Preview
Sign-in for full Details 
Sign-in free and Explore the Exciting World of BiomedExperts:
- Over 1.500.000 Profiles
- More than 1.800 Organizations worldwide
- State of the Art Network Visualizations
- Manage your own Profile
- Locate Experts in your Country/Region
- Locate Experts in your 1. and 2. Level Network
- Connect to Experts Worldwide
NetworkView
Sharon Campbell
This is a preview profile on BiomedExperts - the first literature-based scientific social network. It brings the right researchers
together and allows them to collaborate online. Collexis and Dell provide the BiomedExperts network of +1.5 Million pre-calculated profiles
free of charge to researchers worldwide.
Research Profile (preview)
Concepts & Ideas
Chemicals & Drugs
Genes & Molecular Sequences
Anatomy
Phenomena
Living Beings
Disorders
Physiology
Sign-in to see full Profile
Network (preview)
13
Der, Channing
9
Rossman, Kent
8
Heo, Jongyun
6
Karnoub, Antoine
5
Schaller, Michael
5
Prutzman, Kirk
5
Gao, Guanghua
4
Chaney, Stephen
4
Wu, Yibing
4
Thapar, Roopa
3
Khosravi-Far, Roya
3
Sondek, John
3
Clark, Geoffrey
3
Dokholyan, Nikolay
2
Drugan, JK
Sign-in to see all Coauthors
Publications
Sign-in to see all Publications
Sign in free and see...
Visualized networks:
See your personal network in
sophisticated graphical views
GeoTargeted Searches:
Locate experts around the world
and connect with global collaborators
Research Profiles:
See the visualized research activity
of experts around the globe
Sign-in to see more
Geonetwork of Sharon Campbell (preview)
Cities where this author has publications
Cities where co-authors of this author have publications
Sign-in to see more
All Publications
-
2008: Palmer Sean M; Schaller Michael D; Campbell Sharon L
Vinculin tail conformation and self-association is independent of pH and H906 protonation.
Biochemistry 2008;47(47):12467-75.
-
2008: Palmer Sean M; Campbell Sharon L
Backbone 1H, 13C, and 15N NMR assignments of the tail domain of vinculin.
Biomolecular NMR assignments 2008;2(1):69-71.
-
2008: Dixon Richard D S; Campbell Sharon L
1H, 15N, and 13C NMR chemical shift assignments for the Ig3 domain of palladin.
Biomolecular NMR assignments 2008;2(1):51-3.
-
2008: Scheswohl Danielle M; Harrell Jessica R; Rajfur Zenon; Gao Guanghua; Campbell Sharon L; Schaller Michael D
Multiple paxillin binding sites regulate FAK function.
Journal of molecular signaling 2008;3():1.
-
2007: Chen Yiwen; Campbell Sharon L; Dokholyan Nikolay V
Deciphering protein dynamics from NMR data using explicit structure sampling and selection.
Biophysical journal 2007;93(7):2300-6.
-
2007: Raines Kimberly W; Bonini Marcelo G; Campbell Sharon L
Nitric oxide cell signaling: S-nitrosation of Ras superfamily GTPases.
Cardiovascular research 2007;75(2):229-39.
-
2007: Wu Yibing; Bhattacharyya Debadeep; King Candice L; Baskerville-Abraham Irene; Huh Sung-Ho; Boysen Gunnar; Swenberg James A; Temple Brenda; Campbell Sharon L; Chaney Stephen G
Solution structures of a DNA dodecamer duplex with and without a cisplatin 1,2-d(GG) intrastrand cross-link: comparison with the same DNA duplex containing an oxaliplatin 1,2-d(GG) intrastrand cross-link.
Biochemistry 2007;46(22):6477-87.
-
2006: Heo Jongyun; Raines Kimberly W; Mocanu Viorel; Campbell Sharon L
Redox regulation of RhoA.
Biochemistry 2006;45(48):14481-9.
-
2006: Heo Jongyun; Campbell Sharon L
Ras regulation by reactive oxygen and nitrogen species.
Biochemistry 2006;45(7):2200-10.
-
2006: Ding Feng; Prutzman Kirk C; Campbell Sharon L; Dokholyan Nikolay V
Topological determinants of protein domain swapping.
Structure (London, England : 1993) 2006;14(1):5-14.
-
2005: Heo Jongyun; Campbell Sharon L
Mechanism of redox-mediated guanine nucleotide exchange on redox-active Rho GTPases.
The Journal of biological chemistry 2005;280(35):31003-10.
-
2005: Heo Jongyun; Thapar Roopa; Campbell Sharon L
Recognition and activation of Rho GTPases by Vav1 and Vav2 guanine nucleotide exchange factors.
Biochemistry 2005;44(17):6573-85.
-
2005: Heo Jongyun; Campbell Sharon L
Superoxide anion radical modulates the activity of Ras and Ras-related GTPases by a radical-based mechanism similar to that of nitric oxide.
The Journal of biological chemistry 2005;280(13):12438-45.
-
2005: Heo Jongyun; Prutzman Kirk C; Mocanu Viorel; Campbell Sharon L
Mechanism of free radical nitric oxide-mediated Ras guanine nucleotide dissociation.
Journal of molecular biology 2005;346(5):1423-40.
-
2005: Chaney Stephen G; Campbell Sharon L; Bassett Ekaterina; Wu Yibing
Recognition and processing of cisplatin- and oxaliplatin-DNA adducts.
Critical reviews in oncology/hematology 2005;53(1):3-11.
-
2004: Dixon Richard D S; Chen Yiwen; Ding Feng; Khare Sagar D; Prutzman Kirk C; Schaller Michael D; Campbell Sharon L; Dokholyan Nikolay V
New insights into FAK signaling and localization based on detection of a FAT domain folding intermediate.
Structure (London, England : 1993) 2004;12(12):2161-71.
-
2004: Thapar Roopa; Williams Jason G; Campbell Sharon L
NMR characterization of full-length farnesylated and non-farnesylated H-Ras and its implications for Raf activation.
Journal of molecular biology 2004;343(5):1391-408.
-
2004: Chaney Stephen G; Campbell Sharon L; Temple Brenda; Bassett Ekaterina; Wu Yibing; Faldu Mihir
Protein interactions with platinum-DNA adducts: from structure to function.
Journal of inorganic biochemistry 2004;98(10):1551-9.
-
2004: Wu Yibing; Pradhan Padmanava; Havener Jody; Boysen Gunnar; Swenberg James A; Campbell Sharon L; Chaney Stephen G
NMR solution structure of an oxaliplatin 1,2-d(GG) intrastrand cross-link in a DNA dodecamer duplex.
Journal of molecular biology 2004;341(5):1251-69.
-
2004: Heo Jongyun; Gao Guanghua; Campbell Sharon L
pH-dependent perturbation of Ras-guanine nucleotide interactions and Ras guanine nucleotide exchange.
Biochemistry 2004;43(31):10102-11.
-
2004: Solski Patricia A; Wilder Rhonda S; Rossman Kent L; Sondek John; Cox Adrienne D; Campbell Sharon L; Der Channing J
Requirement for C-terminal sequences in regulation of Ect2 guanine nucleotide exchange specificity and transformation.
The Journal of biological chemistry 2004;279(24):25226-33.
-
2004: Prutzman Kirk C; Gao Guanghua; King Michelle L; Iyer Vidhya V; Mueller Geoffrey A; Schaller Michael D; Campbell Sharon L
The focal adhesion targeting domain of focal adhesion kinase contains a hinge region that modulates tyrosine 926 phosphorylation.
Structure (London, England : 1993) 2004;12(5):881-91.
-
2004: Karnoub Antoine E; Symons Marc; Campbell Sharon L; Der Channing J
Molecular basis for Rho GTPase signaling specificity.
Breast cancer research and treatment 2004;84(1):61-71.
-
2004: Heo Jongyun; Campbell Sharon L
Mechanism of p21Ras S-nitrosylation and kinetics of nitric oxide-mediated guanine nucleotide exchange.
Biochemistry 2004;43(8):2314-22.
-
2004: Gao Guanghua; Prutzman Kirk C; King Michelle L; Scheswohl Danielle M; DeRose Eugene F; London Robert E; Schaller Michael D; Campbell Sharon L
NMR solution structure of the focal adhesion targeting domain of focal adhesion kinase in complex with a paxillin LD peptide: evidence for a two-site binding model.
The Journal of biological chemistry 2004;279(9):8441-51.
-
2004: Gao Guanghua; Williams Jason G; Campbell Sharon L
Protein-protein interaction analysis by nuclear magnetic resonance spectroscopy.
Methods in molecular biology (Clifton, N.J.) 2004;261():79-92.
-
2003: Thapar Roopa; Moore Cathy D; Campbell Sharon L
Backbone 1H, 13C, and 15N resonance assignments for the 21 kDa GTPase Rac1 complexed to GDP and Mg2+.
Journal of biomolecular NMR 2003;27(1):87-8.
-
2003: Fuentes Ernesto J; Karnoub Antoine E; Booden Michelle A; Der Channing J; Campbell Sharon L
Critical role of the pleckstrin homology domain in Dbs signaling and growth regulation.
The Journal of biological chemistry 2003;278(23):21188-96.
-
2002: Booden Michelle A; Campbell Sharon L; Der Channing J
Critical but distinct roles for the pleckstrin homology and cysteine-rich domains as positive modulators of Vav2 signaling and transformation.
Molecular and cellular biology 2002;22(8):2487-97.
-
2002: Thapar Roopa; Karnoub Antoine E; Campbell Sharon L
Structural and biophysical insights into the role of the insert region in Rac1 function.
Biochemistry 2002;41(12):3875-83.
-
2002: Rossman Kent L; Worthylake David K; Snyder Jason T; Siderovski David P; Campbell Sharon L; Sondek John
A crystallographic view of interactions between Dbs and Cdc42: PH domain-assisted guanine nucleotide exchange.
The EMBO journal 2002;21(6):1315-26.
-
2002: Lambert John M; Karnoub Antoine E; Graves Lee M; Campbell Sharon L; Der Channing J
Role of MLK3-mediated activation of p70 S6 kinase in Rac1 transformation.
The Journal of biological chemistry 2002;277(7):4770-7.
-
2001: Karnoub A E; Worthylake D K; Rossman K L; Pruitt W M; Campbell S L; Sondek J; Der C J
Molecular basis for Rac1 recognition by guanine nucleotide exchange factors.
Nature structural biology 2001;8(12):1037-41.
-
2001: Karnoub A E; Der C J; Campbell S L
The insert region of Rac1 is essential for membrane ruffling but not cellular transformation.
Molecular and cellular biology 2001;21(8):2847-57.
-
2000: Williams J G; Drugan J K; Yi G S; Clark G J; Der C J; Campbell S L
Elucidation of binding determinants and functional consequences of Ras/Raf-cysteine-rich domain interactions.
The Journal of biological chemistry 2000;275(29):22172-9.
-
2000: Abe K; Rossman K L; Liu B; Ritola K D; Chiang D; Campbell S L; Burridge K; Der C J
Vav2 is an activator of Cdc42, Rac1, and RhoA.
The Journal of biological chemistry 2000;275(14):10141-9.
-
2000: Rossman K L; Campbell S L
Bacterial expressed DH and DH/PH domains.
Methods in enzymology 2000;325():25-38.
-
1999: Whitehead I P; Lambert Q T; Glaven J A; Abe K; Rossman K L; Mahon G M; Trzaskos J M; Kay R; Campbell S L; Der C J
Dependence of Dbl and Dbs transformation on MEK and NF-kappaB activation.
Molecular and cellular biology 1999;19(11):7759-70.
-
1998: Zohn I M; Campbell S L; Khosravi-Far R; Rossman K L; Der C J
Rho family proteins and Ras transformation: the RHOad less traveled gets congested.
Oncogene 1998;17(11 Reviews):1415-38.
-
1998: Campbell S L; Khosravi-Far R; Rossman K L; Clark G J; Der C J
Increasing complexity of Ras signaling.
Oncogene 1998;17(11 Reviews):1395-413.
-
1997: Clark G J; Drugan J K; Rossman K L; Carpenter J W; Rogers-Graham K; Fu H; Der C J; Campbell S L
14-3-3 zeta negatively regulates raf-1 activity by interactions with the Raf-1 cysteine-rich domain.
The Journal of biological chemistry 1997;272(34):20990-3.
-
1997: Mott H R; Carpenter J W; Campbell S L
Structural and functional analysis of a mutant Ras protein that is insensitive to nitric oxide activation.
Biochemistry 1997;36(12):3640-4.
-
1996: Mott H R; Carpenter J W; Zhong S; Ghosh S; Bell R M; Campbell S L
The solution structure of the Raf-1 cysteine-rich domain: a novel ras and phospholipid binding site.
Proceedings of the National Academy of Sciences of the United States of America 1996;93(16):8312-7.
-
1996: Quilliam L A; Hisaka M M; Zhong S; Lowry A; Mosteller R D; Han J; Drugan J K; Broek D; Campbell S L; Der C J
Involvement of the switch 2 domain of Ras in its interaction with guanine nucleotide exchange factors.
The Journal of biological chemistry 1996;271(19):11076-82.
-
1996: Drugan J K; Khosravi-Far R; White M A; Der C J; Sung Y J; Hwang Y W; Campbell S L
Ras interaction with two distinct binding domains in Raf-1 may be required for Ras transformation.
The Journal of biological chemistry 1996;271(1):233-7.
Sign-in to see more