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Abl2激酶差异性调节离子型谷氨酸受体(iGluRs)的电流活性和突触定位。

Abl2 Kinase Differentially Regulates iGluRs Current Activity and Synaptic Localization.

作者信息

Kabirova M, Reichenstein M, Borovok N, Sheinin A, Gorobets D, Michaelevski I

机构信息

Department of Molecular Biology, Faculty of Natural Sciences, Ariel University, 4070000, Ariel, Israel.

Integrated Brain Science Center at Ariel University, 4070000, Ariel, Israel.

出版信息

Cell Mol Neurobiol. 2023 Aug;43(6):2785-2799. doi: 10.1007/s10571-023-01317-9. Epub 2023 Jan 23.

Abstract

Abelson non-receptor tyrosine kinases (Abl1 and Abl2) are established cellular signaling proteins, implicated in cytoskeletal reorganization essential for modulation of cell morphology and motility. During development of the central nervous system, Abl kinases play fundamental roles in neurulation and neurite outgrowth, relaying information from axon guidance cues and growth factor receptors to promote cytoskeletal rearrangements. In mature neurons, Abl kinases localize to pre- and postsynaptic compartments and are involved in regulation of synaptic stability and plasticity. Although emerging evidence indicates interchangeability of these isoforms in managing of cellular functions, in healthy adult neurons, Abl1 contribution is less elucidated, while Abl2 is required for optimal synaptic functioning. Our previous study demonstrated compartmentalization of Abl1 to the presynapse and Abl2 to the postsynapse and characterized their modulatory effect on spontaneous excitatory synaptic transmission. Here, we further delineate the role of Abl2 on regulation of the postsynaptic component of miniature excitatory postsynaptic current (mEPSC). Our findings show that both acute and prolonged activation of Abl2, in line with reduction of mEPSC amplitude, also decrease AMPA and NMDA current amplitudes. In contrast with the current-detrimental effect, prolonged Abl2 activity stabilizes spines, particularly contributing to maintenance of active synapses at distal (perhaps apical) segments of dendrites. Hence, we propose that attenuation of ion currents via ionotropic glutamatergic receptors by Abl2 kinase derives from either reduction of the receptor sensitivity for glutamate or is due to alteration of channel gating mechanisms. Abl2 and excitatory postsynapses: Abl2 expression level affects active excitatory synapse density on distal dendrites, while Abl2 activity impacts current density through AMPA and NMDA receptors.

摘要

阿贝尔森非受体酪氨酸激酶(Abl1和Abl2)是已确定的细胞信号蛋白,参与细胞骨架重组,这对调节细胞形态和运动至关重要。在中枢神经系统发育过程中,Abl激酶在神经胚形成和神经突生长中发挥着重要作用,传递来自轴突导向线索和生长因子受体的信息,以促进细胞骨架重排。在成熟神经元中,Abl激酶定位于突触前和突触后区室,参与突触稳定性和可塑性的调节。尽管新出现的证据表明这些异构体在细胞功能管理方面具有互换性,但在健康的成年神经元中,Abl1的作用尚不清楚,而Abl2是最佳突触功能所必需的。我们之前的研究表明,Abl1定位于突触前,Abl2定位于突触后,并描述了它们对自发兴奋性突触传递的调节作用。在这里,我们进一步阐述了Abl2对微小兴奋性突触后电流(mEPSC)突触后成分调节的作用。我们的研究结果表明,Abl2的急性和长期激活,与mEPSC幅度的降低一致,也会降低AMPA和NMDA电流幅度。与当前的有害作用相反,Abl2的长期活性可稳定树突棘,尤其有助于维持树突远端(可能是顶端)节段的活跃突触。因此,我们提出,Abl2激酶通过离子型谷氨酸能受体减弱离子电流,要么是由于受体对谷氨酸的敏感性降低,要么是由于通道门控机制的改变。Abl2与兴奋性突触:Abl2的表达水平影响远端树突上活跃兴奋性突触的密度,而Abl2的活性通过AMPA和NMDA受体影响电流密度。

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