Morton David B, Langlais Kristofor K, Stewart Judith A, Vermehren Anke
Department of Integrative Biosciences, Oregon Health & Science University, Portland, Oregon 97239, USA.
J Insect Sci. 2005;5:12. doi: 10.1093/jis/5.1.12. Epub 2005 Apr 19.
The Drosophila melanogaster genome contains 5 genes that code for soluble guanylyl cyclase subunits. Two of these genes code for subunits, Gycalpha-99B and Gycbeta-100B, which form a conventional NO-sensitive guanylyl cyclase and the other three code for atypical subunits, Gyc-88E, Gyc-89Da and Gyc-89Db. The properties and distribution of Gyc-88E and Gyc-89Db have previously been described and here Gyc-89Da is described. Gyc-89Da only forms an active guanylyl cyclase when co-expressed with Gyc-88E. The three atypical subunits probably form two different heterodimers in vivo: Gyc-88E/89Da and Gyc-88E/89Db. Both of these heterodimers were slightly stimulated by NO donors and Gyc-88E/89Da showed a greater activation by Mn2+, with an increase in Vmax and a decrease in K(m), compared to Gyc-88E/89Db. Both Gyc-88E/89Da and Gyc-88E/89Db were expressed in neurons in both the peripheral and central nervous system. Although all three heterodimeric soluble guanylyl cyclases in D. melanogaster can be activated by NO and inhibited by ODQ, the atypical enzymes can be distinguished from the conventional soluble guanylyl cyclase by their sensitivity to the NO-independent activators YC-1 and BAY 41-2272, which will only activate the conventional enzyme.
黑腹果蝇基因组包含5个编码可溶性鸟苷酸环化酶亚基的基因。其中两个基因编码亚基Gycalpha - 99B和Gycbeta - 100B,它们形成一种传统的对一氧化氮敏感的鸟苷酸环化酶,另外三个基因编码非典型亚基Gyc - 88E、Gyc - 89Da和Gyc - 89Db。Gyc - 88E和Gyc - 89Db的特性和分布此前已有描述,本文描述Gyc - 89Da。Gyc - 89Da只有在与Gyc - 88E共表达时才形成活性鸟苷酸环化酶。这三个非典型亚基可能在体内形成两种不同的异二聚体:Gyc - 88E/89Da和Gyc - 88E/89Db。这两种异二聚体均受到一氧化氮供体的轻微刺激,与Gyc - 88E/89Db相比,Gyc - 88E/89Da对Mn2+的激活作用更强,Vmax增加而K(m)降低。Gyc - 88E/89Da和Gyc - 88E/89Db在外周和中枢神经系统的神经元中均有表达。尽管黑腹果蝇中的所有三种异二聚体可溶性鸟苷酸环化酶都能被一氧化氮激活并被ODQ抑制,但非典型酶可通过它们对不依赖一氧化氮的激活剂YC - 1和BAY 41 - 2272的敏感性与传统可溶性鸟苷酸环化酶区分开来,这两种激活剂只会激活传统酶。