15 results on '"Sariaslani P"'
Search Results
2. Crystal Structure of Phenylalanine Ammonia Lyase: Multiple Helix Dipoles Implicated in Catalysis.
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Calabrese, Joseph C., Jordan, Douglas B., Boodhoo, Amechand, Sariaslani, Sima, and Vannelli, Todd
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- 2004
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3. Long-Term Endovascular Treatment Outcome of 46 Patients with Cavernous Sinus Dural Arteriovenous Fistulas Presenting with Ophthalmic Symptoms: A Non-Controlled Trial with Clinical and Angiographic Follow-up
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Pashapour, Ali, Mohammadian, Reza, Salehpour, Firooz, Sharifipour, Ehsan, Mansourizade, Reza, Mahdavifard, Ali, Salehi, Mohamadgharib, Mirzaii, Farhad, Sariaslani, Payam, Ardalani, Ghasem Fatahzade, and Davaraltafi, Ghasem Fatahzade
- Abstract
Ocular symptoms are regularly observed inpatients with cavernous sinus dural arteriovenous fistulas (cDAVF). We aimed to evaluate the long-term efficacy and safety of endovascular approaches in patients with cDAVF presenting with different ocular symptoms. In a prospective study between June 2008 and March 2013, 46 patients with ocular symptoms due to cDAVF who were not eligible for conservative therapy, met the inclusion criteria and underwent endovascular treatment. They underwent a transarterial approach with histoacryl glue injections or transvenous coil embolization, all in one session. They were followed up for a mean period of 17.3 months (range 7 to 30 months) clinically and using angiography. The mean age of patients was 36.8 years (18–60) and 65% of them were male. All patients showed venous drainage into the superior and inferior orbital veins. Access to the cavernous sinus was transvenous in ten patients, transarterial in 26 patients, and mixed in ten patients. Initial symptoms were improved in 97.8% of patients and did not recur during the study follow-up. The procedural complications included: blurred vision, transient sixth nerve palsy and exacerbation of chemoproptosis in two, one and two patients respectively that completely resolved in initial weeks with no recurrence. No patient worsened or developed new symptoms suggestive of a recurrent fistula during the follow-up period. One patient experienced intracranial dissection of the internal carotid artery and ischemic stroke with an unfinished procedure. The relief of early presentation was durable in long-term follow-up and the cured lesions were stable in angiographic controls. Favorable and durable outcomes could be obtained following endovascular approaches for cDAVF presenting with different ocular symptoms.
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- 2014
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4. Safety and Outcomes of Intravenous Thrombolytic Therapy in Ischemic Stroke Patients with COVID-19: CASCADE Initiative.
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Sasanejad, Payam, Afshar Hezarkhani, Leila, Arsang-Jang, Shahram, Tsivgoulis, Georgios, Ghoreishi, Abdoreza, Kristian, Barlinn, Rahmig, Jan, Farhoudi, Mehdi, Sadeghi Hokmabadi, Elyar, Borhani-Haghighi, Afshin, Sariaslani, Payam, Sharifi-Razavi, Athena, Ghandehari, Kavian, Khosravi, Alireza, Smith, Craig, Nilanont, Yongchai, Akbari, Yama, Nguyen, Thanh N., Bersano, Anna, and Yassi, Nawaf
- Abstract
Background: There is little information regarding the safety of intravenous tissue plasminogen activator (IV-tPA) in patients with stroke and COVID-19.Methods: This multicenter study included consecutive stroke patients with and without COVID-19 treated with IV-tPA between February 18, 2019, to December 31, 2020, at 9 centers participating in the CASCADE initiative. Clinical outcomes included modified Rankin Scale (mRS) at hospital discharge, in-hospital mortality, the rate of hemorrhagic transformation. Using Bayesian multiple regression and after adjusting for variables with significant value in univariable analysis, we reported the posterior adjusted odds ratio (OR, with 95% Credible Intervals [CrI]) of the main outcomes.Results: A total of 545 stroke patients, including 101 patients with COVID-19 were evaluated. Patients with COVID-19 had a more severe stroke at admission. In the study cohort, 85 (15.9%) patients had a hemorrhagic transformation, and 72 (13.1%) died in the hospital. After adjustment for confounding variables, discharge mRS score ≥2 (OR: 0.73, 95% CrI: 0.16, 3.05), in-hospital mortality (OR: 2.06, 95% CrI: 0.76, 5.53), and hemorrhagic transformation (OR: 1.514, 95% CrI: 0.66, 3.31) were similar in COVID-19 and non COVID-19 patients. High-sensitivity C reactive protein level was a predictor of hemorrhagic transformation in all cases (OR:1.01, 95%CI: 1.0026, 1.018), including those with COVID-19 (OR:1.024, 95%CI:1.002, 1.054).Conclusion: IV-tPA treatment in patients with acute ischemic stroke and COVID-19 was not associated with an increased risk of disability, mortality, and hemorrhagic transformation compared to those without COVID-19. IV-tPA should continue to be considered as the standard of care in patients with hyper acute stroke and COVID-19. [ABSTRACT FROM AUTHOR]- Published
- 2021
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5. Actinomycete cytochromes P-450 involved in oxidative metabolism: Biochemistry and molecular biology
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Sariaslani, F. Sima and Omer, Charles
- Abstract
The diverse metabolic capability of actinomycetes, together with their widespread presence in terrestrial and aquatic environments, has rendered them instrumental in the breakdown of both man-made and natural chemicals and in the recycling of carbon in nature. Actinomycetes are also well known for their ability to synthesize a wide variety of novel chemicals of pharmaceutical and industrial value. Cytochromes P-450, a class of oxidative enzymes found in all organisms, play a central role in both biosynthetic and biodegradative reactions performed by actinomycetes. Herein, we describe recent studies of actinomycetes cytochromes P-450 made possible by advances realized in biochemistry and molecular biology.
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- 1992
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6. Involvement of an Inducible Cytochrome P-450 in Precocene II Oxidation by Streptomyces Griseus
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Sariaslani, F. Sima, Trower, Michael, and Kunz, Daniel
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Streptomyces griseus oxidizes the insecticide precocene II to its cis- and trans-dihydrodiols and 3-chromenol after growth on an enriched medium containing soybean flour. Oxidation of precocene II is dependent on the level of cytochrome P-450 in this organism. Extracts of cells grown on media lacking soybean flour were devoid of cytochrome P-450 and could not oxidize precocene II. In an in vitro reconstituted system containing NADPH, spinach ferredoxin reductase, spinach ferredoxin and ammonium sulfate fractions enriched in cytochrome P-450, precocene II was oxidized to its dihydrodiols. An aerial mycelium-negative variant of S. griseus (AMY mutant), that was unable to elicit cytochrome P-450 when grown on soybean flour-enriched medium, failed to oxidize precocene II.
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- 1989
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7. Microbial degradation of hydrocarbons. Catabolism of 1-phenylalkanes by Nocardia salmonicolor
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Sariaslani, F. Sima, Harper, David B., and Higgins, I. John
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1. Nocardia salmonicolor grew on a variety of alkanes, 1-phenylalkanes and 1-cyclo-hexylalkanes as sole carbon and energy sources. 2. Growth on 1-phenyldodecane in batch culture was diauxic. Isocitrate lyase activity was induced during lag phase, reaching a maximum activity in the first growth phase, during which both the aromatic ring and the side chain were degraded. However, 4-phenylbutyrate, 4-phenylbut-3-enoate, 4-phenylbut-2-enoate, 3-phenylpropionate, cinnamate and phenylacetate accumulated in the growth medium. These compounds disappeared at the onset of diauxic lag and four hydroxylated compounds accumulated; one was 4-(o-hydroxyphenyl)but-3-enoate and another was identified as 4-(o-hydroxyphenyl)butyrate. These compounds were utilized during the second growth phase. 3. Washed 1-phenyldodecane-grown cells oxidized acetate, cinnamate, 3,4-dihydroxyphenylacetate, homogentisate, o-, m- and p-hydroxyphenylacetate, phenylacetate, and 4-phenylbutyrate rapidly without lag. 4. Extracts of such cells rapidly oxidized homogentisate,3,4-dihydroxyphenylacetate, catechol and protocatechuate. 5. The organism grew readily on 4-phenylbutyrate, phenylacetate, o-hydroxyphenylacetate, homogentisate and 3,4-dihydroxyphenylacetate as sole carbon energy sources, but growth was slow on cinnamate and 4-phenylbut-3-enoate. 6. When cinnamate and phenylacetate were sole carbon sources for growth, phenylacetate and o-hydroxyphenylacetate respectively were detected in culture supernatants. 4-Phenylbut-3-enoate and 4-phenylbutyrate both yielded a mixture of cinnamate and phenylacetate. 7. It is proposed that 1-phenyldodecane is catabolized by ω-oxidation of the terminal methyl group, side-chain β-oxidation to 4-phenylbutyrate, both β- and α-oxidation to phenylacetic acid, hydroxylation to homogentisate via o-hydroxyphenylacetate and ring cleavage to maleylacetoacetate. Catabolism via 3,4-dihydroxyphenylacetate may also occur. 8. Growth on 1-phenylnonane was also diauxic and cinnamic acid, phenylpropionic acid, benzoic acid and hydroxyphenylpentanoic acid accumulated in the medium. Respirometric data and ring-cleavage enzyme activities showed similar patterns to those obtained after growth on 1-phenyldodecane. The results suggest that the main catabolic routes for 1-phenyldodecane and 1-phenylnonane may converge at cinnamate. 9. Possible reasons for diauxie are discussed.
- Published
- 1974
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8. Activation and detection of (Pro)mutagenic chemicals using recombinant strains of Streptomyces griseus
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Buchholz, Steven, Omer, Charles, Viitanen, Paul, Sariaslani, F., and Stahl, Ralph
- Abstract
Abstract: Two recombinant strains ofStreptomyces griseus have been developed to report on the activation of promutagenic° chemicals. This activation is monitored by reversion of the bacterial test strains to a kana-mycin-resistant phenotype. Strain H69 detects point mutations and was reverted at an increased frequency by acetonitrile, 2-aminoanthracene, 1,2-benzanthracene, benzidine, benzo(a)pyrene, 9,10-dimethyl-1,2-benzanthracene, and glycine. The second strain, FS2, detects frame shift mutations and was reverted at an increased frequency by 1,2-benzanthracene, benzidine, and glycine. Compounds such as butylated hydroxytoluene, catechol, chlorobenzene, hydroquinone, potassium chloride, phenol,cis-stilbene,trans-stilbene, and toluene did not elicit positive responses in either strain. In addition, these strains are capable of detecting direct-acting mutagens such asN-methyl-N’-nitrosoguanidine and ICR-191, providing further evidence of their promise for detecting a wider range of mutagens. To our knowledge, this is the first report of bacterial strains capable of activating promutagenic compounds and detecting their mutagenic metabolites without the benefit of an exogenous activation system such as the rodent liver homogenate (S9).
- Published
- 1992
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9. Mineralization of 2,4,6-trinitrophenol (picric acid): Characterization and phylogenetic identification of microbial strains
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Rajan, J, Valli, K, Perkins, R E, Sariaslani, F S, Barns, S M, Reysenbach, A-L, Rehm, S, Ehringer, M, and Pace, N R
- Abstract
Four bacterial strains that use picric acid as their sole carbon and energy source were isolated. Mineralization of
14 C-UL-picric acid showed that up to 65% of the radioactivity was released as14 CO2 . HPLC and UV/Vis spectral analyses indicated complete degradation of picric acid by these organisms. HPLC and LC/MS analyses showed transient formation of 2,4-dinitrophenol during picric acid degradation. Degradation of picric acid was concomitant with stoichiometric release of three moles of nitrite per mole of picric acid. The four picric acid degraders were identified as close relatives ofNocardioides simplex (ATCC 6946) based on their small subunit (16S) rRNA gene sequences.- Published
- 1996
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10. Purification and characterization of a soybean flour-inducible ferredoxin reductase of Streptomyces griseus
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Ramachandra, M, Seetharam, R, Emptage, M H, and Sariaslani, F S
- Abstract
We have purified an NADH-dependent ferredoxin reductase from crude extracts of Streptomyces griseus cells grown in soybean flour-enriched medium. The purified protein has a molecular weight of 60,000 as determined by sodium dodecyl sulfate gel electrophoresis. The enzyme requires Mg2+ ion for catalytic activity in reconstituted assays, and its spectral properties resemble those of many other flavin adenine dinucleotide-containing flavoproteins. A relatively large number of hydrophobic amino acid residues are found by amino acid analysis, and beginning with residue 7, a consensus flavin adenine dinucleotide binding sequence, GXGXXGXXXA, is revealed in this protein. In the presence of NADH, the ferredoxin reductase reduces various electron acceptors such as cytochrome c, potassium ferricyanide, dichlorophenolindophenol, and nitroblue tetrazolium. However, only cytochrome c reduction by the ferredoxin reductase is enhanced by the addition of ferredoxin. In the presence of NADH, S. griseus ferredoxin and cytochrome P-450soy, the ferredoxin reductase mediates O dealkylation of 7-ethoxycoumarin.
- Published
- 1991
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11. Purification and characterization of a soybean flour-induced cytochrome P-450 from Streptomyces griseus
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Trower, M K, Sariaslani, F S, and O'Keefe, D P
- Abstract
A soybean flour-induced, soluble cytochrome P-450 (P-450soy) was purified 130-fold to homogeneity from Streptomyces griseus. Native cytochrome P-450soy is a single polypeptide, with a molecular weight of 47,500, in association with one ferriprotoporphyrin IX prosthetic group. Oxidized P-450soy exhibited visible absorption maxima at 394, 514, and 646 nm, characteristic of a high-spin cytochrome P-450. The CO-reduced difference spectrum of P-450soy had a Soret maximum at 448 nm. When reconstituted with spinach ferredoxin and spinach ferredoxin:NADP+ oxidoreductase, purified cytochrome P-450soy catalyzed the NADPH-dependent oxidation of the xenobiotic substrates precocene II and 7-ethoxycoumarin. In vitro proteolysis of cytochrome P-450soy generated a stable and catalytically active cytochrome P-450, designated P-450soy delta.
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- 1989
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12. Microbial Enzymes for Oxidation of Organic Molecules
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Sariaslani, F. Sima and Dalton, Howard
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Enzymatic systems employed by microorganisms for oxidative transformation of various organic molecules include laccases, ligninases, tyrosinases, monooxygenases, and dioxygenases. Reactions performed by these enzymes play a significant role in maintaining the global carbon cycle through either transformation or complete mineralization of organic molecules. Additionally, oxidative enzymes are instrumental in modification or degradation of the ever-increasing man-made chemicals constantly released into our environment. Due to their inherent stereo- and regioselectivity and high efficiency, oxidative enzymes have attracted attention as potential biocatalysts for various biotechnological processes. Successful commercial application of these enzymes will be possible through employing new methodologies, such as use of organic solvents in the reaction mixtures, immobilization of either the intact microorganisms or isolated enzyme preparations on various supports, and genetic engineering technology.
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- 1989
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13. Degradation of 3-phenylbutyric acid by Pseudomonas sp
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Sariaslani, F S, Sudmeier, J L, and Focht, D D
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Pseudomonas sp. isolated by selective culture with 3-phenylbutyrate (3-PB) as the sole carbon source metabolized the compound through two different pathways by initial oxidation of the benzene ring and by initial oxidation of the side chain. During early exponential growth, a catechol substance identified as 3-(2,3-dihydroxyphenyl)butyrate (2,3-DHPB) and its meta-cleavage product 2-hydroxy-7-methyl-6-oxononadioic-2,4-dienoic acid were produced. These products disappeared during late exponential growth, and considerable amounts of 2,3-DHPB reacted to form brownish polymeric substances. The catechol intermediate 2,3-DHPB could not be isolated, but cell-free extracts were able only to oxidize 3-(2,3-dihydroxyphenyl)propionate of all dihydroxy aromatic acids tested. Moreover, a reaction product caused by dehydration of 2,3-DHPB on silica gel was isolated and identified by spectral analysis as (--)-8-hydroxy-4-methyl-3,4-dihydrocoumarin. 3-Phenylpropionate and a hydroxycinnamate were found in supernatants of cultures grown on 3-PB; phenylacetate and benzoate were found in supernatants of cultures grown on 3-phenylpropionate; and phenylacetate was found in cultures grown on cinnamate. Cells grown on 3-PB rapidly oxidized 3-phenylpropionate, cinnamate, catechol, and 3-(2,3-dihydroxyphenyl)propionate, whereas 2-phenylpropionate, 2,3-dihydroxycinnamate, benzoate, phenylacetate, and salicylate were oxidized at much slower rates. Phenylsuccinate was not utilized for growth nor was it oxidized by washed cell suspensions grown on 3-PB. However, dual axenic cultures of Pseudomonas acidovorans and Klebsiella pneumoniae, which could not grow on phenylsuccinate alone, could grow syntrophically and produced the same metabolites found during catabolism of 3-PB by Pseudomonas sp. Washed cell suspensions of dual axenic cultures also immediately oxidized phenylsuccinate, 3-phenylpropionate, cinnamate, phenylacetate, and benzoate.
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- 1982
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14. Renewable Resources for the Production of Aromatic Chemicals
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Sariaslani, Sima, Van Dyk, Tina, Huang, Lisa, Gatenby, Anthony, and Ben‐Bassat, Arie
- Abstract
ChemInform is a weekly Abstracting Service, delivering concise information at a glance that was extracted from about 200 leading journals. To access a ChemInform Abstract, please click on HTML or PDF.
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- 2006
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15. ChemInform Abstract: Stereochemistry of Microbiological Hydroxylations of 1,4‐Cineole.
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LIU, W.‐G., GOSWAMI, A., PAULSON STEFFEK, R., CHAPMAN, R. L., SARIASLANI, F. S., STEFFENS, J. J., and ROSAZZA, J. P. N.
- Published
- 1989
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