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A new potassium channel toxin from the sea anemone Heteractis magnifica: isolation, cDNA cloning, and functional expression

机译:巨大的海葵海葵中的一种新钾通道毒素:分离,cDNA克隆和功能性表达

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摘要

A new potassium channel toxin, HmK, has been isolated from the sea anemone Heteractis magnifica. It inhibits the binding of [125I]-alpha-dendrotoxin (a ligand for voltage-gated K channels) to rat brain synaptosomal membranes with a Ki of about 1 nM, blocks K+ currents through Kv 1.2 channels expressed in a mammalian cell line, and facilitates acetylcholine release at the avian neuromuscular junction. HmK comprises of 35 amino acids (Mr 4055) with the sequence R1TCKDLIPVS10ECTDIRCRTS20MKYRLNLCRK30TCGSC35. A full assignment of the disulfide linkages was made by using partial reduction with tri(2-carboxyethyl)phosphine (TCEP) at acid pH and rapid alkylation with iodoacetamide. The disulfide bridges were identified as Cys3-Cys35, Cys12-Cys28, and Cys17-Cys32. A cDNA clone encoding HmK was isolated using RT-PCR from the total RNA obtained from sea anemone tentacles, while the 5'- and 3'-flanking regions of the cDNA were amplified by RACE. The full-length cDNA was 563 bp long and contained a sequence encoding a signal peptide of 39 amino acids. The coding region for matured HmK toxin was cloned and expressed as a glutathione S-transferase (GST) fusion product in the cytoplasm of Escherichia coli. After affinity purification and cleavage, the recombinant toxin was shown to be identical to native HmK in its N-terminal sequence, chromatographic behavior, and binding to dendrotoxin binding sites on rat brain membranes.
机译:一种新的钾通道毒素,HmK,已从海葵巨大异形藻中分离出来。它抑制[125I]-α-树突毒素(电压门控K通道的配体)与大鼠脑突触膜的结合,其Ki约为1 nM,阻止K +电流通过哺乳动物细胞系中表达的Kv 1.2通道,并且促进乙酰胆碱在禽神经肌肉接头处的释放。 HmK包含35个氨基酸(Mr 4055),其序列为R1TCKDLIPVS10ECTDIRCRTS20MKYRLNLCRK30TCGSC35。通过在酸性pH下用三(2-羧乙基)膦(TCEP)进行部分还原并用碘乙酰胺进行快速烷基化,可以完成对二硫键的完全分配。二硫键被鉴定为Cys3-Cys35,Cys12-Cys28和Cys17-Cys32。使用RT-PCR从海葵触角获得的总RNA中分离出编码HmK的cDNA克隆,而cDNA的5'和3'侧翼区域则通过RACE扩增。全长cDNA长563 bp,包含一个编码39个氨基酸的信号肽的序列。克隆了成熟的HmK毒素的编码区,并在大肠杆菌的细胞质中以谷胱甘肽S-转移酶(GST)融合产物的形式表达。经过亲和纯化和裂解后,重组毒素在其N端序列,色谱行为以及与大鼠脑膜上树突毒素结合位点的结合方面均与天然HmK相同。

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