Zobrazeno 1 - 10
of 15
pro vyhledávání: '"Mariya D. Kolesnikova"'
Autor:
Kelly J. Fitzgerald, David Spiegel, Aaron Balog, Weifang Shan, Andrew Zhang, Eugene F. Douglass, Mariya D. Kolesnikova, Patrick J. McEnaney
Publikováno v:
Journal of the American Chemical Society
This article reports the design, synthesis, and evaluation of a novel class of molecules of intermediate size (approximately 7000 Da), which possess both the targeting and effector functions of antibodies. These compounds—called synthetic antibody
Autor:
Mariya D. Kolesnikova, Rachel P. Berger, Janet Fromkin, Bruce E. Herman, Mary Clyde Pierce, Paul T. Smith, David Englert, Richard A. Saladino, Patrick M. Kochanek, Brian J. Pak
Publikováno v:
JAMA pediatrics. 171(6)
Importance Abusive head trauma is the leading cause of death from physical abuse. Missing the diagnosis of abusive head trauma, particularly in its mild form, is common and contributes to increased morbidity and mortality. Serum biomarkers may have p
Autor:
Nishat Zaman, Gabrielle Wishart, Arianna Hustler, David Englert, Mariya D. Kolesnikova, Daniel J. O'Shannessy
Publikováno v:
Cancer Research. 79:1375-1375
Background: Discrimination between benign and malignant pelvic masses by gene expression profiling of circulating tumor cells (CTCs) may provide information to assist in treatment decisions and improve outcomes. CTCs can be isolated and harvested fro
Autor:
David Spiegel, Christopher G. Parker, Eugene F. Douglass, Ran N. Tao, Mariya D. Kolesnikova, Charles E. Jakobsche
Publikováno v:
ACS Chemical Biology. 8:2404-2411
The ability to profile the prevalence and functional activity of endogenous antibodies is of vast clinical and diagnostic importance. Serum antibodies are an important class of biomarkers and are also crucial elements of immune responses elicited by
Publikováno v:
Journal of the American Chemical Society. 135:5885-5894
Plants allocate an estimated 15-25% of their proteome to specialized metabolic pathways that remain largely uncharacterized. Here, we describe a genome mining strategy for exploring such unknown pathways and demonstrate this approach for triterpenoid
Autor:
Quanbo Xiong, Aparna Bhaduri, William K. Wilson, Mariya D. Kolesnikova, Seiichi P. T. Matsuda, Diana Sttivend, Pietro Morlacchi
Publikováno v:
Organic Letters. 11:2627-2630
The triterpene product profile is reported for At5g36150 (PEN3), the last unexamined oxidosqualene cyclase in the reference plant Arabidopsis thaliana. PEN3 makes tirucalla-7,24-dien-3beta-ol ( approximately 85%) and several minor products. Also disc
Autor:
Seiichi P. T. Matsuda, William K. Wilson, Mariya D. Kolesnikova, David A. Lynch, and Allie C. Obermeyer
Publikováno v:
Organic Letters. 9:5223-5226
We establish by heterologous expression that the Arabidopsis thaliana oxidosqualene cyclase At1g78955 (CAMS1) makes camelliol C (98%), achilleol A (2%), and beta-amyrin (0.2%). CAMS1 is the first characterized cyclase that generates predominantly a m
Autor:
Mariya D. Kolesnikova, Quanbo Xiong, Silvia Lodeiro, William K. Wilson, Carl S. Onak, Seiichi P. T. Matsuda
Publikováno v:
Journal of the American Chemical Society. 129:11213-11222
The genome of the model plant Arabidopsis thaliana encodes 13 oxidosqualene cyclases, 9 of which have been characterized by heterologous expression in yeast. Here we describe another cyclase, baruol synthase (BARS1), which makes baruol (90%) and 22 m
Autor:
Seiichi P. T. Matsuda, William K. Wilson, Quanbo Xiong, Mariya D. Kolesnikova, Allie C. Obermeyer, David A. Lynch
Publikováno v:
Organic Letters. 9:2183-2186
An oxidosqualene cyclase from Arabidopsis thaliana makes arabidiol, a tricyclic triterpene reported with indeterminate side-chain stereochemistry. We established the full structure of arabidiol through chemical degradation, NOE experiments, and molec
Publikováno v:
Archives of Biochemistry and Biophysics. 447:87-95
Plants biosynthesize sterols from cycloartenol using a pathway distinct from the animal and fungal route through lanosterol. Described herein are genome-mining experiments revealing that Arabidopsis encodes, in addition to cycloartenol synthase, an a