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Biomedical subjects

H Ohta

Publications and source records attributed to H Ohta.

At least 73 records · Page 4Linked to original sources

Isolation of the protease component of maize cysteine protease-cystatin complex: release of cystatin is not crucial for the activation of the cysteine protease.

The maize cysteine protease complex, which required SDS for its activation in vitro, is a 179 kDa trimeric complex (P-I)3 of a cysteine protease (P) [EC 3.4.22] and a cysteine protease inhibitor (I), cystatin [Yamada et al. (1998) Plant Cell Physiol. 39: 106, Yamada et al. (2000) Plant Cell Physiol. 41: 185]. Here, we show the mechanism of the SDS-dependent activation of the trimeric (P-I) complex and stabilization of the activated protease by its specific substrates. The cystatin-free cysteine protease isolated by preparative SDS-PAGE was still specifically activated by SDS, and its profile of SDS-dependency was exactly the same as that of the trimeric (P-I) complex. It is, therefore, evident that an SDS-dependent conformational change of the protease itself, rather than the release of cystatin from the complex, is crucial for the activation. Pre-treatment analysis with SDS revealed that SDS was required for the initiation of the activation of the trimeric (P-I) complex. Furthermore, we found that once the protease was activated, if there was no substrate, it was rapidly inactivated under optimum conditions of proteolysis, and showed that such inactivation was not due to autolysis of the protease. In contrast, addition of specific substrates prevented the inactivation, and thus we presumed that the activity of the cysteine protease is regulated by both activation by conformational change and rapid inactivation after consumption of substrates.

Cystatins↗

Identification of functional domains of the extrinsic 12 kDa protein in red algal PSII by limited rroteolysis and directed mutagenesis.

The extrinsic 12 kDa protein in red algal photosystem II (PSII) functions to minimize the chloride and calcium requirement of oxygen-evolving activity [Enami et al. (1998) Biochemistry 37: 2787]. In order to identify functional domains of the 12 kDa protein, we prepared the 12 kDa protein lacking N-terminal peptides or C-terminal peptides or both by limited proteolysis and directed mutagenesis. The resulting 12 kDa protein fragments were examined for their binding and functional properties by reconstitution experiments. (1) A peptide fragment from Gly-6 to C-terminus of the 12 kDa protein was prepared by V8 protease. This fragment rebound to PSII completely, and it reactivated oxygen evolution partially in the absence of Cl(-) and Ca(2+) ions but significantly in the presence of Cl(-) ion. (2) A peptide from Leu-10 to Phe-83 was obtained by chymotrypsin treatment. This peptide rebound to PSII effectively, but the rebinding did not restore oxygen evolution in both the absence and presence of Cl(-) and Ca(2+) ions. (3) Two mutant proteins, one lacking five residues and the other lacking nine residues of the N-terminus, were able to bind to PSII effectively. Recovery of oxygen evolution by their binding was almost the same as that reconstituted with the V8 protease-treated peptide. (4) Three mutant proteins lacking ten, seven or three residues of the C-terminus effectively rebound to PSII, but their binding did not result in recovery of the oxygen evolution. In contrast, reconstitution with a mutant protein lacking one residue of the C-terminus showed the same high restoration of oxygen evolution as reconstitution with the full-length 12 kDa protein. (5) These results indicate that two residues from lysine of the C-terminus of the 12 kDa protein constitute an important domain for minimizing the chloride and calcium requirement of oxygen evolution. In addition, the N-terminus of the protein, at least five residues, has a secondary function for the chloride requirement.

Algal Proteins↗

Effects of counseling on climacteric symptoms in Japanese postmenopausal women.

OBJECTIVES: We objectively assessed the effects of counseling on climacteric symptoms in Japanese postmenopausal women. METHODS: Symptoms in 44 women (age, 51.4 +/- 3.4 years; period after menopause, 3.6 +/- 3.4 years) treated with counseling were evaluated according to the Keio modified menopause index. The response to counseling was compared with that to hormone replacement therapy (HRT). RESULTS: Forty cases (90.9%) showed an improvement in index score. There were no significant relationships between improvement and age, the period after menopause, or the severity or type of symptoms before counseling. The most improved symptom was headache, followed by palpitation and insomnia. Physical symptoms accounted for most of the common symptoms. The pattern of improvement with counseling was markedly different from that with HRT. CONCLUSIONS: We suggest that counseling is effective for treating climacteric symptoms, since it improves not only psychological symptoms, but also physical ones. Counseling may deserve evaluation as a complementary treatment to HRT.

Arrhythmias, Cardiac↗

Effect of transjugular intrahepatic portosystemic shunt formation on portal hypertensive gastropathy and gastric circulation.

OBJECTIVES: The aim of this study was to investigate the effect of a transjugular intrahepatic portosystemic shunt (TIPS) on portal hypertensive gastropathy (PHG) and gastric hemodynamics. METHODS: A total of 16 patients with cirrhosis and portal hypertensive gastropathy were prospectively studied. Of these, 12 patients underwent TIPS for esophageal varices and four for refractory ascites. Gastric mucosal blood flow (GMBF) was assessed by laser Doppler flowmeter, and total blood flow (TBF) in submucosa and mucosa by near-infrared endoscopy. Portal venous pressure was obtained by a transducer during the TIPS procedure. The severity of portal hypertensive gastropathy was classified as none, mild, or severe. The examinations were performed before and 2 wk after the procedure. RESULTS: TIPS significantly reduced portal venous pressure. PHG improved in all four patients with severe PHG and in five of 12 patients with mild PHG after treatment. Gastric mucosal blood flow increased from 49.0 to 55.6 ml/min/100 g after TIPS. In contrast, TBF decreased from 0.35/s to 0.27/s after treatment. Liver function tests showed no significant changes before and after the procedure. CONCLUSIONS: It is considered that TIPS may have a beneficial effect on PHG at least for a short time. The mechanism by which PHG improves may be closely related to the improvement of the injured gastric perfusion in cirrhotic patients with PHG.

Esophageal and Gastric Varices↗

Nitroxidergic influences on cardiovascular control by NTS: a link with glutamate.

Glutamate (GLU) receptor activation, which is important in cardiovascular reflex transmission through the nucleus tractus solitarii (NTS), leads to release of nitric oxide (NO.) from central nitroxidergic neurons. Therefore, we hypothesized that GLU and NO. are linked in cardiovascular control by NTS. We first sought to determine if NO. released into NTS led to cardiovascular changes like those produced by GLU and found that the nitrosothiol S-nitrosocysteine, but not NO. itself or other NO. donors, elicited such responses in anesthetized rats. The responses were dependent on activation of soluble guanylate cyclase but, not being affected by a scavenger of NO., likely did not depend on release of NO. into the extracellular space. Responses to ionotropic GLU agonists in NTS, like those to S-nitrosocysteine, were inhibited by inhibition of soluble guanylate cyclase. Inhibition of neuronal NO. synthase (nNOS) also inhibited responses to ionotropic GLU agonists. The apparent physiologic link between GLU and NO. mechanisms in NTS was further supported by anatomical studies that demonstrated frequent association between GLU-containing nerve terminals and neurons containing nNOS. Furthermore, GLU receptors were often found on NTS neurons that were immunoreactive for nNOS. The anatomical relationships between GLU and nNOS and GLU receptors and nNOS were more pronounced in some subnuclei of NTS than in others. While seen in subnuclei that are known to receive cardiovascular afferents, the association was even more prominent in subnuclei that receive gastrointestinal afferents. These studies support a role for nitroxidergic neurons in mediating cardiovascular and other visceral reflex responses that result from release of GLU into the NTS.

Animals↗

Synthesis of methyl ursodeoxycholate via microbial reduction of methyl 7-ketolithocholate with Eubacterium aerofaciens JCM 7790 grown on two kinds of carbon and hydride sources, glucose and mannitol.

Eubacterium aerofaciens JCM 7790, which produces 7beta-hydroxysteroid dehydrogenase [7beta-HSDH], efficiently catalyzed the reduction of methyl 7-ketolithocholate [Me-7KLCA] to afford methyl ursodeoxycholate [Me-UDCA] in an anaerobic interface bioreactor. For the high accumulation of Me-UDCA, the best supplement of carbon and hydride source to the ABCM medium (glucose content, 0.3 wt.%) was screened because glucose strongly repressed 7beta-HSDH production. The supplementation of cellobiose, mannitol, sodium gluconate, and sodium pyruvate was effective to improve the production of Me-UDCA, although many mono- and disaccharides, such as fructose, sucrose, and lactose, strongly repressed 7beta-HSDH activity. A phosphate buffer was used as the aqueous phase in the carrier to avoid the lowering of medium pH in the carrier caused by the accumulation of organic acids via fermentation by E. aerofaciens. Thus, the productivity of Me-UDCA was elevated by the combination of glucose and mannitol as carbon and hydride sources and by using a phosphate buffer.

Journal Article↗

Preparation of methyl ursodeoxycholate via microbial reduction of methyl 7-ketolithocholate in an anaerobic interface bioreactor.

An interface bioreactor, which is a device for the microbial transformation of water-insoluble substrates, was applied to an anaerobic bioconversion for the first time. Methyl 7-ketolithocholate [Me-7KLCA] was reduced with the human intestinal bacterium Eubacterium aerofaciens JCM 7790 in a convenient anaerobic interface bioreactor using a nutrient agar plate placed in a GasPak pouch. The resulting methyl ursodeoxycholate [Me-UDCA] is a precursor of ursodeoxycholic acid, which is used as a cholesterol gallstone-dissolving agent. The reaction conditions were optimized, and ABCM medium and dihexyl ether were selected as the best carrier and reaction solvent, respectively. The toxicity of the bile acid esters toward the human intestinal bacterium was effectively alleviated in the interface bioreactor, in which the maximal concentrations of Me-7KLCA and Me-UDCA in the dihexyl ether layer respectively reached to 12.0 and 6.1 g/l.

Journal Article↗

Synthesis of (S)-ibuprofen via enantioselective degradation of racemic ibuprofen with an isolated yeast, Trichosporon cutaneum KPY 30802, in an interface bioreactor.

An interface bioreactor was used for the enantioselective degradation of (RS)-ibuprofen (IBU). An isolated yeast, Trichosporon cutaneum KPY 30802, preferentially degraded (R)-IBU to accumulate (S)-isomer. The addition of hydroquinone (10 mM) into a hydrophilic carrier was effective for the elevation of enantiomeric excess and the repression of excess degradation of (S)-IBU (E value, 9.3).

Journal Article↗

Coupling of fermentation and esterification: microbial esterification of decanoic acid with ethanol produced via fermentation.

Two different kinds of bioprocess, ethanol fermentation and subsequent microbial esterification, were coupled using Issatchenkia terricola IFO 0933 in an interface bioreactor. The strain produced ethyl decanoate (Et-DA) by esterification of exogenous decanoic acid (DA) with ethanol produced via fermentation. The efficiency of the new coupling system depended on the concentration of glucose in a carrier and DA in an organic phase (decane) in an agar plate interface bioreactor. Optimum glucose content and DA concentration were 4% and 29 mM, respectively.

Decanoic Acids↗

A new double coupling system: synthesis of citronellyl acetate via transacetylation to citronellol from acetyl coenzyme A produced from glucose and free fatty acids.

A double coupling system, which couples metabolism of glucose and transacetylation, is a unique procedure for the production of acetic esters. In the novel coupling system described in this article, acetyl coenzyme A (acetyl-CoA) was supplied via metabolism of both glucose and exogenous saturated fatty acids. While short and middle chain fatty acids having C4-8 were very biotoxic, myristic acid (C14) was effectively used as a source of acetyl-CoA.

Acetyl Coenzyme A↗