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果蝇神经系统中Shaker钾通道的免疫化学特性及发育表达

Immunochemical characterization and developmental expression of Shaker potassium channels from the nervous system of Drosophila.

作者信息

Rogero O, Tejedor F J

机构信息

Instituto Cajal, Consejo Superior de Investigaciones Cietificas Madrid, Spain.

出版信息

J Biol Chem. 1995 Oct 27;270(43):25746-51. doi: 10.1074/jbc.270.43.25746.

DOI:10.1074/jbc.270.43.25746
PMID:7592756
Abstract

We have raised antisera against recombinant peptides expressed from cDNAs fragments common to all splicing variants generated at the Shaker locus of Drosophila and used them as a tool to biochemically characterize these channel proteins. This antisera succeeded in detecting the expression of multiple Shaker potassium channels (Sh Kch), proteins with variable molecular mass (65-85 kDa) and pI (5.5-7). Additionally, for first time, specific Sh proteins of 40-45 kDa most probably corresponding to some of the so-called short Sh cDNAs previously isolated by others have been identified. Using genetic criteria, it has been determined that at least a good part of this variety of proteins is generated by alternative splicing. Developmental experiments show a double wave of Sh Kch channel expression with a first pick at the third instar larvae stage, a minimum at the beginning of puparation, and the highest plateau 36 h after hatching of adult flies. The pattern of Sh splice variants changes dramatically throughout development. A detergent-resistant fraction with about 50% of Sh Kch which seems to be anchored to submembranous structures has been found. Finally, other biochemical properties of Sh Kch, like membrane fractionation and glycosylation, are also described.

摘要

我们制备了针对从果蝇Shaker位点产生的所有剪接变体共有的cDNA片段表达的重组肽的抗血清,并将其用作生物化学表征这些通道蛋白的工具。这种抗血清成功检测到多种Shaker钾通道(Sh Kch)的表达,这些蛋白具有可变的分子量(65-85 kDa)和pI(5.5-7)。此外,首次鉴定出最有可能对应于其他人先前分离的一些所谓短Sh cDNA的40-45 kDa的特定Sh蛋白。使用遗传学标准已确定,这种多种蛋白质中至少很大一部分是由可变剪接产生的。发育实验表明,Sh Kch通道表达呈双波,在三龄幼虫阶段出现第一个峰值,在化蛹开始时降至最低,在成年果蝇孵化后36小时达到最高平台期。Sh剪接变体的模式在整个发育过程中发生巨大变化。已发现一个抗去污剂组分,其中约50%的Sh Kch似乎锚定在膜下结构上。最后,还描述了Sh Kch的其他生化特性,如膜分级分离和糖基化。

相似文献

1
Immunochemical characterization and developmental expression of Shaker potassium channels from the nervous system of Drosophila.果蝇神经系统中Shaker钾通道的免疫化学特性及发育表达
J Biol Chem. 1995 Oct 27;270(43):25746-51. doi: 10.1074/jbc.270.43.25746.
2
Diverse expression and distribution of Shaker potassium channels during the development of the Drosophila nervous system.果蝇神经系统发育过程中Shaker钾通道的多样表达与分布
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Circadian- and light-dependent regulation of resting membrane potential and spontaneous action potential firing of Drosophila circadian pacemaker neurons.果蝇昼夜节律起搏器神经元静息膜电位和自发动作电位发放的昼夜节律及光依赖性调节。
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Gating of the shaker potassium channel is modulated differentially by N-glycosylation and sialic acids.
震颤钾通道的门控受N-糖基化和唾液酸的差异调节。
Pflugers Arch. 2008 May;456(2):393-405. doi: 10.1007/s00424-007-0378-0. Epub 2007 Nov 28.
4
Quantitative single-cell-reverse transcription-PCR demonstrates that A-current magnitude varies as a linear function of shal gene expression in identified stomatogastric neurons.定量单细胞逆转录聚合酶链反应表明,在已鉴定的口胃神经中,A电流大小随shal基因表达呈线性变化。
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Diverse expression and distribution of Shaker potassium channels during the development of the Drosophila nervous system.果蝇神经系统发育过程中Shaker钾通道的多样表达与分布
J Neurosci. 1997 Jul 1;17(13):5108-18. doi: 10.1523/JNEUROSCI.17-13-05108.1997.
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Essential role for dlg in synaptic clustering of Shaker K+ channels in vivo.Dlg在体内Shaker钾离子通道的突触聚集过程中起关键作用。
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