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Faculty Opinions recommendation of Nematode-Encoded RALF Peptide Mimics Facilitate Parasitism of Plants through the FERONIA Receptor Kinase.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.738635379.793579245
◽
2020
◽
Author(s):
Sebastian Eves-van den Akker
Keyword(s):
Receptor Kinase
◽
Peptide Mimics
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Cited By
References
Faculty Opinions recommendation of Nematode-Encoded RALF Peptide Mimics Facilitate Parasitism of Plants through the FERONIA Receptor Kinase.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.738635379.793583905
◽
2021
◽
Author(s):
Jorge Muschietti
Keyword(s):
Receptor Kinase
◽
Peptide Mimics
Download Full-text
Nematode-Encoded RALF Peptide Mimics Facilitate Parasitism of Plants through the FERONIA Receptor Kinase
Molecular Plant
◽
10.1016/j.molp.2020.08.014
◽
2020
◽
Vol 13
(10)
◽
pp. 1434-1454
◽
Cited By ~ 1
Author(s):
Xin Zhang
◽
Huan Peng
◽
Sirui Zhu
◽
Junjie Xing
◽
Xin Li
◽
...
Keyword(s):
Receptor Kinase
◽
Peptide Mimics
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947: Chemopreventive Effects of COX-2 Inhibitor and Epidermal Growth Factor (EGF)-Receptor Kinase Inhibitor on Rat Urinary Bladder Tumorigenesis
The Journal of Urology
◽
10.1016/s0022-5347(18)38184-9
◽
2004
◽
Vol 171
(4S)
◽
pp. 251-251
Author(s):
Kazunori Hattori
◽
Katsuyuki Iida
◽
Akira Johraku
◽
Sadamu Tsukamoto
◽
Taeko Asano
◽
...
Keyword(s):
Growth Factor
◽
Epidermal Growth Factor
◽
Urinary Bladder
◽
Egf Receptor
◽
Kinase Inhibitor
◽
Receptor Kinase
◽
Rat Urinary Bladder
◽
Epidermal Growth
◽
Cox 2
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Inhibition of G-protein coupled receptor kinase-2 protects from myocardial ischemia-reperfusion injury via an anti-apoptotic effect
The Thoracic and Cardiovascular Surgeon
◽
10.1055/s-0029-1246649
◽
2010
◽
Vol 58
(S 01)
◽
Author(s):
H Brinks
◽
M Boucher
◽
S Pesant
◽
E Gao
◽
K Chuprun
◽
...
Keyword(s):
Myocardial Ischemia
◽
Reperfusion Injury
◽
G Protein
◽
Ischemia Reperfusion Injury
◽
Ischemia Reperfusion
◽
Receptor Kinase
◽
Apoptotic Effect
◽
Myocardial Ischemia Reperfusion Injury
◽
Myocardial Ischemia Reperfusion
◽
G Protein Coupled
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A Dibromotyrosine Derivative from Pseudoceratina sp. Suppresses TGF-β Responsiveness by Inhibiting TGF-β type I Receptor Kinase Activity
10.1055/s-0037-1608104
◽
2017
◽
Cited By ~ 1
Author(s):
CL Chen
◽
YC Kao
◽
PJ Sung
◽
ZH Wen
Keyword(s):
Kinase Activity
◽
Type I
◽
Receptor Kinase
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Insulin-receptor kinase activity of adipose tissue from morbidly obese humans with and without NIDDM
Diabetes
◽
10.2337/diabetes.36.5.620
◽
1987
◽
Vol 36
(5)
◽
pp. 620-625
◽
Cited By ~ 24
Author(s):
M. K. Sinha
◽
W. J. Pories
◽
E. G. Flickinger
◽
D. Meelheim
◽
J. F. Caro
Keyword(s):
Adipose Tissue
◽
Insulin Receptor
◽
Kinase Activity
◽
Morbidly Obese
◽
Receptor Kinase
◽
Insulin Receptor Kinase
◽
Insulin Receptor Kinase Activity
Download Full-text
Vanadate augments insulin-stimulated insulin receptor kinase activity and prolongs insulin action in rat adipocytes. Evidence for transduction of amplitude of signaling into duration of response
Diabetes
◽
10.2337/diabetes.43.3.375
◽
1994
◽
Vol 43
(3)
◽
pp. 375-383
◽
Cited By ~ 12
Author(s):
I. G. Fantus
◽
F. Ahmad
◽
G. Deragon
Keyword(s):
Insulin Receptor
◽
Insulin Action
◽
Kinase Activity
◽
Receptor Kinase
◽
Rat Adipocytes
◽
Duration Of Response
◽
Insulin Receptor Kinase
◽
Insulin Receptor Kinase Activity
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Calmodulin as substrate for insulin-receptor kinase. Phosphorylation by receptors from rat skeletal muscle
Diabetes
◽
10.2337/diabetes.38.1.84
◽
1989
◽
Vol 38
(1)
◽
pp. 84-90
◽
Cited By ~ 2
Author(s):
D. B. Sacks
◽
J. M. McDonald
Keyword(s):
Skeletal Muscle
◽
Insulin Receptor
◽
Receptor Kinase
◽
Rat Skeletal Muscle
◽
Insulin Receptor Kinase
◽
Kinase Phosphorylation
Download Full-text
Alteration of insulin-receptor kinase activity by high-fat feeding
Diabetes
◽
10.2337/diabetes.37.10.1397
◽
1988
◽
Vol 37
(10)
◽
pp. 1397-1404
◽
Cited By ~ 21
Author(s):
T. Watarai
◽
M. Kobayashi
◽
Y. Takata
◽
T. Sasaoka
◽
M. Iwasaki
◽
...
Keyword(s):
Insulin Receptor
◽
Kinase Activity
◽
Receptor Kinase
◽
High Fat
◽
Insulin Receptor Kinase
◽
Insulin Receptor Kinase Activity
◽
Fat Feeding
Download Full-text
Faculty Opinions recommendation of VH1, a provascular cell-specific receptor kinase that influences leaf cell patterns in Arabidopsis.
Faculty Opinions – Post-Publication Peer Review of the Biomedical Literature
◽
10.3410/f.1006653.165607
◽
2002
◽
Author(s):
Elizabeth Kellogg
Keyword(s):
Receptor Kinase
◽
Leaf Cell
◽
Specific Receptor
◽
Cell Patterns
Download Full-text
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