Ertel E A, Warren V A, Adams M E, Griffin P R, Cohen C J, Smith M M
Department of Membrane Biochemistry and Biophysics, Merck Research Laboratories, Rahway, New Jersey 07065.
Biochemistry. 1994 May 3;33(17):5098-108. doi: 10.1021/bi00183a013.
The peptide omega-agatoxin-IIIA (omega-Aga-IIIA) from venom of the funnel web spider Agelenopsis aperta is the only known agent that blocks L-type and N-type Ca channels with equal high potency (IC50 < or = 1 nM). From the same venom, we have purified and sequenced a family of peptides which are homologous to omega-Aga-IIIA but vary over 100-fold in their relative affinity for L-type versus N-type Ca channels. One of these, omega-Aga-IIIB, is 76 amino acids long and identical to omega-Aga-IIIA in 66 positions. We identified two other similar peptides, omega-Aga-IIIC and omega-Aga-IIID, as well as one single amino acid variant of omega-Aga-IIIA and two of omega-Aga-IIIB. The type III omega-agatoxins exhibit similar but distinct activities on voltage-gated Ca channels. omega-Aga-IIIA, omega-Aga-IIIB, and omega-Aga-IIID are nearly indistinguishable in their actions at the insect neuromuscular junction (no effect at 0.1 microM), on atrial T-type Ca channels (no effect at 0.5 microM), and in two assays for synaptosomal Ca channels: they are nearly equipotent inhibitors of 125I-omega-conotoxin GVIA binding to rat brain synaptic membranes (IC50 = 0.17-0.33 nM) and blockers of the K(+)-induced 45Ca2+ influx into chick brain synaptosomes (omega-Aga-IIIB, 1.2 nM; omega-Aga-IIIA, 2.4 nM). In contrast, omega-Aga-IIIA is a better blocker of locust Ca channels (IC50 approximately 10-50 nM) than is omega-Aga-IIIB. Finally, although omega-Aga-IIIA, omega-Aga-IIIB, and omega-Aga-IIID all block atrial L-type Ca channels, omega-Aga-IIIA is over 100-fold more potent. Thus, although type III omega-agatoxins appear to recognize a binding site common to L- and N-type Ca channels, omega-Aga-IIIB and omega-Aga-IIID identify differences between the two channels.
来自漏斗网蜘蛛阿氏栉足蛛毒液的肽类ω-阿加毒素-IIIA(ω-Aga-IIIA)是唯一已知的能以同等高效力(IC50≤1 nM)阻断L型和N型钙通道的物质。我们从同一毒液中纯化并测序了一族与ω-Aga-IIIA同源但对L型和N型钙通道的相对亲和力相差100倍以上的肽。其中之一ω-Aga-IIIB,长度为76个氨基酸,与ω-Aga-IIIA在66个位置相同。我们鉴定出另外两种类似的肽,ω-Aga-IIIC和ω-Aga-IIID,以及ω-Aga-IIIA的一个单氨基酸变体和ω-Aga-IIIB的两个单氨基酸变体。III型ω-阿加毒素对电压门控钙通道表现出相似但不同的活性。ω-Aga-IIIA、ω-Aga-IIIB和ω-Aga-IIID在昆虫神经肌肉接头处(0.1 μM时无作用)、心房T型钙通道上(0.5 μM时无作用)以及两种突触体钙通道检测中几乎无法区分:它们是125I-ω-芋螺毒素GVIA与大鼠脑突触膜结合的几乎等效的抑制剂(IC50 = 0.17 - 0.33 nM),也是钾离子诱导的45Ca2+流入鸡脑突触体的阻断剂(ω-Aga-IIIB为1.2 nM;ω-Aga-IIIA为2.4 nM)。相比之下,ω-Aga-IIIA对蝗虫钙通道的阻断作用(IC50约为10 - 50 nM)比ω-Aga-IIIB更好。最后,尽管ω-Aga-IIIA、ω-Aga-IIIB和ω-Aga-IIID都能阻断心房L型钙通道,但ω-Aga-IIIA的效力要高100倍以上。因此,尽管III型ω-阿加毒素似乎识别L型和N型钙通道共有的一个结合位点,但ω-Aga-IIIB和ω-Aga-IIID识别出了这两种通道之间的差异。