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Brain Region and Isoform-Specific Phosphorylation Alters Kalirin SH2 Domain Interaction Sites and Calpain Sensitivity

机译:脑区和特定亚型的磷酸化改变了激凌肽SH2域相互作用位点和钙蛋白酶的敏感性。

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摘要

Kalirin7 (Kal7), a postsynaptic Rho GDP/GTP exchange factor (RhoGEF), plays a crucial role in long term potentiation and in the effects of cocaine on behavior and spine morphology. The KALRN gene has been linked to schizophrenia and other disorders of synaptic function. Mass spectrometry was used to quantify phosphorylation at 26 sites in Kal7 from individual adult rat nucleus accumbens and prefrontal cortex before and after exposure to acute or chronic cocaine. Region- and isoform-specific phosphorylation was observed along with region-specific effects of cocaine on Kal7 phosphorylation. Evaluation of the functional significance of multi-site phosphorylation in a complex protein like Kalirin is difficult. With the identification of five tyrosine phosphorylation (pY) sites, a panel of 71 SH2 domains was screened, identifying subsets that interacted with multiple pY sites in Kal7. In addition to this type of reversible interaction, endoproteolytic cleavage by calpain plays an essential role in long-term potentiation. Calpain cleaved Kal7 at two sites, separating the N-terminal domain, which affects spine length, and the PDZ binding motif from the GEF domain. Mutations preventing phosphorylation did not affect calpain sensitivity or GEF activity; phosphomimetic mutations at specific sites altered protein stability, increased calpain sensitivity and reduced GEF activity.
机译:突触后Rho GDP / GTP交换因子(RhoGEF)Kalirin7(Kal7)在长期增强作用以及可卡因对行为和脊柱形态的影响中起着至关重要的作用。 KALRN基因已与精神分裂症和其他突触功能障碍相关。质谱用于量化暴露于急性或慢性可卡因前后成年大鼠伏隔核和前额叶皮层Kal7中26个位点的磷酸化。观察到区域和同工型特异性磷酸化,以及可卡因对Kal7磷酸化的区域特异性作用。很难评估复杂蛋白(如加里林)中多位磷酸化的功能重要性。通过鉴定五个酪氨酸磷酸化(pY)位点,筛选了71个SH2域的面板,确定了与Kal7中多个pY位点相互作用的子集。除了这种类型的可逆相互作用之外,钙蛋白酶对内蛋白的切割在长期增强中起着至关重要的作用。钙蛋白酶在两个位点切割了Kal7,将影响脊柱长度的N末端结构域和来自GEF结构域的PDZ结合基序分开。防止磷酸化的突变不会影响钙蛋白酶敏感性或GEF活性;特定位点的磷酸模拟突变改变了蛋白质的稳定性,增加了钙蛋白酶的敏感性并降低了GEF活性。

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