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半氟化表面活性剂介导膜蛋白插入脂质双层:应用于白喉毒素

Chaperoning of insertion of membrane proteins into lipid bilayers by hemifluorinated surfactants: application to diphtheria toxin.

作者信息

Palchevskyy Sergiy S, Posokhov Yevgen O, Olivier Blandine, Popot Jean-Luc, Pucci Bernard, Ladokhin Alexey S

机构信息

Department of Biochemistry and Molecular Biology, Kansas University Medical Center, Kansas City, Kansas 66160-7421, USA.

出版信息

Biochemistry. 2006 Feb 28;45(8):2629-35. doi: 10.1021/bi052257l.

Abstract

Hemifluorinated compounds, such as HF-TAC, make up a novel class of nondetergent surfactants designed to keep membrane proteins soluble under nondissociating conditions [Breyton, C., et al. (2004) FEBS Lett. 564, 312]. Because fluorinated and hydrogenated chains do not mix well, supramicellar concentrations of these surfactants can coexist with intact lipid vesicles. To test the ability of HF-TAC to assist proper membrane insertion of proteins, we examined its effect on the pH-triggered insertion of the diphtheria toxin T-domain. The function of the T-domain is to translocate the catalytic domain across the lipid bilayer in response to acidification of the endosome. This translocation is accompanied by the formation of a pore, which we used as a measure of activity in a vesicle leakage assay. We have also used Förster resonance energy transfer to follow the effect of HF-TAC on aggregation of aqueous and membrane-bound T-domain. Our data indicate that the pore-forming activity of the T-domain is affected by the dynamic interplay of two principal processes: productive pH-triggered membrane insertion and nonproductive aggregation of the aqueous T-domain at low pH. The presence of HF-TAC in the buffer is demonstrated to suppress aggregation in solution and ensure correct insertion and folding of the T-domain into the lipid vesicles, without solubilizing the latter. Thus, hemifluorinated surfactants stabilize the low-pH conformation of the T-domain as a water-soluble monomer while acting as low-molecular weight chaperones for its insertion into preformed lipid bilayers.

摘要

半氟化化合物,如HF-TAC,构成了一类新型的非离子表面活性剂,旨在使膜蛋白在非解离条件下保持可溶状态[Breyton, C., 等人 (2004) 《欧洲生物化学学会联合会快报》564, 312]。由于氟化链和氢化链混合性不佳,这些表面活性剂的超胶束浓度可与完整的脂质囊泡共存。为了测试HF-TAC协助蛋白质正确插入膜的能力,我们研究了其对白喉毒素T结构域pH触发插入的影响。T结构域的功能是响应内体酸化将催化结构域转运穿过脂质双层。这种转运伴随着孔的形成,我们将其用作囊泡泄漏测定中活性的衡量指标。我们还利用Förster共振能量转移来追踪HF-TAC对水性和膜结合T结构域聚集的影响。我们的数据表明,T结构域的成孔活性受两个主要过程动态相互作用的影响:有成效的pH触发膜插入和低pH下水性T结构域的无成效聚集。缓冲液中HF-TAC的存在被证明可抑制溶液中的聚集,并确保T结构域正确插入脂质囊泡并折叠,而不会使脂质囊泡溶解。因此,半氟化表面活性剂将T结构域的低pH构象稳定为水溶性单体,同时作为低分子量伴侣蛋白协助其插入预先形成的脂质双层。

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