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首页> 外文期刊>Biochemical and Biophysical Research Communications >BMP signaling modulates the probability of neurotransmitter release and readily releasable pools in Drosophila neuromuscular junction synapses
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BMP signaling modulates the probability of neurotransmitter release and readily releasable pools in Drosophila neuromuscular junction synapses

机译:BMP信号调节果蝇神经肌肉连接突触中神经递质释放和易于释放的池的可能性

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The structure and function of synapses is modulated by the interaction of presynaptic and postsynaptic neurons via cell adhesion molecules or secreted signal molecules. Bone morphogenic protein (BMP) is a secreted molecule mediating retrograde signaling that is involved in the formation and maintenance of synaptic structure throughout many animal species. However, how BMP signaling modulates presynaptic neurotransmitter release is not yet clear. We studied the function of BMP signaling factors in neurotransmitter release in Drosophila neuromuscular synapses using loss-of-function mutants in genes for BMP modulators, Wit, Mad, and Dad. Larvae with mutations in wit and mad commonly showed a decreased synaptic bouton number in neuromuscular synapses. Larvae with dad mutations showed an increased bouton number. The amplitudes of miniature EJC (mEJC) were normal for these mutants. Wit and mad mutants showed decreased evoked EJC (eEJC) amplitude and increased paired pulse facilitation, implying impaired presynaptic neurotransmitter release. We found a reduction in readily releasable neurotransmitters pool sizes in wit and mad mutants. However, dad mutants showed a normal probability of neurotransmitter release and readily releasable pool sizes and normal eEJC amplitude even with clear abnormalities in synaptic structure. These results suggested that BMP signaling was critical for each step of presynaptic neurotransmission. The results also suggested that BMP signaling modulated both synaptic structure and function independently and specifically. (C) 2016 Elsevier Inc. All rights reserved.
机译:突触的结构和功能通过突触前和突触后神经元通过细胞粘附分子或分泌的信号分子的相互作用来调节。骨形态发生蛋白(BMP)是一种介导逆行信号的分泌分子,参与许多动物物种的突触结构的形成和维持。但是,BMP信号传导如何调节突触前神经递质的释放尚不清楚。我们研究了果蝇神经肌肉突触中神经递质释放中BMP信号转导因子的功能,使用BMP调节剂,Wit,Mad和Dad基因的功能缺失突变体。机智和疯子突变的幼虫通常在神经肌肉突触中显示出突触后布顿数减少。带有父亲突变的幼虫显示出增加的布顿数。这些突变体的微型EJC(mEJC)振幅正常。机智和疯狂的突变体显示诱发的EJC(eEJC)幅度降低,而成对的脉冲促进作用增强,这意味着突触前神经递质释放受损。我们发现机智和疯子突变体中易于释放的神经递质库的大小减少。然而,即使突触结构有明显异常,爸爸突变体也显示出神经递质释放的正常可能性,易于释放的池大小和正常的eEJC振幅。这些结果表明BMP信号对于突触前神经传递的每个步骤至关重要。该结果还表明,BMP信号传导独立且特异性地调节突触结构和功能。 (C)2016 Elsevier Inc.保留所有权利。

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