1.
Encoding social signals in the mouse main olfactory bulb
by Katz, Lawrence C
Nature, 2005-03-24, Vol.434 (7032), p.470-477

2.
Nitric oxide activates TRP channels by cysteine S-nitrosylation
by Mori, Yasuo
Nature chemical biology, 2006-11, Vol.2 (11), p.596-607

3.
The Disulfide Proteome and Other Reactive Cysteine Proteomes: Analysis and Functional Significance
by Lindahl, Marika
Antioxidants & redox signaling, 2011-06-15, Vol.14 (12), p.2581-2642

4.
Bacillithiol: a key protective thiol in Staphylococcus aureus
by Perera, Varahenage R
Expert review of anti-infective therapy, 2015-09-02, Vol.13 (9), p.1089-1107

5.
The Specificity of Nitroxyl Chemistry Is Unique Among Nitrogen Oxides in Biological Systems
by Flores-Santana, Wilmarie
Antioxidants & redox signaling, 2011-05-01, Vol.14 (9), p.1659-1674

6.
HNO Signaling Mechanisms
by Fukuto, Jon M.
Antioxidants & redox signaling, 2011-05-01, Vol.14 (9), p.1649-1657

7.
Quick measurement of protein sulfhydryls with Ellman's reagent and with 4,4'-dithiodipyridine
by Riener, Christian K
Analytical and bioanalytical chemistry, 2002-07, Vol.373 (4-5), p.266-276

8.
A cholesteryl ester transfer protein inhibitor attenuates atherosclerosis in rabbits
by Okamoto, Hiroshi
Nature (London), 2000-07-13, Vol.406 (6792), p.203-207

9.
Nitroalkenes Suppress Lipopolysaccharide-Induced Signal Transducer and Activator of Transcription Signaling in Macrophages: A Critical Role of Mitogen-Activated Protein Kinase Phos...
by Ichikawa, Tomonaga
Endocrinology (Philadelphia), 2008-08, Vol.149 (8), p.4086-4094

10.
Polymers with thiol groups : A new generation of mucoadhesive polymers?
by BERNKOP-SCHNÜRCH, A
Pharmaceutical research, 1999, Vol.16 (6), p.876-881

11.
The increase in intra-macrophage thiols induced by new pro-GSH molecules directs the Th1 skewing in ovalbumin immunized mice
by Fraternale, Alessandra
Vaccine, 2010, Vol.28 (48), p.7676-7682

12.
Involvement of Glutathione, Sulfhydryl Compounds, Nitric Oxide, Vasoactive Intestinal Peptide, and Heat-Shock Protein-70 in the Gastroprotective Mechanism of Croton cajucara Benth....
by Rozza, Ariane Leite
Journal of Medicinal Food, 14(9), pp.1011-1017

13.
Attenuation of NMDA Receptor Activity and Neurotoxicity by Nitroxyl Anion, NO
by Kim, Won-Ki
Neuron (Cambridge, Mass.), 1999, Vol.24 (2), p.461-469

14.
Chemical considerations and biological selectivity of protein nitrosation: implications for NO-mediated signal transduction
by Guikema, Benjamin
Antioxidants & redox signaling, 2005-05, Vol.7 (5-6), p.593-606

15.
Redox modulation of the NMDA receptor
by Choi, Y B
Cellular and molecular life sciences : CMLS, 2000-10, Vol.57 (11), p.1535-1541

16.
Cleavage of Disulfide Bonds in Mouse Spermatogenic Cell-Specific Type 1 Hexokinase Isozyme Is Associated with Increased Hexokinase Activity and Initiation of Sperm Motility
by NAKAMURA, Noriko
Biology of reproduction, 2008-09-01, Vol.79 (3), p.537-545

17.
The Outer Pore of the Glutamate Receptor Channel Has 2-Fold Rotational Symmetry
by Sobolevsky, Alexander I
Neuron (Cambridge, Mass.), 2004-02-05, Vol.41 (3), p.367-378

18.
Biological chemistry of thiols in the vasculature and in vascular-related disease
by Stamler, J.S. (Duke Medical Center, Durham, NC.)
Nutrition reviews, 1996-01, Vol.54 (1), p.1-30

19.
Non-thiol reagents regulate ryanodine receptor function by redox interactions that modify reactive thiols
by Marinov, Benjamin S
Antioxidants & redox signaling, 2007-05, Vol.9 (5), p.609-621

20.
S-nitrosylation TRiPs a calcium switch
by Foster, Matthew W
Nature chemical biology, 2006-11, Vol.2 (11), p.570-571
