Kuwada M, Teramoto T, Kumagaye K Y, Nakajima K, Watanabe T, Kawai T, Kawakami Y, Niidome T, Sawada K, Nishizawa Y
Eisai Tsukuba Research Laboratory, Ibaraki, Japan.
Mol Pharmacol. 1994 Oct;46(4):587-93.
omega-Agatoxin-TK (omega-Aga-TK), a 48-amino-acid peptide isolated from the venom of the funnel web spider (Agelenopsis aperta), is a selective and potent inhibitor of P-type calcium channels in the nervous system. We have synthesized a peptide that has the amino acid sequence identified for native omega-Aga-TK. The synthetic omega-Aga-TK, however, showed 80-90-fold less potent inhibition of P-type calcium channels, compared with native omega-Aga-TK. Enantiomer analysis of native omega-Aga-TK revealed D-serine at position 46, and synthetic omega-[D-Ser46]Aga-TK had the same potency as native omega-Aga-TK for blocking P-type calcium channels in cultured cerebellar Purkinje neurons. Two peptide fragments of omega-Aga-TK, namely omega-Aga-TK(1-43) and the carboxyl-terminal peptide fragment omega-Aga-TK(44-48), did not produce any significant inhibition of P-type calcium channels or interfere with the blockade of the channels elicited by native omega-Aga-TK. Molecular dynamics calculations showed that the carboxyl-terminal, six-amino-acid peptide of omega-Aga-TK containing D-Ser46 assumes a different conformation than does the peptide containing L-Ser46. These results suggest that the specific conformation of the carboxyl-terminal region of omega-Aga-TK, particularly the configuration of Ser46, together with a beta-sheet structure formed by four disulfide bonds, might be essential for blockade of P-type calcium channels.
ω-阿加毒素-TK(ω-Aga-TK)是一种从漏斗网蜘蛛(Agelenopsis aperta)毒液中分离出的由48个氨基酸组成的肽,是神经系统中P型钙通道的选择性强效抑制剂。我们合成了一种具有天然ω-Aga-TK所确定氨基酸序列的肽。然而,与天然ω-Aga-TK相比,合成的ω-Aga-TK对P型钙通道的抑制效力低80至90倍。对天然ω-Aga-TK的对映体分析显示在第46位存在D-丝氨酸,并且合成的ω-[D-Ser46]Aga-TK在培养的小脑浦肯野神经元中阻断P型钙通道的效力与天然ω-Aga-TK相同。ω-Aga-TK的两个肽片段,即ω-Aga-TK(1-43)和羧基末端肽片段ω-Aga-TK(44-48),对P型钙通道没有产生任何显著抑制作用,也不干扰天然ω-Aga-TK引起的通道阻断。分子动力学计算表明,含有D-Ser46的ω-Aga-TK的羧基末端六氨基酸肽与含有L-Ser46的肽具有不同的构象。这些结果表明,ω-Aga-TK羧基末端区域的特定构象,特别是Ser46的构型,以及由四个二硫键形成的β-折叠结构,可能对P型钙通道的阻断至关重要。