NO‐and haem‐independent activation of soluble guanylyl cyclase: molecular basis and cardiovascular implications of a new pharmacological principle

JP Stasch, P Schmidt, C Alonso‐Alija… - British journal of …, 2002 - Wiley Online Library
Soluble guanylyl cyclase (sGC) is the only proven receptor for the ubiquitous biological
messenger nitric oxide (NO) and is intimately involved in many signal transduction …

[HTML][HTML] NO-and haem-independent activation of soluble guanylyl cyclase: molecular basis and cardiovascular implications of a new pharmacological principle

JP Stasch, P Schmidt, C Alonso-Alija… - British Journal of …, 2002 - ncbi.nlm.nih.gov
Soluble guanylyl cyclase (sGC) is the only proven receptor for the ubiquitous biological
messenger nitric oxide (NO) and is intimately involved in many signal transduction …

NO-and haem-independent activation of soluble guanylyl cyclase: molecular basis and cardiovascular implications of a new pharmacological principle

JP Stasch, P Schmidt, C Alonso-Alija… - British Journal of …, 2002 - hero.epa.gov
Soluble guanylyl cyclase (sGC) is the only proven receptor for the ubiquitous biological
messenger nitric oxide (NO) and is intimately involved in many signal transduction …

NO-and haem-independent activation of soluble guanylyl cyclase: molecular basis and cardiovascular implications of a new pharmacological principle.

JP Stasch, P Schmidt, C Alonso-Alija… - British Journal of …, 2002 - europepmc.org
Soluble guanylyl cyclase (sGC) is the only proven receptor for the ubiquitous biological
messenger nitric oxide (NO) and is intimately involved in many signal transduction …

[引用][C] NO-and haem-independent activation of soluble guanylyl cyclase: molecular basis and cardiovascular implications of a new pharmacological principle

JP Stasch, P Schmidt, C Alonso-Alija… - British Journal of …, 2002 - research.monash.edu
NO- and haem-independent activation of soluble guanylyl cyclase: molecular basis and
cardiovascular implications of a new pharmacological principle — Monash University Skip to …

NO-and haem-independent activation of soluble guanylyl cyclase: molecular basis and cardiovascular implications of a new pharmacological principle

JP Stasch, P Schmidt, C Alonso-Alija… - British Journal of …, 2002 - search.proquest.com
Soluble guanylyl cyclase (sGC) is the only proven receptor for the ubiquitous biological
messenger nitric oxide (NO) and is intimately involved in many signal transduction …

No-and haem-independent activation of soluble guanylyl cyclase: Molecular basis and cardiovascular implications of a new pharmacological principle

JP Stasch, P Schmidt, C Alonso-Alija… - British Journal of …, 2002 - experts.umn.edu
Soluble guanylyl cyclase (sGC) is the only proven receptor for the ubiquitous biological
messenger nitric oxide (NO) and is intimately involved in many signal transduction …

[引用][C] NO-and haem-independent activation of soluble guanylyl cyclase: molecular basis and cardiovascular implications of a new pharmacological principle

JP Stasch, P Schmidt, C Alonso-Alija, H Apeler… - British Journal of …, 2002 - cir.nii.ac.jp
NO- and haem-independent activation of soluble guanylyl cyclase: molecular basis and
cardiovascular implications of a new pharmacological principle | CiNii Research CiNii 国立 …

NO-and haem-independent activation of soluble guanylyl cyclase: molecular basis and cardiovascular implications of a new pharmacological principle

JP Stasch, P Schmidt, C Alonso-Alija… - British journal of …, 2002 - pubmed.ncbi.nlm.nih.gov
1. Soluble guanylyl cyclase (sGC) is the only proven receptor for the ubiquitous biological
messenger nitric oxide (NO) and is intimately involved in many signal transduction …

NO-and haem-independent activation of soluble guanylyl cyclase: molecular basis and cardiovascular implications of a new pharmacological principle.

JP Stasch, P Schmidt, C Alonso-Alija… - British Journal of …, 2002 - europepmc.org
Soluble guanylyl cyclase (sGC) is the only proven receptor for the ubiquitous biological
messenger nitric oxide (NO) and is intimately involved in many signal transduction …