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一种由溶组织内阿米巴产生的离子通道形成蛋白。

An ion-channel forming protein produced by Entamoeba histolytica.

作者信息

Lynch E C, Rosenberg I M, Gitler C

出版信息

EMBO J. 1982;1(7):801-4. doi: 10.1002/j.1460-2075.1982.tb01250.x.

Abstract

We have identified a remarkable ion-channel forming material in virulent strains of Entamoeba histolytica that may be responsible for many of the symptoms associated with amoebic dysentery. A polypeptide that we refer to as amoebapore is shed into the growth media and is also found within the amoeba in a high speed sedimentable fraction. Amoebapore has the distinctive property of spontaneously incorporating into lipid bilayers, liposomes, and cells, leading to progressive and irreversible changes in the ion conductance of the target membranes. Exposure of planar lipid bilayers to amoebapore -containing fractions under voltage clamp conditions results in an almost immediate and progressive incorporation of ion channels which continues in an irreversible manner leading to a fall in membrane impedance of up to five orders of magnitude. The ion-channel conductance is moderately cation-selective, voltage dependent, and displays a unit size of 1.6 +/- 0.2 nanoSiemens in 1 M KCl at -10 mV. In the bilayer, the amoebapore -induced conductance exhibits an in situ sensitivity to protease. Amoebapore is mainly concentrated in a fraction sedimenting at 150 000 g. It is insoluble in Triton X-100 but can be dissociated in an active state in 1% SDS. Under these conditions it has an apparent mol. wt. of 13 000 daltons.

摘要

我们在溶组织内阿米巴的致病菌株中鉴定出一种显著的离子通道形成物质,它可能是导致阿米巴痢疾诸多症状的原因。一种我们称为溶组织内阿米巴穿孔素的多肽被释放到生长培养基中,并且在阿米巴内的高速可沉降组分中也能找到。溶组织内阿米巴穿孔素具有独特的性质,能自发整合到脂质双层、脂质体和细胞中,导致靶膜的离子电导发生渐进且不可逆的变化。在电压钳制条件下,将平面脂质双层暴露于含溶组织内阿米巴穿孔素的组分中,会导致离子通道几乎立即且渐进地整合,这种整合以不可逆的方式持续进行,导致膜阻抗下降多达五个数量级。离子通道电导具有适度的阳离子选择性,依赖电压,在 -10 mV的1 M KCl中显示出1.6 +/- 0.2纳西门子的单位大小。在双层膜中,溶组织内阿米巴穿孔素诱导的电导对蛋白酶具有原位敏感性。溶组织内阿米巴穿孔素主要集中在150000 g沉降的组分中。它不溶于 Triton X - 100,但在1% SDS中可解离成活性状态。在这些条件下,其表观分子量为13000道尔顿。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62c2/553112/1e94f93083d9/emboj00299-0033-a.jpg

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