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Gi2α基因敲除小鼠组织和细胞中腺苷酸环化酶抑制以及G蛋白亚基表达和ADP-核糖基化模式的改变

Adenylyl cyclase inhibition and altered G protein subunit expression and ADP-ribosylation patterns in tissues and cells from Gi2 alpha-/-mice.

作者信息

Rudolph U, Spicher K, Birnbaumer L

机构信息

Department of Cell Biology, Baylor College of Medicine, Houston, TX 77030, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Apr 16;93(8):3209-14. doi: 10.1073/pnas.93.8.3209.

Abstract

The inhibition of alpha i2-/- mouse cardiac isoproterenol-stimulated adenylyl cyclase (AC; EC 4.6.1.1) activity by carbachol and that of alpha i2-/- adipocyte AC by phenylisopropyladenosine (PIA), prostaglandin E2, and nicotinic acid were partially, but not completely, inhibited. While the inhibition of cardiac AC was affected in all alpha i2-/- animals tested, only 50% of the alpha i2-/- animals showed an impaired inhibition of adipocyte AC, indicative of a partial penetrance of this phenotype. In agreement with previous results, the data show that Gi2 mediates hormonal inhibition of AC and that Gi3 and/or Gi1 is capable of doing the same but with a lower efficacy. Disruption of the alpha i2 gene affected about equally the actions of all the receptors studied, indicating that none of them exhibits a striking specificity for one type of Gi over another and that receptors are likely to he selective rather than specific in their interaction with functionally homologous G proteins (e.g., Gi1, Gi2, Gi3). Western analysis of G protein subunit levels in simian virus 40-transformed primary embryonic fibroblasts from alpha i2+/+ and alpha i2-/- animals showed that alpha i2 accounts for about 50% of the immunopositive G protein alpha subunits and that loss of the alpha i2 is accompanied by a parallel reduction in G beta 35 and G beta 36 subunits and by a 30-50% increase in alpha i3. This suggests that G beta-gamma levels may be regulated passively through differential rates of turnover in their free vs. trimeric states. The existence of compensatory increase(s) in alpha i subunit expression raises the possibility that the lack of effect of a missing alpha i2 on AC inhibition in adipocytes of some alpha i2-/- animals may be the reflection of a more pronounced compensatory expression of alpha i3 and/or alpha i1.

摘要

卡巴胆碱对αi2基因敲除小鼠心脏中异丙肾上腺素刺激的腺苷酸环化酶(AC;EC 4.6.1.1)活性的抑制作用,以及苯异丙基腺苷(PIA)、前列腺素E2和烟酸对αi2基因敲除脂肪细胞AC活性的抑制作用,均受到部分抑制,但不完全被抑制。虽然在所有测试的αi2基因敲除动物中,心脏AC的抑制作用均受到影响,但只有50%的αi2基因敲除动物表现出脂肪细胞AC抑制受损,表明该表型存在部分外显率。与先前的结果一致,数据表明Gi2介导了AC的激素抑制作用,并且Gi3和/或Gi1也能够发挥相同作用,但效力较低。αi2基因的破坏对所研究的所有受体的作用影响大致相同,这表明它们中没有一个对一种Gi的特异性明显高于另一种,并且受体在与功能同源的G蛋白(例如Gi1、Gi2、Gi3)相互作用时可能具有选择性而非特异性。对来自αi2+/+和αi2-/-动物的猿猴病毒40转化的原代胚胎成纤维细胞中G蛋白亚基水平进行的蛋白质印迹分析表明,αi2约占免疫阳性G蛋白α亚基的50%,并且αi2的缺失伴随着Gβ35和Gβ36亚基的平行减少以及αi3增加30 - 50%。这表明Gβ-γ水平可能通过其游离状态与三聚体状态的不同周转速率而被动调节。αi亚基表达的代偿性增加的存在提出了一种可能性,即一些αi2基因敲除动物的脂肪细胞中缺失的αi2对AC抑制缺乏影响可能是αi3和/或αi1更明显的代偿性表达的反映。

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