Mahesh D Patil

researcher

Mahesh D Patil is …
instance of (P31):
humanQ5

External links are
P496ORCID iD0000-0002-5602-3442
P1153Scopus author ID57188588655

P69educated atNational Institute of Pharmaceutical Education and Research, S.A.S. NagarQ3631392
P108employerKonkuk UniversityQ41765
P106occupationresearcherQ1650915

Reverse relations

author (P50)
Q38816145Arginine dependence of tumor cells: targeting a chink in cancer's armor
Q59405358Biosynthesis of Medium- to Long-Chain α,ω-Diols from Free Fatty Acids Using CYP153A Monooxygenase, Carboxylic Acid Reductase, and E. coli Endogenous Aldehyde Reductases
Q47244146Biosynthesis of the Nylon 12 Monomer, ω-Aminododecanoic Acid with Novel CYP153A, AlkJ, and ω-TA Enzymes
Q89048100Combined effect of attrition and ultrasound on the disruption of Pseudomonas putida for the efficient release of arginine deiminase
Q37306342Disruption of Pseudomonas putida by high pressure homogenization: a comparison of the predictive capacity of three process models for the efficient release of arginine deiminase
Q58543002Enzymatic synthesis of sitagliptin intermediate using a novel ω-transaminase
Q91595956In vivo biosynthesis of tyrosine analogs and their concurrent incorporation into a residue-specific manner for enzyme engineering
Q92383481Production of 12-hydroxy dodecanoic acid methyl ester using a signal peptide sequence-optimized transporter AlkL and a novel monooxygenase
Q50275839Production of Mycophenolic Acid by Penicillium brevicompactum Using Solid State Fermentation.
Q37296578Production of mycophenolic acid by Penicillium brevicompactum-A comparison of two methods of optimization
Q91131494Purification and characterization of arginine deiminase from Pseudomonas putida: Structural insights of the differential affinities of l-arginine analogues
Q38928836Ultrasonic disruption of Pseudomonas putida for the release of arginine deiminase: Kinetics and predictive models.
Q37351509Use of response surface method for maximizing the production of arginine deiminase by Pseudomonas putida