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Featured researches published by Mike A Christiansen.


ACS Chemical Biology | 2011

Meta-omic characterization of the marine invertebrate microbial consortium that produces the chemotherapeutic natural product ET-743.

Christopher M. Rath; Benjamin Janto; Josh Earl; Azad Ahmed; Fen Z. Hu; Luisa Hiller; Meg Dahlgren; Rachael Kreft; Fengan Yu; J. Jens Wolff; Hye Kyong Kweon; Mike A Christiansen; Kristina Håkansson; Robert M. Williams; Garth D. Ehrlich; David H. Sherman

In many macroorganisms, the ultimate source of potent biologically active natural products has remained elusive due to an inability to identify and culture the producing symbiotic microorganisms. As a model system for developing a meta-omic approach to identify and characterize natural product pathways from invertebrate-derived microbial consortia, we chose to investigate the ET-743 (Yondelis) biosynthetic pathway. This molecule is an approved anticancer agent obtained in low abundance (10(-4)-10(-5) % w/w) from the tunicate Ecteinascidia turbinata and is generated in suitable quantities for clinical use by a lengthy semisynthetic process. On the basis of structural similarities to three bacterial secondary metabolites, we hypothesized that ET-743 is the product of a marine bacterial symbiont. Using metagenomic sequencing of total DNA from the tunicate/microbial consortium, we targeted and assembled a 35 kb contig containing 25 genes that comprise the core of the NRPS biosynthetic pathway for this valuable anticancer agent. Rigorous sequence analysis based on codon usage of two large unlinked contigs suggests that Candidatus Endoecteinascidia frumentensis produces the ET-743 metabolite. Subsequent metaproteomic analysis confirmed expression of three key biosynthetic proteins. Moreover, the predicted activity of an enzyme for assembly of the tetrahydroisoquinoline core of ET-743 was verified in vitro. This work provides a foundation for direct production of the drug and new analogues through metabolic engineering. We expect that the interdisciplinary approach described is applicable to diverse host-symbiont systems that generate valuable natural products for drug discovery and development.


European Journal of Physics | 2014

Angry Birds realized: water balloon launcher for teaching projectile motion with drag

Boyd F. Edwards; David D. Sam; Mike A Christiansen; William Booth; Leslie O Jessup

A simple, collapsible design for a large water balloon slingshot launcher features a fully adjustable initial velocity vector and a balanced launch platform. The design facilitates quantitative explorations of the dependence of the balloon range and time of flight on the initial speed, launch angle, and projectile mass, in an environment where quadratic air drag is important. Presented are theory and experiments that characterize this drag, and theory and experiments that characterize the nonlinear elastic energy and hysteresis of the latex tubing used in the slingshot. The experiments can be carried out with inexpensive and readily available tools and materials. The launcher provides an engaging way to teach projectile motion and elastic energy to students of a wide variety of ages.


Archive | 2013

Schematics of a Water Balloon Launcher Design and Reproducible Water-Balloon-Filling Procedures Used for a Middle School Summer Science Camp

Mike A Christiansen; Boyd F. Edwards; David D. Sam


An Electrolysis Experiment for a Middle School Summer Science Camp | 2013

An Electrolysis Experiment for a Middle School Summer Science Camp

Mike A Christiansen; Leslie O Jessup; Kevin D. Woodward


Organic Chemistry Lecture Videos: Second Semester | 2012

Chapter 20 (Part 1): Oxidation and Reduction Reactions

Mike A Christiansen


Organic Chemistry Lecture Videos: Second Semester | 2012

Chapter 23 (Part 1): Protein Chemistry

Mike A Christiansen


Organic Chemistry Lecture Videos: Second Semester | 2012

Chapter 17 (Part 1): Naming Carboxylic Acid Derivatives

Mike A Christiansen


Organic Chemistry Lecture Videos: Second Semester | 2012

Chapter 17 (Part 2): Reactions of Carbonyl Compounds

Mike A Christiansen


Organic Chemistry Lecture Videos: Second Semester | 2012

Chapter 16 (Part 3): The Acidity of Substituted Benzenes

Mike A Christiansen


Organic Chemistry Lecture Videos: Second Semester | 2012

Chapter 28 (Part 1): Nucleic Acid Chemistry

Mike A Christiansen

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Azad Ahmed

Allegheny General Hospital

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Benjamin Janto

Allegheny General Hospital

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Fengan Yu

University of Michigan

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