نتایج جستجو برای: Auto-inhibition

تعداد نتایج: 354924  

Journal: :molecular biology research communications 2014
sajjad ahrari navid mogharrab

microtubule affinity-regulating kinase 2 (mark2) protein has a substantial role in regulation of vital cellular processes like induction of polarity, regulation of cell junctions, cytoskeleton structure and cell differentiation. the abnormal function of this protein has been associated with a number of pathological conditions like alzheimer disease, autism, several carcinomas and development of...

Journal: :The Journal of physiology 2005
P Tosetti N Ferrand I Colin-Le Brun J L Gaïarsa

GABA(B) receptor (GABA(B)R)-mediated presynaptic inhibition regulates neurotransmitter release from synaptic terminals. In the neonatal hippocampus, GABA(B)R activation reduces GABA release and terminates spontaneous network discharges called giant depolarizing potentials (GDPs). Blocking GABA(B)Rs transforms GDPs into longer epileptiform discharges. Thus, GABA(B)R-mediated presynaptic inhibiti...

2011
Michail Nomikos Khalil Elgmati Maria Theodoridou Athena Georgilis J. Raul Gonzalez-Garcia George Nounesis Karl Swann F. Anthony Lai

The XY-linker region of somatic cell PLC (phospholipase)-β, -γ, -δ and -ε isoforms confers potent catalytic inhibition, suggesting a common auto-regulatory role. Surprisingly, the sperm PLCζ XY-linker does not mediate auto-inhibition. Unlike for somatic PLCs, the absence of the PLCζ XY-linker significantly diminishes both in vitro PIP2 (phosphatidylinositol 4,5-bisphosphate) hydrolysis and in v...

Journal: :EMBO reports 2017
Kang Zhu Zelin Shan Xing Chen Yuqun Cai Lei Cui Weiyi Yao Zhen Wang Pan Shi Changlin Tian Jizhong Lou Yunli Xie Wenyu Wen

The Nedd4 family E3 ligases are key regulators of cell growth and proliferation and are often misregulated in human cancers and other diseases. The ligase activities of Nedd4 E3s are tightly controlled via auto-inhibition. However, the molecular mechanism underlying Nedd4 E3 auto-inhibition and activation is poorly understood. Here, we show that the WW domains proceeding the catalytic HECT doma...

Journal: :The Biochemical journal 2012
Qiong Lin Jian Wang Chandra Childress Wannian Yang

ACK [activated Cdc42 (cell division cycle 42)-associated tyrosine kinase; also called TNK2 (tyrosine kinase, non-receptor, 2)] is activated in response to multiple cellular signals, including cell adhesion, growth factor receptors and heterotrimeric G-protein-coupled receptor signalling. However, the molecular mechanism underlying activation of ACK remains largely unclear. In the present study,...

Journal: :Molecular and cellular biology 2000
T L Goetz T L Gu N A Speck B J Graves

Auto-inhibition is a common transcriptional control mechanism that is well characterized in the regulatory transcription factor Ets-1. Autoinhibition of Ets-1 DNA binding works through an inhibitory module that exists in two conformations. DNA binding requires a change in the inhibitory module from the packed to disrupted conformation. This structural switch provides a mechanism to tightly regu...

2017
Die Wang Nicole A. de Weerd Belinda Willard Galina Polekhina Bryan R. G. Williams Anthony J. Sadler

The central role of protein kinases in controlling disease processes has spurred efforts to develop pharmaceutical regulators of their activity. A rational strategy to achieve this end is to determine intrinsic auto-regulatory processes, then selectively target these different states of kinases to repress their activation. Here we investigate auto-regulation of the innate immune effector protei...

2012
Rajeevan Selvaratnam Mohammad T. Mazhab-Jafari Rahul Das Giuseppe Melacini

The cyclic-AMP binding domain (CBD) is the central regulatory unit of exchange proteins activated by cAMP (EPAC). The CBD maintains EPAC in a state of auto-inhibition in the absence of the allosteric effector, cAMP. When cAMP binds to the CBD such auto-inhibition is released, leading to EPAC activation. It has been shown that a key feature of such cAMP-dependent activation process is the partia...

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