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Regulatory Peptides
|
June 5, 2004
Agonist-dependent internalization of the angiotensin II type one receptor (AT1): role of C-terminus phosphorylation in recruitment of beta-arrestins
Chris E Kule, Vijaya Karoor, Jonathan N E Day, et al.
Cellular Signalling
|
July 12, 2011
Heteromerization of angiotensin receptors changes trafficking and arrestin recruitment profiles
Enzo R Porrello, Kevin D G Pfleger, Ruth M Seeber, et al.
Molecular Pharmacology
|
March 20, 2002
Side-chain substitutions within angiotensin II reveal different requirements for signaling, internalization, and phosphorylation of type 1A angiotensin receptors
Alice C Holloway, Hongwei Qian, Luisa Pipolo, et al.
Diabetes
|
October 23, 2012
PAQR3 modulates insulin signaling by shunting phosphoinositide 3-kinase p110α to the Golgi apparatus
Xiao Wang, Lingdi Wang, Lu Zhu, et al.
Circulation Research
|
July 5, 2003
Direct actions of urotensin II on the heart: implications for cardiac fibrosis and hypertrophy
Alex Tzanidis, Ross D Hannan, Walter G Thomas, et al.
Biochemical Pharmacology
|
March 20, 2021
Complex interactions between the angiotensin II type 1 receptor, the epidermal growth factor receptor and TRIO-dependent signaling partners
Elizabeth K M Johnstone, Rekhati S Abhayawardana, Heng B See, et al.
Journal of Molecular Histology
|
November 3, 2016
CRIM1 is necessary for coronary vascular endothelial cell development and homeostasis
Swati Iyer, Yash Chhabra, Tracey J Harvey, et al.
Nature Medicine
|
April 11, 2006
CNTF reverses obesity-induced insulin resistance by activating skeletal muscle AMPK
Matthew J Watt, Nicolas Dzamko, Walter G Thomas, et al.
Scientific Reports
|
January 30, 2016
Crim1 has cell-autonomous and paracrine roles during embryonic heart development
Swati Iyer, Fang Yu Chou, Richard Wang, et al.
Basic Research in Cardiology
|
March 27, 2017
Cavin-1 deficiency modifies myocardial and coronary function, stretch responses and ischaemic tolerance: roles of NOS over-activity
Mika Kaakinen, Melissa E Reichelt, Zhibin Ma, et al.
Page
of 9
Search research articles
Search
Showing results (51-60 of 86) with videos related to
Sort By:
Page
of 9
Regulatory Peptides
|
June 5, 2004
Agonist-dependent internalization of the angiotensin II type one receptor (AT1): role of C-terminus phosphorylation in recruitment of beta-arrestins
Chris E Kule, Vijaya Karoor, Jonathan N E Day, et al.
Cellular Signalling
|
July 12, 2011
Heteromerization of angiotensin receptors changes trafficking and arrestin recruitment profiles
Enzo R Porrello, Kevin D G Pfleger, Ruth M Seeber, et al.
Molecular Pharmacology
|
March 20, 2002
Side-chain substitutions within angiotensin II reveal different requirements for signaling, internalization, and phosphorylation of type 1A angiotensin receptors
Alice C Holloway, Hongwei Qian, Luisa Pipolo, et al.
Diabetes
|
October 23, 2012
PAQR3 modulates insulin signaling by shunting phosphoinositide 3-kinase p110α to the Golgi apparatus
Xiao Wang, Lingdi Wang, Lu Zhu, et al.
Circulation Research
|
July 5, 2003
Direct actions of urotensin II on the heart: implications for cardiac fibrosis and hypertrophy
Alex Tzanidis, Ross D Hannan, Walter G Thomas, et al.
Biochemical Pharmacology
|
March 20, 2021
Complex interactions between the angiotensin II type 1 receptor, the epidermal growth factor receptor and TRIO-dependent signaling partners
Elizabeth K M Johnstone, Rekhati S Abhayawardana, Heng B See, et al.
Journal of Molecular Histology
|
November 3, 2016
CRIM1 is necessary for coronary vascular endothelial cell development and homeostasis
Swati Iyer, Yash Chhabra, Tracey J Harvey, et al.
Nature Medicine
|
April 11, 2006
CNTF reverses obesity-induced insulin resistance by activating skeletal muscle AMPK
Matthew J Watt, Nicolas Dzamko, Walter G Thomas, et al.
Scientific Reports
|
January 30, 2016
Crim1 has cell-autonomous and paracrine roles during embryonic heart development
Swati Iyer, Fang Yu Chou, Richard Wang, et al.
Basic Research in Cardiology
|
March 27, 2017
Cavin-1 deficiency modifies myocardial and coronary function, stretch responses and ischaemic tolerance: roles of NOS over-activity
Mika Kaakinen, Melissa E Reichelt, Zhibin Ma, et al.
Page
of 9