首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Pro-survival Effects of 17β-Estradiol on Osteocytes Are Mediated by Nitric Oxide/cGMP via Differential Actions of cGMP-dependent Protein Kinases I and II
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Pro-survival Effects of 17β-Estradiol on Osteocytes Are Mediated by Nitric Oxide/cGMP via Differential Actions of cGMP-dependent Protein Kinases I and II

机译:一氧化氮/ cGMP通过依赖cGMP的蛋白激酶I和II的差异作用介导17β-雌二醇对成骨细胞的促生存作用

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摘要

Estrogens promote bone health in part by increasing osteocyte survival, an effect that requires activation of the protein kinases Akt and ERK1/2, but the molecular mechanisms involved are only partly understood. Because estrogens increase nitric oxide (NO) synthesis and NO can have anti-apoptotic effects, we examined the role of NO/cGMP signaling in estrogen regulation of osteocyte survival. Etoposide-induced death of MLO-Y4 osteocyte-like cells, assessed by trypan blue staining, caspase-3 cleavage, and TUNEL assays, was completely prevented when cells were pre-treated with 17β-estradiol. This protective effect was mimicked when cells were pre-treated with a membrane-permeable cGMP analog and blocked by pharmacological inhibitors of NO synthase, soluble guanylate cyclase, or cGMP-dependent protein kinases (PKGs), supporting a requirement for NO/cGMP/PKG signaling downstream of 17β-estradiol. siRNA-mediated knockdown and viral reconstitution of individual PKG isoforms demonstrated that the anti-apoptotic effects of estradiol and cGMP were mediated by PKG Iα and PKG II. Akt and ERK1/2 activation by 17β-estradiol required PKG II, and cGMP mimicked the effects of estradiol on Akt and ERK, including induction of ERK nuclear translocation. cGMP induced BAD phosphorylation on several sites, and experiments with phosphorylation-deficient BAD mutants demonstrated that the anti-apoptotic effects of cGMP and 17β-estradiol required BAD phosphorylation on Ser136 and Ser155; these sites were targeted by Akt and PKG I, respectively, and regulate BAD interaction with Bcl-2. In conclusion, 17β-estradiol protects osteocytes against apoptosis by activating the NO/cGMP/PKG cascade; PKG II is required for estradiol-induced activation of ERK and Akt, and PKG Iα contributes to pro-survival signaling by directly phosphorylating BAD.
机译:雌激素部分地通过增加骨细胞存活来促进骨骼健康,这种作用需要激活蛋白激酶Akt和ERK1 / 2,但是所涉及的分子机制仅部分被理解。因为雌激素增加一氧化氮(NO)的合成,并且NO可以具有抗凋亡作用,所以我们检查了NO / cGMP信号传导在雌激素调节骨细胞存活中的作用。当用17β-雌二醇预处理细胞后,通过台盼蓝染色,caspase-3裂解和TUNEL分析评估了依托泊苷诱导的MLO-Y4骨细胞样细胞死亡。当用膜可渗透的cGMP类似物预处理细胞并用NO合酶,可溶性鸟苷酸环化酶或cGMP依赖性蛋白激酶(PKG)的药理抑制剂阻断时,可以模仿这种保护作用,从而支持NO / cGMP / PKG的需求在17β-雌二醇下游发出信号。 siRNA介导的单个PKG亚型的敲除和病毒重构表明,雌二醇和cGMP的抗凋亡作用是由PKGIα和PKG II介导的。 17β-雌二醇激活Akt和ERK1 / 2需要PKG II,而cGMP模仿了雌二醇对Akt和ERK的作用,包括诱导ERK核易位。 cGMP在多个位点诱导BAD磷酸化,磷酸化缺陷BAD突变体的实验表明cGMP和17β-雌二醇的抗凋亡作用需要BAD磷酸化对Ser 136 和Ser 155 ;这些位点分别被Akt和PKG I靶向,并调节BAD与Bcl-2的相互作用。总之,17β-雌二醇通过激活NO / cGMP / PKG级联来保护骨细胞免于凋亡。 PKG II是雌二醇诱导的ERK和Akt激活所必需的,而PKGIα通过直接磷酸化BAD来促进生存信号转导。

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