Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “MME”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 73 records · Page 4Linked to original sources

A novel potential metallopeptidase derived from the enkephalinase gene by alternative splicing.

Amplification of rat intestine mRNAs was performed by the reverse transcriptase-polymerase chain reaction (RT-PCR) using various oligonucleotide primers mainly corresponding to the translated region of the enkephalinase (EC 3.4.24.11, membrane metalloendopeptidase, MME I) gene. In addition to the expected transcript, a shorter one was identified and its sequence indicated that it corresponds to an alternatively spliced mRNA from which exons 5-18 of MME I are deleted. It encodes a deduced 255 amino acid protein, MME II, instead of the 742 amino acid sequence of enkephalinase. The deduced structure of MME II is consistent with its being a membrane-bound, zinc-containing glycoprotein with a modified peptidase activity. MME II mRNA is also expressed, together with MME I mRNA, in brain and thyroid in a tissue-specific manner.

Animals↗

Mitochondrial malate dehydrogenase and malic enzyme of a filarial worm Setaria digitata: some properties and effects of drugs and herbal extracts.

Mitochondrial malate dehydrogenase (mMDH) and malic enzyme (mME) of a filarial worm Setaria digitata were studied. mMDH exhibited the highest activities in the oxidation and reduction reactions at pH 9.5 and pH 6.2, respectively, while mME did so in the malate decarboxylation reaction at pH 6.8. mME showed no detectable activity on the pyruvate carboxylation direction. The Km values for malate (1.7 mM) and oxaloacetate (0.17 mM) and the ratio of Vmax oxidation: Vmax reduction (2.73) tend to favor the oxaloacetate reduction by mMDH. mME showed a relatively high Km value of 8.3 mM, for malate decarboxylation. A drug, diethylcarbamazine citrate (DEC-C), did not change appreciably the activity of either mMDH or mME, while filarin (a drug of herbal origin) effectively inhibited mMDH. The leaf extracts of Ocimum sanctum, Lawsonia inermis and Calotropis gigantea and leaf and flower extracts of Azadirachta indica were, however, found to inhibit both mMDH and mME.

Animals↗

Inhibition of cell growth and induction of G1-phase cell cycle arrest in hepatoma cells by steroid extract from Meretrix meretrix.

In this study, we report that the steroid extract 5alpha, 8alpha-epidioxycholest-6-ene-3beta-ol (MME) from Meretrix meretrix has the ability to inhibit growth of hepatoma cells and to induce G1-phase cell cycle arrest in two human hepatoma cell lines, HepG2 and Hep3B. HepG2 cells were more sensitive than Hep3B to MME. The extract markedly up-regulated the expression of p53 and p21WAF1/CIP1 in HepG2, suggesting that MME-induced G1 phase cell cycle arrest in HepG2 might be p53-dependent. Therefore, the up-regulation of p27KIP1and p16INK4A in both cell lines indicates that a p53-independent pathway might be involved in the mechanism of MME inducing cell cycle arrest. In conclusion, MME induces G1 phase cell cycle arrest via both p53-dependent and p53-independent pathways.

Bivalvia↗

Mitochondrial malic enzyme activity is much higher in mitochondria from cortical synaptic terminals compared with mitochondria from primary cultures of cortical neurons or cerebellar granule cells.

Most of the malic enzyme activity in the brain is found in the mitochondria. This isozyme may have a key role in the pyruvate recycling pathway which utilizes dicarboxylic acids and substrates such as glutamine to provide pyruvate to maintain TCA cycle activity when glucose and lactate are low. In the present study we determined the activity and kinetics of malic enzyme in two subfractions of mitochondria isolated from cortical synaptic terminals, as well as the activity and kinetics in mitochondria isolated from primary cultures of cortical neurons and cerebellar granule cells. The synaptic mitochondrial fractions had very high mitochondrial malic enzyme (mME) activity with a Km and a Vmax of 0.37 mM and 32.6 nmol/min/mg protein and 0.29 mM and 22.4 nmol/min mg protein, for the SM2 and SM1 fractions, respectively. The Km and Vmax for malic enzyme activity in mitochondria isolated from cortical neurons was 0.10 mM and 1.4 nmol/min/mg protein and from cerebellar granule cells was 0.16 mM and 5.2 nmol/min/mg protein. These data show that mME activity is highly enriched in cortical synaptic mitochondria compared to mitochondria from cultured cortical neurons. The activity of mME in cerebellar granule cells is of the same magnitude as astrocyte mitochondria. The extremely high activity of mME in synaptic mitochondria is consistent with a role for mME in the pyruvate recycling pathway, and a function in maintaining the intramitochondrial reduced glutathione in synaptic terminals.

Animals↗

Targeted drug delivery systems 6: Intracellular bioreductive activation, uptake and transport of an anticancer drug delivery system across intestinal Caco-2 cell monolayers.

We demonstrate transport across, intracellular accumulation and bioreductive activation of a conformationally constrained, anticancer drug delivery system (the CH(3)-TDDS) using Caco-2 cell monolayers (CCMs) as an in vitro model of the human intestinal mucosa. Reverse-phase High Performance Liquid Chromatography (HPLC) coupled with UV detection was used to detect CH(3)-TDDS, the bioreduction product (lactone) and the released drug (melphalan methyl ester; MME). Upon incubation of the CH(3)-TDDS with the apical (AP) surface of 21-day-old CCM, we observed rapid decrease in the AP concentration of the CH(3)-TDDS (60%/hr) as a result of cellular uptake. Rapid intracellular accumulation of the CH(3)-TDDS was followed by bioreductive activation to deplete the cellular levels of CH(3)-TDDS. The drug part (MME) and lactone, as well as CH(3)-TDDS, were detected in the basolateral (BL) chamber. Intracellular Caco-2 levels of TDDS and lactone were also detectable. Bioreductive activation of the CH(3)-TDDS was additionally confirmed by formation of lactone after incubation of the CH(3)-TDDS in the presence of freshly prepared Caco-2 cell homogenates. During transport studies of melphalan or MME alone (as control), the intact drug was not detected in the intracellular compartment or in the BL chamber. These observations demonstrate that CH(3)-TDDS has potential for improving intestinal delivery of MME. TDDS could be useful in facilitating oral absorption of MME as well as the oral delivery of other agents.

Antineoplastic Agents↗

Cloning and functional characterization of the 5' flanking region of the human mitochondrial malic enzyme gene. Regulatory role of Sp1 and AP-2.

This work reports the molecular cloning and functional characterization of the 5' flanking region of the human mitochondrial malic enzyme (mME) gene. The proximal promoter region has features of housekeeping genes like high G + C-content and absence of TATA or CCAAT boxes. Deletion analysis of the 5' region of the mME showed that maximal transcriptional activity is located within the -205/+86 region. Footprinting analysis showed two protected regions, one comprising potential overlapped AP-1, CREB, and AP-4 sites and a second one encompassing AP-2 and several Sp1 ci-acting elements. Mutation of putative AP-1/AP-4/CREB sites reduced basal promoter activity to less than 50%. Supershift assays demonstrated the specific binding of Sp1 and AP-2 proteins. Moreover, experiments in Drosophila SL2 cells lacking endogenous Sp1 demonstrated that the Sp1 site(s) is essential to maintain a normal basal rate of transcription of this gene. A low-level expression of AP-2 enhanced the activity of a mME promoter construct in HepG2 cells and this effect was prevented by disruption of the putative AP-2 element. In contrast, higher levels of expression of AP-2 induced a DNA-independent inhibitory response. A biphasic regulation of endogenous mME gene is also shown in HepG2 cells transfected with an AP-2 expression plasmid, suggesting that availability of AP-2 protein may control this gene under physiological conditions. A recombinant lambda genomic clone containing a mME pseudogene was also isolated. The high degree of sequence conservation seems to indicate a recent emergency of this human pseudogene.

Amino Acid Sequence↗

Metalloelastase is required for macrophage-mediated proteolysis and matrix invasion in mice.

Macrophages secrete a variety of proteinases that are thought to participate in remodeling of the extracellular matrix associated with inflammatory processes. We have eliminated expression of the macrophage metalloelastase (MME) gene by targeted disruption to assess the role of this protein in macrophage-mediated proteolysis. We found that the macrophages of MME-deficient (MME-/-) mice have a markedly diminished capacity to degrade extracellular matrix components. In addition, MME-/- macrophages are essentially unable to penetrate reconstituted basement membranes in vitro and in vivo. MME is therefore required for macrophage-mediated extracellular matrix proteolysis and tissue invasion.

Animals↗

Multiple metaphor environments: designing for diversity.

This paper advances a proposition for the engineering of interactive computer-based environments capable of exhibiting alternative interactive embodiments to cope with diversity in users, interaction platforms and usage contexts. Such systems are referred to as Multiple Metaphor Environments (MME). The theoretical underpinnings of an MME rely on a conception of HCI design as mapping functions in a machine-oriented language (target domain) to symbols in a user-oriented language (source domain), and vice versa. Such a conception, which is rooted in developments in communication theory and the philosophy of language, constitutes the baseline for formulating a proposal for the design of MME. The proposal comprises a set of engineering principles, process-oriented guidelines and design techniques intended to facilitate a detailed account of how interactive systems could be designed to cope with diversity. To aid the articulation of the various properties of MME, we refer to concrete case studies that provide exemplars of novel insights and promising design practices towards the specification of MME.

Artificial Intelligence↗

[Clinical and pathologic features of malignant myoepithelioma of salivary glands].

OBJECTIVE: To analyze the clinical features, morphology and biologic behavior of primary malignant myoepithelioma (MME) of salivary glands. METHODS: The H&E sections of 16 MME cases were reviewed. Immunohistochemical study using EnVision method for cytokeratin (CK), epithelial membrane antigen (EMA), vimentin, S-100 protein, desmin, muscle-specific actin (MSA), smooth muscle actin (SMA), Myo, proliferation cell nuclear antigen (PCNA), leukocyte common antigen (LCA) and glial fibrillary acidic protein (GFAP) was carried out. RESULTS: Of the 16 patients studied, 6 were males and 10 were females. Their ages ranged from 12 to 65 years (with an average age of 44 years). The tumor occurred predominantly in the parotid gland and minor salivary gland of the palate. Common clinical features included sudden and rapid tumor growth, superficial ulceration, bony destruction and nerve infiltration. Seven of the 16 patients developed local recurrences, while 2 patients had metastasis in the lymph nodes of submandibular or other cervical regions. Most tumors infiltrated adjacent normal salivary gland, adipose, muscular and bony tissues. The extent of local invasion however varied. Histologically, MME showed a wide range of morphologic appearance, with various combinations of clear, spindle, epithelioid or plasmacytoid cells. The tumor cells were atypical and demonstrated high mitotic activity. In this study, 9 cases were composed predominantly of clear tumor cells. Immunohistochemically the tumor cells were positive for CK, EMA, MSA, desmin and S-100 protein. CONCLUSIONS: In general, MME is a rare and low-grade malignant salivary gland tumor. It carries a low potential for lymph node or distant metastasis but relatively high tendency for local recurrences, resulting in destruction of adjacent soft and bony tissues. The biologic behavior also varies, depending on the site of involvement. Morphologic diagnosis of MME can be difficult in view of the wide spectrum of histologic changes. A definitive diagnosis however is possible with the application of immunohistochemistry.

Adolescent↗

Matrix metalloproteinases generate angiostatin: effects on neovascularization.

Angiostatin, a cleavage product of plasminogen, has been shown to inhibit endothelial cell proliferation and metastatic tumor cell growth. Recently, the production of angiostatin has been correlated with tumor-associated macrophage production of elastolytic metalloproteinases in a murine model of Lewis lung cell carcinoma. In this report we demonstrate that purified murine and human matrix metalloproteinases generate biologically functional angiostatin from plasminogen. Macrophage elastase (MMP-12 or MME) proved to be the most efficient angiostatin-producing MMP. MME was followed by gelatinases and then the stomelysins in catalytic efficiency; interstitial collagenases had little capacity to generate angiostatin. Both recombinant angiostatin and angiostatin generated from recombinant MME-treated plasminogen inhibited human microvascular endothelial cell proliferation and differentiation in vitro. Finally, employing macrophages isolated from MME-deficient mice and their wild-type littermates, we demonstrate that MME is required for the generation of angiostatin that inhibits the proliferation of human microvascular endothelial cells.

Amides↗

Methylxanthines and calcium-mobilizing agents inhibit the expression of cytokine-inducible nitric oxide synthase and vascular cell adhesion molecule-1 in murine microvascular endothelial cells.

In response to exposure to the inflammatory cytokines tumor necrosis factor-alpha (TNF) and interferon-gamma (IFN-gamma), murine brain microvascular endothelial cells (MME) synthesize the cell surface molecule, vascular cell adhesion molecule-1 (VCAM-1), and the intracellular enzyme, inducible nitric oxide synthase (iNOS). However, iNOS synthesis requires the presence of both TNF and IFN-gamma, while VCAM-1 can be induced by either cytokine alone. We examined the induction of VCAM-1 and iNOS under a variety of conditions to better define the regulation of TNF and IFN-gamma signal transduction pathways in MME. We utilized the analysis of steady-state levels of iNOS mRNA as well as the measurement of MME-released NO-EDRF (nitric oxide as an endothelium-derived relaxing factor) activity and accumulation of nitrite in the culture medium to define iNOS expression and activity. VCAM-1 expression was determined by flow cytometric analysis. Our data indicate that low density lipoproteins inhibited cytokine-induced iNOS activity by affecting the steady-state levels of iNOS mRNA. Methylxanthines (caffeine and theophylline) as well as several calcium-mobilizing agents inhibited the expression/activity of both iNOS and VCAM-1 in MME. The effectiveness of these agents was dependent upon the degree of disruption in cell calcium homeostasis during cytokine treatment. Cells which had been pretreated with calcium-modulating drugs and then washed and allowed to return to normal calcium homeostasis showed little to no effect from these agents. In addition, our results suggest that NO produced by iNOS acts as a metabolic switch during inflammation by inhibiting oxidative phosphorylation and forcing vascular endothelial cells to temporarily utilize anaerobic energy metabolism.

Amino Acid Oxidoreductases↗

Sex linkage of malic enzyme in Xenopus laevis.

Genetic analysis of mME variants (mitochondrial malic enzyme, E.C. 1.1.1.40) in Xenopus laevis revealed sex linkage of the mMe locus and indicated a WZ/ZZ type of sex determination. Codominant mMe alleles occur on both W and Z chromosomes, with a recombination frequency of 6.1% +/- 1.5% between mMe and the sex-determining locus (or region).

Animals↗

Assessment of tricuspid regurgitation by directional analysis of right atrial systolic linear reflux echoes with contrast M-mode echocardiography.

Twenty-seven individuals were studied for diagnostic assessment of tricuspid regurgitation (TR) using directional analysis of echo contrast lines on M-mode echocardiograms (MME). Group I consisted of 12 patients with physical findings, as well as phonocardiogram and jugular venous pulse tracings, compatible with TR. Group II consisted of five normal volunteers and 10 control patients without any evidence of congestive heart failure or TR. Following peripheral venous injection of contrast material, all 12 patients in group I demonstrated linear reflux contrast echoes in the right atrium (RA) on MME consisting of multiple posteriorly directed echo lines throughout systole behind the tricuspid valve. In addition, linear reflux contrast echoes in the hepatic vein directed away from its entry into the inferior vena cava were noted in 8 of the 12 patients by a cursor-placed MME. The remaining 15 patients in group II showed none of the above findings on contrast echocardiography. These observations indicate that linear systolic reflux contrast echoes in the RA behind the tricuspid valve on MME may be a specific and sensitive sign of TR.

Diastole↗

The hydration of sterically hindered epoxides by epoxide hydrolase of the rat and rabbit.

The hydration of the sterically-hindered epoxides dieldrin (HEOD) (1,2,3,4, 10,10-hexachloro-1,4,4a,5,6,7,8,8a-octahydro-6,7-epoxy-exo-1,4-endo-5,8- dimethanonaphthalene) and MME (1,2,3,4,9,9-hexachloro-1,4,4a,5,8,8a-hexahydro-6-methyl-6,7 epoxy 1,4-methanonaphthalene) was studied in pig and rabbit liver microsomes, and in apparently homogeneous preparations of epoxide hydrolase purified from liver microsomes of the rat and rabbit. A non-hindered substrate, HEOM (1,2,3,4,9,9-hexachloro-1,4,4a,5,6,7,8,8a-octahydro exo-6,7 epoxy-1,4 methano naphthalene) was used to assay both the enzyme preparations and the microsomes for epoxide hydrolase activity. The purified enzymes had more stable activity when incorporated into suspensions of phospholipid derived from rat liver microsomes than when used alone, so this preparation was used for long-term incubation with HEOD and MME. Activity towards the three substrates followed the sequence HEOM much greater than MME much much greater than HEOD, in the approximate ratios 1.5 X 10(6):10(4) activity towards dieldrin being only 0.0065-0.052 pmol/mg prot/min. The sole product of MME hydration was identified as a trans diol. The only product identified in the case of HEOD hydration by microsomes or enzyme preparations was the trans diol so there was no evidence for a significant metabolic pathway through the cis diol which is mediated by epoxide hydralase.

Animals↗

Molecular multiple endpoint embryonic stem cell test--a possible approach to test for the teratogenic potential of compounds.

The embryonic stem cell test (EST) examines the cytotoxicity of chemical compounds on embryonic stem (ES) cells and 3T3.A31 fibroblasts. Additionally, the EST measures the ability of ES cells to differentiate into contracting cardiomyocytes following drug exposure. In this study, we introduce new endpoints to obtain a molecular multiple endpoint EST (mme-EST), enabling the identification of potential chemical effects on osteogenic, chondrogenic and neural differentiation in addition to the traditional endpoint of cardiomyocyte differentiation. Six compounds in three classes with known teratogenic in vivo potential were assayed with the mme-EST in a pilot study: penicillin G (non-teratogenic), 5-fluorouracil and retinoic acid (strongly teratogenic), diphenylhydantoin, valproic acid and thalidomide (moderately teratogenic). While the traditional EST measures a morphological endpoint, we included molecular markers of differentiation as endpoints. With the mme-EST, every compound could be classified correctly according to its known teratogenic potential in vivo. Penicillin G, 5-fluorouracil and diphenylhydantoin inhibited differentiation of all endpoints equally. Interestingly, valproic acid showed the strongest inhibition of neural differentiation, while thalidomide specifically inhibited osteogenic development. Retinoic acid, on the other hand, supported neural but inhibited chondrogenic and osteogenic differentiation concentration-dependently. Valproic acid and thalidomide, classified incorrectly with the established EST model, were classified correctly with the mme-EST according to their effects on specific endpoints. This pilot study indicates that the predictive value of the EST may be enhanced by including further differentiation endpoints.

Animals↗

Macrophage-derived metalloelastase is responsible for the generation of angiostatin in Lewis lung carcinoma.

To determine the mechanism responsible for the in vivo production of angiostatin that inhibits growth and metastasis in Lewis lung carcinoma (3LL), we implanted 3LL variant cells into the subcutis of syngeneic C57BL/6 mice. The tumors were infiltrated by macrophages and expressed high levels of steady-state mRNA for metalloelastase (MME). Successive passages (more than three) of cultures established from the tumors resulted in complete depletion of macrophages; steady-state MME mRNA, elastinolytic activity, and production of angiostatin (in the presence of plasminogen) were correspondingly reduced. Coculture of macrophages with either 3LL cells or their conditioned media containing granulocyte-macrophage colony-stimulating factor resulted in secretion of MME and production of angiostatin by the macrophages, suggesting that angiostatin is produced by tumor-infiltrating macrophages whose MME expression is stimulated by tumor cell-derived granulocyte-macrophage colony-stimulating factor.

Angiostatins↗

Effects of a pulsing electric signal on the cross membrane potential and the cell division potentiality of a single cell of tobacco.

A pulsing electric signal (pulse width 10 s) was applied to a single cell of cultured tobacco, line BY-2, by inserting a multifunctional microelectrode (MME) into the cell. The electric voltage (V(ET)) was loaded between the electrode terminals of the MME and the reference electrode situated in the extracellular medium. Since the electrical impedance of the MME was as large as that of the cell membrane, the effective potential acting across the cell membrane (V(CMP)) should be only some portion of V(ET). The MME enabled simultaneous measurement of V(ET) and V(CMP). When V(ET) was varied from 0 to -1 V, V(CMP) changed linearly in proportion to V(ET). When V(ET) variation range was enlarged (from 0 to -2 V), V(CMP) changing pattern became a declined curve. When V(ET) variation range was further enlarged (from 0 to -5 V), the V(CMP) changing pattern showed a saturation curve. Under this condition, the cell division potentiality decreased accordingly. Based on these results, the feasibility of V(CMP) as an indicator of the effective intensity of an electric stress signal is discussed. In the present case of a BY-2 cell, a proper intensity of V(CMP) that could cause an appreciable stress and not a lethal signal was estimated as -250 mV.

Amphotericin B↗

Maxillomandibular expansion for the treatment of sleep-disordered breathing: preliminary result.

OBJECTIVE: To assess the outcomes of maxillomandibular expansion (MME) by distraction osteogenesis (DO) for the treatment of sleep-disordered breathing (SDB). METHODS: This was a prospective study of six consecutive patients with SDB. All of the patients have maxillary and mandibular constriction and were treated with MME. Variables examined include age, sex, body mass index (BMI), polysomnographic results (PSG), Epworth Sleepiness Scale (ESS), and the extent of the widening of the maxilla and mandible. RESULTS: All six patients (4 males) completed MME for the treatment of SDB. The mean age was 22.2 +/- 11.4 years. The mean maxillary expansion was 10.3 +/- 3.0 mm, and the mean mandibular expansion was 9.5 +/- 2.9 mm. ESS improved from 10.2 +/- 1.9 to 5 +/- 2.9. The mean apnea/ hypopnea index (AHI) improved from 13.2 +/- 15.6 to 4.5 +/- 5.8 events per hour, and the mean lowest oxygen saturation (LSAT) improved from 88.2 +/- 2.9% to 91.3 +/- 3.3%. The mean esophageal pressure improved from -20 +/- 11.3 cm H2O to -8 +/- 3.6 cm H2O. No complications were encountered, and the follow-up period was 18.1 +/- 9.8 months. CONCLUSION: : The result suggests that MME improves SDB in patients with maxillary and mandibular constriction and can be a valid treatment.

Adolescent↗