关注
Mohammed Ibrahim
Mohammed Ibrahim
Principal Scientist, Bristol Myers Squibb
在 bms.com 的电子邮件经过验证
标题
引用次数
引用次数
年份
Trans-dioxo manganese (V) porphyrins
N Jin, M Ibrahim, TG Spiro, JT Groves
Journal of the American Chemical Society 129 (41), 12416-12417, 2007
1742007
New light on NO bonding in Fe (III) heme proteins from resonance Raman spectroscopy and DFT modeling
AV Soldatova, M Ibrahim, JS Olson, RS Czernuszewicz, TG Spiro
Journal of the American Chemical Society 132 (13), 4614-4625, 2010
1232010
Protein dynamics from time resolved UV Raman spectroscopy
G Balakrishnan, CL Weeks, M Ibrahim, AV Soldatova, TG Spiro
Current opinion in structural biology 18 (5), 623-629, 2008
862008
Differential sensing of protein influences by NO and CO vibrations in heme adducts
M Ibrahim, C Xu, TG Spiro
Journal of the American Chemical Society 128 (51), 16834-16845, 2006
792006
Resonance Raman spectroscopic studies of hydroperoxo-myoglobin at cryogenic temperatures
M Ibrahim, IG Denisov, TM Makris, JR Kincaid, SG Sligar
Journal of the American Chemical Society 125 (45), 13714-13718, 2003
722003
Characterization of two different five-coordinate soluble guanylate cyclase ferrous–nitrosyl complexes
ER Derbyshire, A Gunn, M Ibrahim, TG Spiro, RD Britt, MA Marletta
Biochemistry 47 (12), 3892-3899, 2008
462008
Probing soluble guanylate cyclase activation by CO and YC-1 using resonance Raman spectroscopy
M Ibrahim, ER Derbyshire, MA Marletta, TG Spiro
Biochemistry 49 (18), 3815-3823, 2010
372010
DFT Analysis of Axial and Equatorial Effects on Heme− CO Vibrational Modes: Applications to CooA and H− NOX Heme Sensor Proteins
C Xu, M Ibrahim, TG Spiro
Biochemistry 47 (8), 2379-2387, 2008
352008
Soluble guanylate cyclase is activated differently by excess NO and by YC-1: resonance Raman spectroscopic evidence
M Ibrahim, ER Derbyshire, AV Soldatova, MA Marletta, TG Spiro
Biochemistry 49 (23), 4864-4871, 2010
312010
Chapter 4 - CO, NO, and O2 as Vibrational Probes of Heme Protein Active Sites
TG Spiro, M Ibrahim, IH Wasbotten, A Ghosh
The Smallest Biomolecules, 95-123, 2008
22*2008
Mechanism of the CO-sensing heme protein CooA: new insights from the truncated heme domain and UVRR spectroscopy
M Ibrahim, M Kuchinskas, H Youn, RL Kerby, GP Roberts, TL Poulos, ...
Journal of inorganic biochemistry 101 (11-12), 1776-1785, 2007
222007
Probing domain interactions in soluble guanylate cyclase
ER Derbyshire, MB Winter, M Ibrahim, S Deng, TG Spiro, MA Marletta
Biochemistry 50 (20), 4281-4290, 2011
212011
Heme displacement mechanism of CooA activation: mutational and Raman spectroscopic evidence
M Ibrahim, RL Kerby, M Puranik, IH Wasbotten, H Youn, GP Roberts, ...
Journal of Biological Chemistry 281 (39), 29165-29173, 2006
212006
Characterization of the solid physical state of API and its distribution in pharmaceutical hot melt extrudates using terahertz Raman imaging
M Ibrahim, J Zhang, M Repka, R Chen
Aaps Pharmscitech 20 (2), 1-8, 2019
172019
Classification of polyethylene by Raman spectroscopy
M Ibrahim, H He
Application Note AN52301, Thermo Fisher Scientific, 2017
162017
Linking conformation change to hemoglobin activation via chain-selective time-resolved resonance Raman spectroscopy of protoheme/mesoheme hybrids
G Balakrishnan, M Ibrahim, PJ Mak, J Hata, JR Kincaid, TG Spiro
JBIC Journal of Biological Inorganic Chemistry 14 (5), 741-750, 2009
152009
CO, NO, and O2 as vibrational probes of heme protein active sites
TG Spiro, M Ibrahim, IH Wasbotten
The smallest biomolecules: diatomics and their interactions with heme …, 2008
152008
Spectroscopic studies of peroxo/hydroperoxo derivatives of heme proteins and model compounds
M Ibrahim, JR Kincaid
Journal of Porphyrins and Phthalocyanines 8 (03), 215-225, 2004
152004
Electronic structure and ligand vibrations in FeNO, CoNO, and FeOO porphyrin adducts
AV Soldatova, M Ibrahim, TG Spiro
Inorganic chemistry 52 (13), 7478-7486, 2013
142013
Determination of diffusion coefficients of proteins by flow injection analysis and its application to estimation of molecular masses of proteins
M Ibrahim, Z Gongwei, Z Junjie
Instrumentation science & technology 26 (4), 333-341, 1998
91998
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