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Dive into the research topics where Janine Lin is active.

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Featured researches published by Janine Lin.


Fems Microbiology Letters | 2003

Kakadumycins, novel antibiotics from Streptomyces sp. NRRL 30566, an endophyte of Grevillea pteridifolia

Uvidelio Castillo; Gary A. Strobel; Joseph Sears; Kara Alesi; Eugene J. Ford; Janine Lin; Michelle Hunter; Michelle Maranta; Haiyan Ge; Debbie Yaver; James B. Jensen; Heidi Porter; Richard A. Robison; D Millar; W. M. Hess; Margret Condron; David B. Teplow

An endophytic streptomycete (NRRL 30566) is described and partially characterized from a fern-leaved grevillea (Grevillea pteridifolia) tree growing in the Northern Territory of Australia. This endophytic streptomycete produces, in culture, novel antibiotics - the kakadumycins. Methods are outlined for the production and chemical characterization of kakadumycin A and related compounds. This antibiotic is structurally related to a quinoxaline antibiotic, echinomycin. Each contains, by virtue of their amino acid compositions, alanine, serine and an unknown amino acid. Other biological, spectral and chromatographic differences between these two compounds occur and are given. Kakadumycin A has wide spectrum antibiotic activity, especially against Gram-positive bacteria, and it generally displays better bioactivity than echinomycin. For instance, against Bacillus anthracis strains, kakadumycin A has minimum inhibitory concentrations of 0.2-0.3 microg x ml(-1) in contrast to echinomycin at 1.0-1.2 microg x ml(-1). Both echinomycin and kakadumycin A have impressive activity against the malarial parasite Plasmodium falciparum with LD(50)s in the range of 7-10 ng x ml(-1). In macromolecular synthesis assays both kakadumycin A and echinomycin have similar effects on the inhibition of RNA synthesis. It appears that the endophytic Streptomyces sp. offer some promise for the discovery of novel antibiotics with pharmacological potential.


Archive | 2005

Polypeptides having lipase activity and polynucleotides encoding same

Suzanne Otani; Debbie Yaver; Haiyan Ge; Janine Lin; Christopher Amolo; Kim Borch; Shamkant Anant Patkar; Michael Lamsa; Barbara Cherry


Archive | 2011

Xylanase variants and polynucleotides encoding same

Janine Lin; Jung Ye; Aubrey Jones; Suzanne Otani; Tia Heu; Esben Peter Friis


Archive | 2012

Gh61 polypeptide variants and polynucleotides encoding same

Janine Lin; Doreen Bohan; Michelle Maranta; Leslie Beresford; Michael Lamsa; Matt Sweeney; Mark Wogulis; Elizabeth Znameroski; Frank Winther Rasmussen


Archive | 2005

Polypeptides having xylanase activity from Aspergillus fumigatus

Debbie Yaver; Paul Harris; Suzanne Otani; Janine Lin; Haiyan Ge


Fems Microbiology Letters | 2003

Kakadumycins, novel antibiotics fromStreptomycessp. NRRL 30566, an endophyte ofGrevillea pteridifolia

Uvidelio Castillo; James K. Harper; Gary A. Strobel; Joseph Sears; Kara Alesi; Eugene J. Ford; Janine Lin; Michelle Hunter; Michelle Maranta; Haiyan Ge; Debbie Yaver; James B. Jensen; Heidi Porter; Richard A. Robison; D Millar; W. M. Hess; Margret Condron; David B. Teplow


Archive | 2011

Polypeptides Having Xylanase Activity And Polynucleotides Thereof

Debbie Yaver; Paul Harris; Suzanne Otani; Janine Lin; Hanshu Ding


Archive | 2001

METHODS FOR EXPRESSING ENDOGENOUS GENES BY RESTRICTION ENZYME MEDIATED INTEGRATION

Janine Lin; Debbie Yaver; Donald C. Foster; Richard D. Holly


Annals of Oncology | 2018

86PLongitudinal assessment of multiplex patient-specific ctDNA biomarkers in bladder cancer for diagnosis, surveillance and recurrence

Karin Birkenkamp-Demtröder; Emil Christensen; Himanshu Sethi; Shruti Sharma; Hsin-Ta Wu; A Taber; Mads Agerbæk; Ryan Swenerton; R. Salari; D Hafez; Iver Nordentoft; Philippe Lamy; R Srinivasan; M Balcioglu; Samantha Navarro; Z Assaf; Bernhard Zimmermann; Janine Lin; J Bjerggaard Jensen; Lars Dyrskjøt


Archive | 2017

variante de um polipeptídeo, polinucleotídeo isolado, método para produção de uma variante de um polipeptídeo, planta, parte de planta ou célula de planta, processos para degradação ou conversão de um material celulósico, para produção de um produto de fermentação, e para fermentação de um material celulósico, formulação ou composição de cultura celular de caldo inteiro, e, composição detergente

Bjarne Gram Hansen; Doreen Bohan; Douglas J Boyle; Frank Winther Rasmussen; Janine Lin; Leslie Beresford; Matt Sweeney; Michael Lamsa; Michaelle Maranta

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