首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Calcineurin Selectively Docks with the Dynamin Ixb Splice Variant to Regulate Activity-dependent Bulk Endocytosis
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Calcineurin Selectively Docks with the Dynamin Ixb Splice Variant to Regulate Activity-dependent Bulk Endocytosis

机译:钙调磷酸酶选择性地与动态变化的Ixb拼接码头来调节活动依赖的大容量内吞作用。

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摘要

Depolarization of nerve terminals stimulates rapid dephosphorylation of two isoforms of dynamin I (dynI), mediated by the calcium-dependent phosphatase calcineurin (CaN). Dephosphorylation at the major phosphorylation sites Ser-774/778 promotes a dynI-syndapin I interaction for a specific mode of synaptic vesicle endocytosis called activity-dependent bulk endocytosis (ADBE). DynI has two main splice variants at its extreme C terminus, long or short (dynIxa and dynIxb) varying only by 20 (xa) or 7 (xb) residues. Recombinant GST fusion proteins of dynIxa and dynIxb proline-rich domains (PRDs) were used to pull down interacting proteins from rat brain nerve terminals. Both bound equally to syndapin, but dynIxb PRD exclusively bound to the catalytic subunit of CaNA, which recruited CaNB. Binding of CaN was increased in the presence of calcium and was accompanied by further recruitment of calmodulin. Point mutations showed that the entire C terminus of dynIxb is a CaN docking site related to a conserved CaN docking motif (PXIXI(T/S)). This sequence is unique to dynIxb among all other dynamin variants or genes. Peptide mimetics of the dynIxb tail blocked CaN binding in vitro and selectively inhibited depolarization-evoked dynI dephosphorylation in nerve terminals but not of other dephosphins. Therefore, docking to dynIxb is required for the regulation of both dynI splice variants, yet it does not regulate the phosphorylation cycle of other dephosphins. The peptide blocked ADBE, but not clathrin-mediated endocytosis of synaptic vesicles. Our results indicate that Ca2+ influx regulates assembly of a fully active CaN-calmodulin complex selectively on the tail of dynIxb and that the complex is recruited to sites of ADBE in nerve terminals.
机译:神经末梢的去极化刺激了由钙依赖性磷酸酶钙调磷酸酶(CaN)介导的两种动力亚型(dynI)的快速去磷酸化。在主要的磷酸化位点Ser-774 / 778上的去磷酸化促进了dynI-syndapin I的相互作用,这是一种特定的突触囊泡内吞作用的特定模式,称为活​​动依赖性整体内吞作用(ADBE)。 DynI在其极端C末端有两个主要的剪接变体,长或短(dynIxa和dynIxb)仅相差20(xa)或7(xb)个残基。 dynIxa和dynIxb富含脯氨酸的域(PRDs)的重组GST融合蛋白被用于从大鼠脑神经末端下拉相互作用的蛋白。两者均与syndapin结合,但dynIxb PRD仅与招募CaNB的CaNA催化亚基结合。在钙的存在下,CaN的结合增加,并伴有钙调蛋白的进一步募集。点突变表明dynIxb的整个C末端是与保守的CaN对接基序(PXIXI(T / S))相关的CaN对接位点。 dynIxb在所有其他动力蛋白变体或基因中是唯一的。 dynIxb尾部的肽模拟物在体外阻断了CaN的结合,并选择性地抑制了神经末梢的去极化诱发的dynI去磷酸化,但没有抑制其他去磷蛋白。因此,调节两个dynI剪接变体需要与dynIxb对接,但是它不调节其他脱磷蛋白的磷酸化周期。该肽阻断ADBE,但不能阻断网格蛋白介导的突触小泡内吞作用。我们的结果表明,Ca 2 + 内流选择性地调节了全活性CaN-钙调蛋白复合物在dynIxb尾部的组装,并且该复合物被募集到神经末梢的ADBE部位。

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