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解析蜘蛛毒液蛋白 DkTx 对 TRPV1 持续激活模式的膜亲和力和二价性的贡献。

Dissecting the contributions of membrane affinity and bivalency of the spider venom protein DkTx to its sustained mode of TRPV1 activation.

机构信息

Department of Biology, Indian Institute of Science Education and Research (IISER) Pune, Pune, Maharashtra, India; Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Bhopal, Bhopal, Madhya Pradesh, India.

Department of Biological Sciences, Indian Institute of Science Education and Research (IISER) Bhopal, Bhopal, Madhya Pradesh, India.

出版信息

J Biol Chem. 2023 Jul;299(7):104903. doi: 10.1016/j.jbc.2023.104903. Epub 2023 Jun 10.

Abstract

The spider venom protein, double-knot toxin (DkTx), partitions into the cellular membrane and binds bivalently to the pain-sensing ion channel, TRPV1, triggering long-lasting channel activation. In contrast, its monovalent single knots membrane partition poorly and invoke rapidly reversible TRPV1 activation. To discern the contributions of the bivalency and membrane affinity of DkTx to its sustained mode of action, here, we developed diverse toxin variants including those containing truncated linkers between individual knots, precluding bivalent binding. Additionally, by appending the single-knot domains to the Kv2.1 channel-targeting toxin, SGTx, we created monovalent double-knot proteins that demonstrated higher membrane affinity and more sustained TRPV1 activation than the single-knots. We also produced hyper-membrane affinity-possessing tetra-knot proteins, (DkTx) and DkTx-(SGTx), that demonstrated longer-lasting TRPV1 activation than DkTx, establishing the central role of the membrane affinity of DkTx in endowing it with its sustained TRPV1 activation properties. These results suggest that high membrane affinity-possessing TRPV1 agonists can potentially serve as long-acting analgesics.

摘要

蜘蛛毒液蛋白双结毒素(DkTx)会分配到细胞膜上,并以二价结合方式与痛觉感应离子通道 TRPV1 结合,引发持久的通道激活。相比之下,其单价单结在细胞膜上的分配较差,只能引发快速可逆的 TRPV1 激活。为了区分 DkTx 的二价性和膜亲和力对其持续作用模式的贡献,我们在这里开发了多种毒素变体,包括那些在各个结之间包含截断接头的变体,从而阻止二价结合。此外,通过将单结结构域附加到靶向 Kv2.1 通道的毒素 SGTx 上,我们创建了单价双结蛋白,与单结相比,它们表现出更高的膜亲和力和更持久的 TRPV1 激活。我们还产生了具有超高膜亲和力的四结蛋白(DkTx)和 DkTx-(SGTx),它们表现出比 DkTx 更长时间的 TRPV1 激活,这确立了 DkTx 的膜亲和力在赋予其持续 TRPV1 激活特性方面的核心作用。这些结果表明,具有高膜亲和力的 TRPV1 激动剂可能有潜力成为长效镇痛药。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5265/10404664/95fe29ee5072/gr1.jpg

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