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阻断果蝇生物钟神经元的内吞作用会以 PDF 依赖的方式干扰内源性时钟。

Blocking endocytosis in Drosophila's circadian pacemaker neurons interferes with the endogenous clock in a PDF-dependent way.

机构信息

University of Regensburg, Institute of Zoology, Germany.

出版信息

Chronobiol Int. 2009 Oct;26(7):1307-22. doi: 10.3109/07420520903433315.

Abstract

The neuropeptide pigment-dispersing factor (PDF) plays an essential role in the circadian clock of the fruit fly Drosophila melanogaster, but many details of PDF signaling in the clock network are still unknown. We tried to interfere with PDF signaling by blocking the GTPase Shibire in PDF neurons. Shibire is an ortholog of the mammalian Dynamins and is essential for endocytosis of clathrin-coated vesicles at the plasma membrane. Such endocytosis is used for neurotransmitter reuptake by presynaptic neurons, which is a prerequisite of synaptic vesicle recycling, and receptor-mediated endocytosis in the postsynaptic neuron, which leads to signal termination. By blocking Shibire function via overexpression of a dominant negative mutant form of Shibire in PDF neurons, we slowed down the behavioral rhythm by 3 h. This effect was absent in PDF receptor null mutants, indicating that we interfered with PDF receptor-mediated endocytosis. Because we obtained similar behavioral phenotypes by increasing the PDF level in regions close to PDF neurons, we conclude that blocking Shibire did prolong PDF signaling in the neurons that respond to PDF. Obviously, terminating the PDF signaling via receptor-mediated endocytosis is a crucial step in determining the period of behavioral rhythms.

摘要

神经肽色素分散因子(PDF)在果蝇的生物钟中起着至关重要的作用,但 PDF 信号在生物钟网络中的许多细节仍然未知。我们试图通过阻断 PDF 神经元中的 GTPase Shibire 来干扰 PDF 信号。Shibire 是哺乳动物 Dynamin 的同源物,对于质膜上网格蛋白包被小泡的内吞作用至关重要。这种内吞作用是用于突触前神经元的神经递质再摄取的前提条件,是突触小泡循环利用的前提条件,也是在突触后神经元中受体介导的内吞作用的前提条件,从而导致信号终止。通过在 PDF 神经元中过表达 Shibire 的显性负突变体来阻断 Shibire 功能,我们将行为节律减慢了 3 小时。在 PDF 受体缺失突变体中没有这种作用,表明我们干扰了 PDF 受体介导的内吞作用。因为我们通过增加靠近 PDF 神经元的区域的 PDF 水平获得了类似的行为表型,所以我们得出结论,阻断 Shibire 确实延长了对 PDF 做出反应的神经元中的 PDF 信号。显然,通过受体介导的内吞作用终止 PDF 信号是决定行为节律周期的关键步骤。

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