Search PubMed⌕ Search

Biomedical subjects

K Hotta

Publications and source records attributed to K Hotta.

At least 73 records · Page 4Linked to original sources

FramePlot: a new implementation of the frame analysis for predicting protein-coding regions in bacterial DNA with a high G + C content.

FramePlot is a web-based tool for predicting protein-coding regions in bacterial DNA with a high G + C content, such as Streptomyces. The graphical output provides for easy distinction of protein-coding regions from non-coding regions. The plot is a clickable map. Clicking on an ORF provides not only the nucleotide sequence but also its deduced amino acid sequence. These sequences can then be compared to the NCBI sequence database over the Internet. The program is freely available for academic purposes at http://www.nih.go.jp/jun/cgi-bin/frameplot.pl.

Amino Acid Sequence↗

Paradoxical decrease of an adipose-specific protein, adiponectin, in obesity.

We isolated the human adipose-specific and most abundant gene transcript, apM1 (Maeda, K., et al., Biochem. Biophys. Res. Commun. 221, 286-289, 1996). The apM1 gene product was a kind of soluble matrix protein, which we named adiponectin. To quantitate the plasma adiponectin concentration, we have produced monoclonal and polyclonal antibodies for human adiponectin and developed an enzyme-linked immunosorbent assay (ELISA) system. Adiponectin was abundantly present in the plasma of healthy volunteers in the range from 1.9 to 17.0 mg/ml. Plasma concentrations of adiponectin in obese subjects were significantly lower than those in non-obese subjects, although adiponectin is secreted only from adipose tissue. The ELISA system developed in this study will be useful for elucidating the physiological and pathophysiological role of adiponectin in humans.

Adiponectin↗

Aggregated human serum immunoglobulin A1 induced by neuraminidase treatment had a lower number of O-linked sugar chains on the hinge portion.

A part of human serum immunoglobulin A1(IgA1) was aggregated by treatment with neuraminidase. Aggregated IgA1 was separated from non-aggregated IgA1 by gel permeation chromatography. The prepared asialo-hinge glycopeptide (asialo-HGP) from both IgA1 subfractions was treated with beta-galactosidase to determine the number of beta-linked sugar chains attached on the hinge region. Removal of the galactose residue from asialo-HGP resulted in the HPLC separation of three major peaks. MALDI-TOFMS analysis of the glycopeptides also indicated the presence of three HGP components with three, four and five N-acetylgalactosamine (GalNAc) residues, respectively. Comparison of their relative content among the glycopeptide components showed a higher content of the HGP component with a lower number of GalNAc residues on aggregated IgA1. Thus, asialo-HGP prepared from aggregated IgA1 induced by neuraminidase treatment had an incomplete core structure of O-linked oligosaccharides. Especially, the result suggested that the reduced number of the attached O-linked oligosaccharides on IgA1 take part in phenomena such as self-aggregation of asialo-IgA1.

Amino Acid Sequence↗

Age-related stimulation by tetragastrin of gastric mucin biosynthesis in rat.

The effects of tetragastrin on gastric mucin biosynthesis in middle-aged rats were compared with those in young rats. The incorporation of [3H]glucosamine and [35S]sulfate into mucin was stimulated by tetragastrin in cultured corpus mucosa from 7-week-old rats. In contrast, tetragastrin could not enhance mucin biosynthesis in stomachs from 52-week-old rats. The isosorbide dinitrate-induced stimulation of corpus mucin biosynthesis observed in middle-aged rats was essentially the same as that seen in young rats. Nitric oxide (NO) synthase activity of the corpus was significantly reduced in the middle-aged rats compared to the young rats. NO synthase-immunoreactivity was observed at surface mucous cells in the corpus mucosa of young, but not of middle-aged, rats. These results suggest that aging decreases the effect of gastrin on gastric mucin biosynthesis through the age-related loss of NO synthase function in the surface mucous cell layer of rat stomach.

Aging↗

Compensatory response of colon tissue to dextran sulfate sodium-induced colitis.

Depletion of goblet cells (the main mucin-producing cells in the colon) is one of the most reliable histological characteristics of ulcerative colitis, whereas a major symptom of this disease is bloody diarrhea containing a large amount of mucus. The discrepancy between these phenomena was investigated in a time-course study in rats with experimental colitis induced by treatment with oral dextran sulfate sodium (DSS) for 1, 3, or 5 days. Biochemical analysis showed a reduction in mucin content in the distal side of the colon that was proportional to the duration of DSS administration. In the proximal side of the colon, however, there was a significant increase in mucin content already on the first day of treatment with DSS. This increase in colonic mucin content continued for the 5 days of treatment. In the distal side, both sulfomucin and sialomucin decreased proportionally to the duration of DSS administration. In the proximal side, there was an increase in high iron diamine-Alcian blue-positive mucins, and confirming the proliferation of goblet cells. The proliferated glands were predominantly sialylated. Goblet cell depletion and an increase in mucin production occurred in different parts of the colon. This phenomenon may be a type of compensatory function of colon tissue in response to the localized decrease of mucin production in certain portions of the colon.

Animals↗

Stimulant effect of nitric oxide generator and roxatidine on mucin biosynthesis of rat gastric oxyntic mucosa.

Although the involvement of nitric oxide (NO) in an increasing gastric mucus metabolism has been reported, information on whether or not its activation is limited to the specific mucus-producing cells is lacking. In this paper, we report the effect of the exogenous NO-donor, isosorbide dinitrate (ISDN), and second-generation histamine H2 receptor antagonist roxatidine (2-acetoxy-N-(3-[m-(1-piperidinylmethyl)phenoxy]propyl)acetamide hydrochloride) which is demonstrated to accelerate the mucin metabolism mediated by endogenous NO, on the mucin biosynthesis in distinct sites and layers of the rat gastric mucosa using an organ culture technique. Radiolabeled mucin was obtained from the tissue of full-thickness and the deep corpus layer, and the antrum of the rat stomach incubated for 5 hr with [3H]glucosamine(GlcN) in vitro. With the addition of ISDN to the culture medium, 3H-labeled mucin in the full-thickness corpus mucosa increased to 124-145% of the control (p<0.05), but not in the antrum. This stimulation of the mucin synthesis disappeared by the removal treatment of the surface mucous cell layer which has immunoreactivity of neuronal NO synthase. Similarly, roxatidine stimulated the mucin biosynthesis in the full-thickness corpus mucosa, but not in the gland mucous cell layer. These results suggest that the stimulation of the mucin biosynthesis mediated by NO is restricted to the surface mucous cells of the rat gastric oxyntic mucosa.

Animals↗

Temporal expression patterns of 39 Brachyury-downstream genes associated with notochord formation in the Ciona intestinalis embryo.

Expression of the Brachyury (Ci-Bra) gene of the ascidian Ciona intestinalis is initiated at the 64-cell stage. Gene expression is restricted to notochord precursor cells, and Ci-Bra plays a key role in notochord differentiation. In a previous study, nearly 50 cDNA clones for potential Ci-Bra-downstream genes that are expressed in notochord cells were isolated. The present determination, by whole-mount in situ hybridization, of the temporal expression patterns of 19 notochord-specific and 20 notochord-predominant genes demonstrated that the timings of initiation of the expression of various genes was not identical. The expression of several genes was initiated as early as the gastrula stage. However, the expression of most of the notochord-specific genes commenced at the neural plate stage. Partial nucleotide sequence data of these clones suggest that genes expressed earlier encode potential transcriptional factors and/or nuclear proteins, while those expressed later encode proteins implicated in cell adhesion, signal transduction, regulation of the cytoskeleton, and components of the extracellular matrix. These gene activities may be associated with changes in cell shape and adhesion during the intercalation and extension of the notochord cells.

Animals↗

Age-related adipose tissue mRNA expression of ADD1/SREBP1, PPARgamma, lipoprotein lipase, and GLUT4 glucose transporter in rhesus monkeys.

Aging has been shown to have an effect on the capacity to differentiate preadipocytes and on the expression of some genes expressed in adipose tissue. The mRNA levels of adipocyte differentiation-related genes were examined in rhesus monkeys (Macaca Mulatta) ranging in age from 7 to 30 years. The effect of aging on the expression of peroxisome proliferator activated receptor gamma (PPARgamma), adipocyte determination- and differentiation-dependent factor 1/sterol regulatory element binding protein 1 (ADD1/SREBP1), CCAAT/enhancer binding protein alpha (C/EBPalpha), lipoprotein lipase (LPL), GLUT4 glucose transporter, and adipsin were examined by slot blot analysis. Significant inverse correlations were observed between age and the mRNA levels of PPARgamma, ADD1/SREBP1, LPL, and GLUT4. The coordinate downregulation of these genes may be linked to the declining fat mass of senescent animals. There was no correlation between age and the mRNA levels of adipsin. The mRNA levels of these genes were not correlated to body weight orfasting plasma insulin. These findings indicate that aging may have an effect on the adipocyte differentiation program and this effect appears to be gene specific.

Adipocytes↗

Exposed peptide core of IgA1 hinge region in IgA nephropathy.

BACKGROUND: The human IgA1 hinge region is a very unique O-linked glycopeptide, and its sialylation and galactosylation recently were reported to be defective in the serum IgA1 derived from patients with IgA nephropathy (IgAN). This study was performed to examine the underglycosylation of the IgA1 hinge region and consequent exposure of the peptide core in IgAN. METHODS: A polyclonal antibody against a synthetic human IgA1 hinge peptide, PVPSTPPTP SPSTPPTPSPS, (anti-sHP ab) was raised in rabbits and shown specifically to recognize the IgA1 which was treated with neuraminidase, beta-galactosidase and alpha-N-acetylgalactosaminidase. The reactivity of the anti-sHP ab against the purified serum IgA1 was compared among the following three groups: 39 patients with IgAN, 30 patients with other renal diseases (ORD) and 21 healthy controls (HC) using an enzyme-linked immunosorbent assay. RESULTS: The reactivity was significantly higher in the IgAN group (mean +/- SD of OD 490 nm: 0.327 +/- 0.059) than in the ORD group (0.274 +/- 0.043, P=0.0002) and in the HC group (0.265 +/- 0.037, P<0.0001). No significant difference was observed between the latter two groups. The frequency of positive cases (> mean +/- 2SD of HC) was 46.2% (18/39) in the IgAN group, 6.7% (2/30) in the ORD group and 0% (0/21) in the HC group. CONCLUSIONS: It was suggested that the peptide core of the IgA1 hinge region is exposed aberrantly by a defective N-acetylgalactosaminylation and plays a possible role in the pathogenesis of IgAN.

Adolescent↗

Rat gastric mucins recognized by monoclonal antibodies RGM21 and HIK1083: isolation of mucin species characteristic of the surface and glandular mucosa.

Whole mucins and reduced subunits were extracted from the corpus of the rat stomach. After purification by Sepharose CL-4B chromatography followed by cesium trifluoroacetate equilibrium centrifugation, they were analyzed by Sepharose CL-2B chromatography, rate-zonal sedimentation centrifugation, and Q-Sepharose chromatography. Monoclonal antibodies RGM21 and HIK1083, which histochemically stained mucins in the surface and glandular mucosa of the rat stomach, respectively, were used to detect the site-specific mucins. Although RGM21- and HIK1083-reactive mucins both had a multimerized structure, the density and size of both the whole mucins and reduced subunits differed, thus indicating the presence of distinct mucin species in the surface and glandular mucosa. The mucin subunits were separated into four fractions, UB, B1, B2a, and B2b, by Q-Sepharose chromatography. HIK1083 reacted mainly with UB, while RGM21 reacted with B1, B2a, and B2b. These results, combined with dot-blot, amino acid, and carbohydrate composition analyses, showed that the surface mucins may consist of three kinds of subunits. In contrast, the glandular mucins may consist of one kind of subunit which differs from that of surface mucins.

Amino Acids↗

TNF-alpha upregulates Gialpha and Gqalpha protein expression and function in human airway smooth muscle cells.

Chronic inflammation is a characteristic feature of asthma. Multiple inflammatory mediators are released within the asthmatic lung, some of which may have detrimental effects on signal transduction pathways in airway smooth muscle. The effects of tumor necrosis factor (TNF)-alpha on the expression and function of muscarinic receptors and guanine nucleotide-binding protein (G protein) alpha-subunits were examined in human airway smooth muscle cells. Cultured human airway smooth muscle cells were incubated in serum-free culture medium for 72 h in the presence and absence of 10 ng/ml of TNF-alpha, after which the cells were lysed and subjected to electrophoresis and Galphai-2, Gqalpha, and Gsalpha protein subunits were detected by immunoblot analysis with specific antisera. TNF-alpha treatment for 72 h significantly increased the expression of Galphai-2 and Gqalpha proteins and enhanced carbachol (10(-7) M)-mediated inhibition of adenylyl cyclase activity and inositol phosphate synthesis. These data provide new evidence demonstrating that TNF-alpha not only increases expression of Galphai-2 and Gqalpha proteins but also augments the associated signal transduction pathways that would facilitate increased tone of airway smooth muscle.

Adenylyl Cyclases↗

Influence of L-365,260, a CCK-B/gastrin receptor antagonist, on tetragastrin-stimulated mucin metabolism in rat gastric mucosa.

The effect of L-365,260, a CCK-B/gastrin receptor antagonist, on gastric mucus metabolism induced by tetragastrin was investigated in rats. In vivo application of L-365,260 at a dose of 3 mg/kg p.o. significantly reduced the tetragastrin (12 microg/kg s.c. )-stimulated gastric acid secretion, but 0.3 mg/kg of L-365,260 did not affect the gastric acid secretion induced by the tetragastrin administration. A single administration of 12 microg/kg of tetragastrin caused an increase in gastric mucin content in the soluble mucus (175% of control), the mucus gel (155% of control) and the surface mucosa (125% of control). L-365,260 at the doses of 0.3 and 3 mg/kg considerably inhibited the tetragastrin-induced mucus secretion in the soluble mucus (70-80% of tetragastrin) and the mucus gel (45-70% of tetragastrin) and resumed the mucus accumulated in the surface mucosa to the control situation (80% of tetragastrin). In the in vitro incubation system of rat gastric mucosa, L-365,260 (0.1-10 micromol/l) caused no significant change in gastric mucin synthesis. An in vivo study also showed that the increase in total gastric mucin content and the distributional changes in mucin content induced by 12 microg/kg of tetragastrin reverted with 3 mg/kg of L-365,260 pretreatment to the control situation. It is evident from these results that the CCK-B/gastrin receptor is involved in the mechanism of the stimulation of mucus secretion and/or mucus accumulation in rat gastric mucosa and not directly concerned with the action of gastrin-induced gastric acid secretion.

Animals↗

Rat gastric mucous gel layer contains sialomucin not produced by the stomach.

The sialylated mucus components of the normal gastric mucosa and mucous gel layer of rats were studied by using various histochemical staining methods including Maackia amurensis II (MAL-II) and Sambucus nigra (SNA) lectins, alcian blue (AB) pH 2.5 -- periodic acid Schiff (PAS) and high iron diamine (HID) -- AB pH 2.5. The acidic and neutral mucins characterized by the AB-PAS staining were abundantly present in the mucous gel layer as well as in the gastric mucosa. The sialomucin characterized by HID-AB was barely found in either the mucous gel layer or the mucosa. The sialomucin positive to MAL-II and SNA, which react with the N-acetyl neuraminic acid residue linked to galactose via an alpha-linkage, was moderately detected only in the mucous gel layer, but not in the entire mucosal layer. Furthermore, in animals given surgery to form an esophageal fistula through which saliva was excluded or in animals subjected to salivectomy, the mucous gel layer stained with MAL-II and SNA lectins was markedly decreased. These results indicate that a part of the sialomucin containing-mucous gel layer covering normal rat gastric mucosa originates from the saliva and that MAL-II and SNA lectins are useful for detecting this specific sialomucin.

Animals↗

Underglycosylation of IgA1 hinge plays a certain role for its glomerular deposition in IgA nephropathy.

This study was performed to isolate and investigate the IgA1 that could accumulate in glomeruli (glomerulophilic IgA1). IgA1 was fractionated by the electric charge and the reactivity to Jacalin. Serum IgA1 of IgA nephropathy patients was separated and fractionated using a Jacalin column and subsequent ion-exchange chromatography. The fractions were divided into three groups of relatively cationic (C), neutral (N), and anionic (A). IgA1 was also divided into Jacalin low (L), intermediate (I), and high (H) affinity fractions by serial elution using 25, 100, and 800 mM galactose. The left kidneys of Wistar rats were perfused with 2, 5, or 10 mg of each group of IgA1. The rats were sacrificed 15 min, 30 min, 3 h, or 24 h after the perfusion. The accumulation of each IgA1 in the glomeruli was then observed by immunofluorescence. The IgA1 of the fractions N and H separated by the two methods was definitely accumulated in the rat glomeruli with a similar pattern. The electrophoresis revealed that the macromolecular IgA1 was increased in fraction H compared with other fractions. Therefore, Jacalin high-affinity IgA1(fraction H) was applied on a diethylaminoethyl column and divided into electrically cationic (HC), neutral (HN), and anionic (HA). Only the asialo-Galbeta1,3GalNAc chain was identified in the fraction HN IgA1 by gas-phase hydrazinolysis. Furthermore, the IgA1 fraction was strongly recognized by peanut agglutinin, Vicia Villosa lectins, and antisynthetic hinge peptide antibody. These results indicated that the IgA1 molecules having the underglycosylated hinge glycopeptide played a certain role in the glomerular accumulation of IgA1 in IgA nephropathy.

Animals↗

Enzymatic 1-N-acetylation of paromomycin by an actinomycete strain #8 with multiple aminoglycoside resistance and paromomycin sensitivity.

An actinomycete strain #8 with multiple aminoglycoside (AG) resistance and paromomycin (PRM) sensitivity was examined for its capability of enzymatic modification of AGs. Cell free extracts from the strain converted all of the examined AGs including PRM in the presence of acetyl CoA. PRM was completely modified to at least two products (major and minor spots upon TLC) without significant reduction of the antibiotic activity of the reaction mixture. The structure determination and antibiotic assay of the purified major product revealed l-N-acetylPRM and its antibiotic activity (12% activity of PRM), indicating the existence of AAC(1). It was thus obvious that the 1-N-acetylation of PRM did not cause PRM resistance. Apramycin, the substrate of the known AAC(1), was not readily acetylated, suggesting that the AAC(1) of strain #8 is a new type. Two diacetylated products (1,2'-di-N-acetylPRM and 1,6"'-di-N-acetylPRM) were found in the minor spot, suggesting the existence of additional AACs.

Acetylation↗

Role of aminoglycoside 6'-acetyltransferase in a novel multiple aminoglycoside resistance of an actinomycete strain #8: inactivation of aminoglycosides with 6'-amino group except arbekacin and neomycin.

From a rare actinomycete strain #8 isolated from soil as arbekacin (ABK) resistant, we cloned a gene segment (0.9 kb) conferring multiple resistance to aminoglycoside (AG) antibiotics with 6'-NH2 including semisynthetic ones except ABK and neomycin (NM). Enzymatic modification using cell free extracts from Streptomyces lividans TK21/pANT-S2 carrying the cloned gene revealed that the gene coded for an AG 6'-acetyltransferase [AAC(6')] capable of acetylating all of the tested AGs with 6'-NH2 including semisynthetic ones and astromicin. The substrate specificity of the enzyme was thus similar to that of AAC(6')-Ie of Enterococcus faecalis. Antibiotic assay revealed a weak but clear antibiotic activity of 6'-N-acetylABK (8% of ABK activity) in contrast with substantial inactivation by the AAC(6') of the other AGs including amikacin and isepamicin. The NM acetylation by the AAC(6') also did not result in NM inactivation. It seems thus likely that AAC(6')-dependent resistance to ABK and NM, if it emerges, will remain at low level.

Acetylation↗

[Necessity and usefulness of detection by PCR of mecA and aac(6')/aph(2") genes for identification of arbekacin-resistant MRSA].

Arbekacin (ABK)-resistant bacteria (43 strains) isolated as MRSA by regular clinical procedures in Japanese clinics in 1998 were characterized in terms of taxonomic properties, aminoglycoside resistance, and mecA and aac(6')/aph(2") genes linking with ABK-resistant MRSA. Taxonomically the 43 strains fell into Staphylococcus aureus (33 strains) and Enterococcus (10 strains). As to ABK resistance, the 13 strains of MRSA clinically reported as high ABK resistance (128 micrograms/ml or higher) did not show clear high ABK resistance except for 2 strains when their ABK resistance was tested using 0.5% NaCl containing nutrient agar. We designed and established the primers and conditions for PCR to detect the above two resistance genes. PCR analysis of DNAs from the 43 strains clearly indicated that only 33 strains identified taxonomically as S. aureus possessed mecA indicating MRSA and 23 out of them possessed aac(6')/aph(2"). The other 10 strains of MRSA lacking aac(6')/aph(2") were ABK-sensitive. Thus, there were a good correlation between ABK resistance and aac(6')/aph(2") existence. Based on these, it was conclusive that the appropriate ABK resistance test as well as the detection of mecA and aac(6')/aph(2") genes by PCR are necessary and useful to avoid false ABK-resistant MRSA strains.

Acetyltransferases↗