Among the myriad of cellular functions played by nitric oxide (NO) in the brain, there is increasing evidence that NO might be a primary player in the programme of neurogenesis and neuronal differentiation. The signalling pathway triggered by NO in physiological processes involves the activation of soluble guanylate cyclase, S-nitrosylation of proteins, and, as recently proposed, nitration of tyrosine residues in proteins. We have previously showed that the cytoskeleton becomes the main cellular fraction containing nitrotyrosinated proteins during nerve growth factor (NGF)-induced differentiation of cultured cells. On the ground that cytoskeleton is crucial in neuronal morphogenesis to determine axonal guidance and branching, here we have i...
Nitric oxide (NO) has long been recognized as a multifaceted participant in brain physiology. Despit...
Nitric oxide (NO) has long been recognized as a multifaceted participant in brain physiology. Despit...
Nitric oxide (NO) has been long recognized as an important modulator of neural plasticity, but chara...
Among the myriad of cellular functions played by nitric oxide in the brain, there is increasing evid...
Nitric oxide (NO) is a signalling molecule in the nervous system playing a role in neurotransmitter ...
Nitric oxide (NO) is well established as an intracellular and transcellular signalling molecule in t...
AbstractTyrosine nitration of proteins is emerging as a post-translational modification playing a ro...
Nitric oxide (NO) is a precursor of reactive nitrating species, peroxynitrite and nitrogen dioxide a...
AbstractTyrosine nitration of proteins is emerging as a post-translational modification playing a ro...
Nitric oxide (NO) is a signaling molecule implicated in a spectrum of cellular processes including n...
Nitric oxide (NO) is a precursor of reactive nitrating species, peroxynitrite and nitrogen dioxide, ...
The significance of NO2Tyr in vivo is highlighted by observations that nitrated proteins are markedl...
The biological implication of protein tyrosine nitration in signaling pathways triggered by nitric o...
Nitric oxide (NO) is a gaseous signaling molecule which has physiological and pathological roles in ...
Nitric oxide (NO) is well established as a regulator of neurogenesis. NO increases the proliferation...
Nitric oxide (NO) has long been recognized as a multifaceted participant in brain physiology. Despit...
Nitric oxide (NO) has long been recognized as a multifaceted participant in brain physiology. Despit...
Nitric oxide (NO) has been long recognized as an important modulator of neural plasticity, but chara...
Among the myriad of cellular functions played by nitric oxide in the brain, there is increasing evid...
Nitric oxide (NO) is a signalling molecule in the nervous system playing a role in neurotransmitter ...
Nitric oxide (NO) is well established as an intracellular and transcellular signalling molecule in t...
AbstractTyrosine nitration of proteins is emerging as a post-translational modification playing a ro...
Nitric oxide (NO) is a precursor of reactive nitrating species, peroxynitrite and nitrogen dioxide a...
AbstractTyrosine nitration of proteins is emerging as a post-translational modification playing a ro...
Nitric oxide (NO) is a signaling molecule implicated in a spectrum of cellular processes including n...
Nitric oxide (NO) is a precursor of reactive nitrating species, peroxynitrite and nitrogen dioxide, ...
The significance of NO2Tyr in vivo is highlighted by observations that nitrated proteins are markedl...
The biological implication of protein tyrosine nitration in signaling pathways triggered by nitric o...
Nitric oxide (NO) is a gaseous signaling molecule which has physiological and pathological roles in ...
Nitric oxide (NO) is well established as a regulator of neurogenesis. NO increases the proliferation...
Nitric oxide (NO) has long been recognized as a multifaceted participant in brain physiology. Despit...
Nitric oxide (NO) has long been recognized as a multifaceted participant in brain physiology. Despit...
Nitric oxide (NO) has been long recognized as an important modulator of neural plasticity, but chara...