Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Alison E. Ondrus is active.

Publication


Featured researches published by Alison E. Ondrus.


Bioorganic & Medicinal Chemistry | 2008

Poly(ADP-ribose) polymerase-1 activity facilitates the dissociation of nuclear proteins from platinum-modified DNA

Evan R. Guggenheim; Alison E. Ondrus; Mohammad Movassaghi; Stephen J. Lippard

The affinity of the poly(ADP-ribose) polymerase-1 (PARP-1) for platinum-damaged DNA was first discovered during photo-cross-linking experiments using the photoactive compound Pt-BP6 [J. Am. Chem. Soc.2004, 126, 6536-6537], an analogue of the anticancer drug cis-diamminedichloroplatinum(II), cisplatin. Although PARP inhibitors sensitize cancer cells to cisplatin, there are conflicting reports in the literature about their efficacy. In order to improve our understanding of the mechanism by which PARP inhibition might potentiate the cell-killing ability of cisplatin, and to shed light on the source of the discrepancy among different laboratories, we have in the present study probed the influence of three PARP inhibitors in four types of cancer cells, cervical (HeLa), testicular (NTera2), pancreatic (BxPC3), and osteosarcoma (U2OS), on the results of Pt-BP6 photo-cross-linking experiments and cytotoxicity assays. We find that the activity of PARP proteins following exposure to platinum-modified DNA results in the dissociation of DNA-bound proteins. PARP inhibitors were able to sensitize some, but not all, of the cell lines to cisplatin. This cell line-dependence and the potential consequences of PARP-initiated protein removal from platinum-DNA lesions are discussed. Control experiments revealed that NTera2 cells are especially sensitive to PARP inhibition.


Chemistry & Biology | 2012

Fluorescent Saxitoxins for Live Cell Imaging of Single Voltage-Gated Sodium Ion Channels beyond the Optical Diffraction Limit

Alison E. Ondrus; Hsiao-lu D. Lee; Shigeki Iwanaga; William H. Parsons; Brian Andresen; W. E. Moerner; J. Du Bois

A desire to better understand the role of voltage-gated sodium channels (Na(V)s) in signal conduction and their dysregulation in specific disease states motivates the development of high precision tools for their study. Nature has evolved a collection of small molecule agents, including the shellfish poison (+)-saxitoxin, that bind to the extracellular pore of select Na(V) isoforms. As described in this report, de novo chemical synthesis has enabled the preparation of fluorescently labeled derivatives of (+)-saxitoxin, STX-Cy5, and STX-DCDHF, which display reversible binding to Na(V)s in live cells. Electrophysiology and confocal fluorescence microscopy studies confirm that these STX-based dyes function as potent and selective Na(V) labels. The utility of these probes is underscored in single-molecule and super-resolution imaging experiments, which reveal Na(V) distributions well beyond the optical diffraction limit in subcellular features such as neuritic spines and filopodia.


Organic Letters | 2009

Reversible dimerization of (+)-myrmicarin 215B.

Alison E. Ondrus; Mohammad Movassaghi

Brønsted acid promoted reversible dimerization of myrmicarin 215B leads to formation of a new heptacyclic product, isomyrmicarin 430B, that possesses a C1,C2-trans,C2,C3-trans-substituted cyclopentane ring. Mechanistic studies illustrate that isomyrmicarin 430B arises by isomerization of isomyrmicarin 430A via fragmentation to tricyclic azafulvenium ions. Factors influencing the structure of heptacyclic isomyrmicarin products and potential relevance of this reversible vinyl pyrroloindolizine dimerization to the biosynthesis of complex myrmicarins are discussed.


Journal of Organic Chemistry | 2005

Palladium-Catalyzed Synthesis of N-Vinyl Pyrroles and Indoles

Mohammad Movassaghi; Alison E. Ondrus


Organic Letters | 2005

Enantioselective Total Synthesis of Tricyclic Myrmicarin Alkaloids

Mohammad Movassaghi; Alison E. Ondrus


Tetrahedron | 2006

Dimerization of (+)-myrmicarin 215B. A potential biomimetic approach to complex myrmicarin alkaloids

Alison E. Ondrus; Mohammad Movassaghi


Tetrahedron | 2010

Dimerization of functional pyrroloindolizines for the synthesis of complex myrmicarin alkaloids.

Alison E. Ondrus; H. Ümit Kaniskan; Mohammad Movassaghi


Archive | 2013

Imidazo bicyclic imminium compounds as antitumor agents

James K. Chen; Tomoyo Sakata Kato; Alison E. Ondrus


PMC | 2010

Dimerization of functional pyrroloindolizines for the synthesis of complex myrmicarin alkaloids

Alison E. Ondrus; Husnu Umit Kaniskan; Mohammad Movassaghi


PMC | 2009

Total synthesis and study of myrmicarin alkaloids

Alison E. Ondrus; Mohammad Movassaghi

Collaboration


Dive into the Alison E. Ondrus's collaboration.

Top Co-Authors

Avatar

Mohammad Movassaghi

Massachusetts Institute of Technology

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Evan R. Guggenheim

Massachusetts Institute of Technology

View shared research outputs
Top Co-Authors

Avatar

H. Ümit Kaniskan

Massachusetts Institute of Technology

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Stephen J. Lippard

Massachusetts Institute of Technology

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge