 family proteins may imply their involvement in distinct biological processes.

Amino Acid Sequence

Yeast counterparts of subunits S5a and p58 (S3) of the human 26S proteasome are encoded by two multicopy suppressors of nin1-1.

Nin1p, a component of the 26S proteasome of Saccharomyces cerevisiae, is required for activation of Cdc28p kinase at the G1-S-phase and G2-M boundaries. By exploiting the temperature-sensitive phenotype of the nin1-1 mutant, we have screened for genes encoding proteins with related functions to Nin1p and have cloned and characterized two new multicopy suppressors, SUN1 and SUN2, of the nin1-1 mutation. SUN1 can suppress a null nin1 mutation, whereas SUN2, an essential gene, does not. Sun1p is a 268-amino acid protein which shows strong similarity to MBP1 of Arabidopsis thaliana, a homologue of the S5a subunit of the human 26S proteasome. Sun1p binds ubiquitin-lysozyme conjugates as do S5a and MBP1. Sun2p (523 amino acids) was found to be homologous to the p58 subunit of the human 26S proteasome. cDNA encoding the p58 component was cloned. Furthermore, expression of a derivative of p58 from which the N-terminal 150 amino acids had been removed restored the function of a null allele of SUN2. During glycerol density gradient centrifugation, both Sun1p and Sun2p comigrated with the known proteasome components. These results, as well as other structural and functional studies, indicate that both Sun1p and Sun2p are components of the regulatory module of the yeast 26S proteasome.

Amino Acid Sequence

Prognostic value of admission blood pressure in patients with intracerebral hemorrhage. Keio Cooperative Stroke Study.

BACKGROUND AND PURPOSE: Patients with acute stroke on admission to the hospital are often found to have high blood pressure. The purpose of the present study was to investigate the prognostic value of admission blood pressure in patients with acute intracerebral hemorrhage, including putaminal, thalamic, subcortical, cerebellar, and pontine hemorrhage. METHODS: A total of 1701 patients with intracerebral hemorrhage of the putamen (n = 776; mean +/- SD age, 58 +/- 14 years) thalamus (n = 538; 63 +/- 12 years), subcortex (n = 153; 61 +/- 16 years), cerebellum (n = 110; 64 +/- 11 years), and pons (n = 124; 59 +/- 13 years) were examined. The mean blood pressure on admission in patients with a fatal outcome was compared with that in patients who survived. RESULTS: The mean age in each patient group (putaminal, thalamic, subcortical, cerebellar, and pontine hemorrhage) with fatal outcome was older than that with nonfatal outcome, while ANCOVA indicated no correlation between age and blood pressure on admission or age and volume of hematoma. The mean arterial blood pressure on hospital admission was 126.9 +/- 25.8 mm Hg (+/-SD) in cases of putaminal. 127.4 +/- 22.6 mm Hg in thalamic, 116.4 +/- 20.6 mm Hg in subcortical, 123.5 +/- 23.9 mm Hg in cerebellar, and 133.0 +/- 26.0 mm Hg in pontine hemorrhage. The mean blood pressure on admission in patients with a fatal outcome among those with putaminal (136.0 +/- 36.3 mm Hg) and thalamic (133.2 +/- 22.1 mm Hg) hemorrhage was significantly higher than that in those with a nonfatal outcome (123.8 +/- 20.6 mm Hg for putaminal, 101.6 +/- 22.5 mm Hg for thalamic) (P < .01). No correlation between mean blood pressure and outcome was observed in the patients with subcortical (116.5 +/- 22.2 mm Hg for nonfatal, 114.9 +/- 22.0 mm Hg for fatal outcome), cerebellar (125.2 +/- 22.2 mm Hg, 116.9 +/- 28.8 mm Hg), and pontine (129.9 +/- 23.8 mm Hg, 136.0 +/- 27.7 mm Hg) hemorrhage. The volume of hematoma on admission in patients with fatal outcome with putaminal (58.2 +/- 24.4 mL), thalamic (27.0 +/- 13.1 mL), subcortical (32.9 +/- 14.4 mL), and cerebellar (31.4 +/- 28.6 mL) hemorrhage was greater than that in those with nonfatal outcome (20.8 +/- 11.4 mL, 7.1 +/- 4.8 mL, 18.3 +/- 10.6 mL, and 8.1 +/- 4.2 mL, respectively; P < .01), while no correlation between volume of hematoma and outcome was observed in patients with pontine hemorrhage. CONCLUSIONS: The above data suggest that an increased mean blood pressure and volume of hematoma on admission in putaminal and thalamic hemorrhage were related to increased mortality, while in patients with subcortical, cerebellar, and pontine hemorrhage, the mean blood pressure was not related to the clinical outcome.

Age Factors

Superacute phase blood pressure elevation may relate to massive hematoma in hypertensive putaminal hemorrhage.

A restrospective clinical investigation has been performed to elucidate the relationship between hematoma size in putaminal hemorrhage and blood pressure (BP) changes during the immediate post-hemorrhagic phase in the emergency room (ER). Thirty-seven adult patients brought to the emergency department by ambulance within 6 hours after onset of symptoms with a confirmed diagnosis of acute putaminal hemorrhage on CT have been involved. Two BP measurements during the superacute phase in the ER have been studied: immediately after arrival at the ER (BP-I), and immediately prior to CT examination (BP-II). Patients have been divided into 6 categories: 1) those whose BP decreased with treatment (D+), 2) those whose BP decreased without treatment (D-), 3) those whose BP increased in spite of treatment (I+), 4) those whose BP increased without treatment (I-), 5) those whose BP remained unchanged in spite of treatment (U+), and 6) those whose BP remained unchanged without treatment (U-). Hematoma size has been compared among 5 categories (D+, D-, I-, U+, U-) using factorial ANOVA (analysis of variance). The hematoma sizes have been found to be (D+) 54 +/- 44 ml, (D-) 22 +/- 25 ml, (I-) 102 +/- 58 ml, (U+) 11 +/- 5 ml, (U-) 21 +/- 9 ml (mean +/- S.D.), respectively. (I-) has been significantly larger than any of the other categories (p < 0.001 - 0.05). Additional ANOVA has shown that BP-II in category (I-) was significantly higher than that of the other categories. Patients with putaminal hemorrhage whose BP was elevating during the superacute phase in the ER were shown to have massive hematomas.

Acute Disease

[Clinical features of 5 cases of tuberculous meningitis--with special reference to brain CT and MRI findings].

We evaluated the clinical features of 5 cases of tuberculous meningitis who had been admitted to our department from 1987 to 1994. Three patients were male and two were female. Their age ranged from 17 to 74 years old. All cases were examined by both CT and MRI before and during antituberculous treatment. Before the treatment, CT scan revealed abnormal findings such as nodular lesion suggesting tuberculoma, subarachnoid contrast enhancement or cerebral infarction in 2 cases, while MRI revealed abnormal findings such as inflammatory lesions with Gd-enhancement in 4 out of 5 patients. During the treatment, all abnormal findings except cerebral infarction disappeared. No abnormal findings were detected by CT. MRI and SPECT in one case who showed right hemiparesis and motor aphasia. In summary, CT scan could demonstrate abnormal findings in only a small portion of patients with tuberculous meningitis. One the other hand, MRI revealed various abnormal findings in most patients, and could reveal some lesions which could be responsible for the symptoms of patients. In a few patients, however, MRI could not show any lesion in spite of obvious focal neurological signs. MRI is considered to be useful for detecting the lesions in most patients with tuberculous meningitis, although its findings are not always specific for the disease.

Adolescent