Suchyna Thomas M, Tape Sonya E, Koeppe Roger E, Andersen Olaf S, Sachs Frederick, Gottlieb Philip A
Department of Physiology and Biophysics, SUNY at Buffalo, Buffalo, New York 14214, USA.
Nature. 2004 Jul 8;430(6996):235-40. doi: 10.1038/nature02743.
The peptide GsMTx4, isolated from the venom of the tarantula Grammostola spatulata, is a selective inhibitor of stretch-activated cation channels (SACs). The mechanism of inhibition remains unknown; but both GsMTx4 and its enantiomer, enGsMTx4, modify the gating of SACs, thus violating a trademark of the traditional lock-and-key model of ligand-protein interactions. Suspecting a bilayer-dependent mechanism, we examined the effect of GsMTx4 and enGsMTx4 on gramicidin A (gA) channel gating. Both peptides are active, and the effect increases with the degree of hydrophobic mismatch between bilayer thickness and channel length, meaning that GsMTx4 decreases the energy required to deform the boundary lipids adjacent to the channel. GsMTx4 decreases inward SAC single-channel currents but has no effect on outward currents, suggesting it is located within a Debye length of the outer vestibule of the SACs, but significantly farther from the inner vestibule. Likewise, GsMTx4 decreases gA single-channel currents. Our results suggest that modulation of membrane proteins by amphipathic peptides--mechanopharmacology--involves not only the protein itself but also the surrounding lipids. The surprising efficacy of the d form of GsMTx4 peptide has important therapeutic implications, because d peptides are not hydrolysed by endogenous proteases and may be administered orally.
从狼蛛Grammostola spatulata毒液中分离出的肽GsMTx4是拉伸激活阳离子通道(SACs)的选择性抑制剂。其抑制机制尚不清楚;但GsMTx4及其对映体enGsMTx4都会改变SACs的门控,从而违背了配体 - 蛋白质相互作用传统锁钥模型的一个特征。由于怀疑存在一种依赖于双层膜的机制,我们研究了GsMTx4和enGsMTx4对短杆菌肽A(gA)通道门控的影响。这两种肽都有活性,并且这种影响会随着双层膜厚度与通道长度之间疏水不匹配程度的增加而增强,这意味着GsMTx4降低了使通道附近边界脂质变形所需的能量。GsMTx4会降低内向SAC单通道电流,但对外向电流没有影响,这表明它位于SACs外前庭的德拜长度范围内,但离内前庭要远得多。同样,GsMTx4也会降低gA单通道电流。我们的结果表明,两亲性肽对膜蛋白的调节——机械药理学——不仅涉及蛋白质本身,还涉及周围的脂质。GsMTx4肽d型令人惊讶的功效具有重要的治疗意义,因为d肽不会被内源性蛋白酶水解,并且可以口服给药。