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在果蝇神经末梢分析的半胱氨酸串蛋白的多种功能。

The multiple functions of cysteine-string protein analyzed at Drosophila nerve terminals.

作者信息

Bronk Peter, Nie Zhiping, Klose Markus K, Dawson-Scully Ken, Zhang Jinhui, Robertson R Meldrum, Atwood Harold L, Zinsmaier Konrad E

机构信息

Arizona Research Laboratories Division of Neurobiology, University of Arizona, Tucson, Arizona 85721-0077, USA.

出版信息

J Neurosci. 2005 Mar 2;25(9):2204-14. doi: 10.1523/JNEUROSCI.3610-04.2005.

Abstract

The synaptic vesicle-associated cysteine-string protein (CSP) is important for synaptic transmission. Previous studies revealed multiple defects at neuromuscular junctions (NMJs) of csp null-mutant Drosophila, but whether these defects are independent of each other or mechanistically linked through J domain mediated-interactions with heat-shock cognate protein 70 (Hsc70) has not been established. To resolve this issue, we genetically dissected the individual functions of CSP by an in vivo structure/function analysis. Expression of mutant CSP lacking the J domain at csp null-mutant NMJs fully restored normal thermo-tolerance of evoked transmitter release but did not completely restore evoked release at room temperature and failed to reverse the abnormal intraterminal Ca2+ levels. This suggests that J domain-mediated functions are essential for the regulation of intraterminal Ca2+ levels but only partially required for regulating evoked release and not required for protecting evoked release against thermal stress. Hence, CSP can also act as an Hsc70-independent chaperone protecting evoked release from thermal stress. Expression of mutant CSP lacking the L domain restored neurotransmission and partially reversed the abnormal intraterminal Ca2+ levels, suggesting that the L domain is important, although not essential, for the role of CSP in regulating intraterminal Ca2+ levels. We detected no effects of csp mutations on individual presynaptic Ca2+ signals triggered by action potentials, suggesting that presynaptic Ca2+ entry is not primarily impaired. Both the J and L domains were also required for the role of CSP in synaptic growth. Together, these results suggest that CSP has several independent synaptic functions, affecting synaptic growth, evoked release, thermal protection of evoked release, and intraterminal Ca2+ levels at rest and during stimulation.

摘要

突触小泡相关的半胱氨酸串珠蛋白(CSP)对突触传递很重要。先前的研究揭示了csp基因敲除突变果蝇神经肌肉接头(NMJ)存在多种缺陷,但这些缺陷是相互独立的,还是通过J结构域介导与热休克同源蛋白70(Hsc70)的相互作用在机制上相互关联,尚未明确。为了解决这个问题,我们通过体内结构/功能分析对CSP的个体功能进行了遗传学剖析。在csp基因敲除突变的NMJ处表达缺失J结构域的突变型CSP,可完全恢复诱发递质释放的正常热耐受性,但不能完全恢复室温下的诱发释放,也无法逆转终末内异常的Ca2+水平。这表明J结构域介导的功能对于终末内Ca2+水平的调节至关重要,但对于调节诱发释放仅部分需要,对于保护诱发释放免受热应激则不需要。因此,CSP还可以作为一种不依赖Hsc70的伴侣蛋白,保护诱发释放免受热应激。表达缺失L结构域的突变型CSP可恢复神经传递,并部分逆转终末内异常的Ca2+水平,这表明L结构域对于CSP在调节终末内Ca2+水平中的作用很重要,尽管不是必需的。我们未检测到csp突变对动作电位触发的单个突触前Ca2+信号有影响,这表明突触前Ca2+内流并未受到主要损害。J结构域和L结构域对于CSP在突触生长中的作用也是必需的。总之,这些结果表明CSP具有几种独立的突触功能,影响突触生长、诱发释放、诱发释放的热保护以及静息和刺激期间终末内的Ca2+水平。

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