Russwurm Michael, Koesling Doris
Pharmakologie und Toxikologie, Medizinische Fakultät MA N1, Ruhr-Universität Bochum, Germany.
Mol Cell Biochem. 2002 Jan;230(1-2):159-64.
By the formation of cGMP the NO-sensitive guanylyl cyclase plays a key role within the NO/cGMP signaling cascade involved in vascular regulation and neurotransmission. The prosthetic heme group of the enzyme acts as the NO sensor, and binding of NO induces conformational changes leading to an up to 200-fold activation of the enzyme. The unexpected fast dissociation half-life of NO of a few seconds is fast enough to account for the deactivation of the enzyme in biological systems. YC-1 and its analogues acting as NO sensitizers uncovered a new pharmacologically and conceivably physiologically relevant regulatory principle of the enzyme. Two existing isoforms of the heterodimeric guanylyl cyclase (alpha1beta1, alpha2beta1) are known that are functionally indistinguishable. Up to now, the NO-sensitive guanylyl cyclase has been considered as a soluble enzyme. However, recent evidence about the alpha2beta1 isoform interacting with a PDZ domain of the postsynaptic scaffold protein PSD-95 suggests that the alpha2 subunit directs a membrane association of this isoform. The interaction with PSD-95 locates the alpha2beta1 isoform in close proximity to the NO-generating NO synthase thereby enabling the NO sensor to respond to locally raised NO concentrations.
通过cGMP的形成,对一氧化氮(NO)敏感的鸟苷酸环化酶在参与血管调节和神经传递的NO/cGMP信号级联反应中起关键作用。该酶的辅基血红素基团充当NO传感器,NO的结合会引起构象变化,导致该酶激活达200倍。NO意外的短解离半衰期(几秒)足以解释生物系统中该酶的失活。作为NO敏化剂的YC-1及其类似物揭示了该酶一种新的药理学和可能的生理学相关调节机制。已知异二聚体鸟苷酸环化酶的两种现有同工型(α1β1、α2β1)在功能上无法区分。到目前为止,对NO敏感的鸟苷酸环化酶一直被认为是一种可溶性酶。然而,最近有关α2β1同工型与突触后支架蛋白PSD-95的PDZ结构域相互作用的证据表明,α2亚基引导该同工型与膜结合。与PSD-95的相互作用使α2β1同工型定位在产生NO的一氧化氮合酶附近,从而使NO传感器能够对局部升高的NO浓度作出反应。