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CD59不仅能阻止C9插入膜攻击复合物(MAC),还能抑制同源的C5b - 8以及C5b - 9形成离子通道。

CD59 blocks not only the insertion of C9 into MAC but inhibits ion channel formation by homologous C5b-8 as well as C5b-9.

作者信息

Farkas Imre, Baranyi Lajos, Ishikawa Yasushige, Okada Noriko, Bohata Csaba, Budai Denes, Fukuda Atsuo, Imai Masaki, Okada Hidechika

机构信息

Department of Molecular Biology, Nagoya City University School of Medicine, Nagoya 467-8601, Japan.

出版信息

J Physiol. 2002 Mar 1;539(Pt 2):537-45. doi: 10.1113/jphysiol.2001.013381.

Abstract

Activation of the complement system on the cell surface results in the insertion of pore forming membrane attack complexes (MAC, C5b-9). In order to protect themselves from the complement attack, the cells express several regulatory molecules, including the terminal complex regulator CD59 that inhibits assembly of the large MACs by inhibiting the insertion of additional C9 molecules into the C5b-9 complex. Using the whole cell patch clamp method, we were able to measure accumulation of homologous MACs in the membrane of CD59(-) human B-cells, which formed non-selective ion channels with a total conductance of 360 +/- 24 pS as measured at the beginning of the steady-state phase of the inward currents. C5b-8 and small-size MAC (MAC containing only a single C9) can also form ion channels. Nevertheless, in CD59(+) human B-cells in spite of small-size MAC formation, an ion current could not be detected. In addition, restoring CD59 to the membrane of the CD59(-) cells inhibited the serum-evoked inward current. The ion channels formed by the small-size MAC were therefore sealed, indicating that CD59 directly interfered with the pore formation of C5b-8 as well as that of small-size C5b-9. These results offer an explanation as to why CD59-expressing cells are not leaky in spite of a buildup of homologous C5b-8 and small-size MAC. Our experiments also confirmed that ion channel inhibition by CD59 is subject to homologous restriction and that CD59 cannot block the conductivity of MAC when generated by xenogenic (rabbit) serum.

摘要

补体系统在细胞表面的激活会导致形成孔道的膜攻击复合物(MAC,C5b-9)的插入。为了保护自身免受补体攻击,细胞表达多种调节分子,包括末端复合物调节因子CD59,它通过抑制额外的C9分子插入C5b-9复合物来抑制大MAC的组装。使用全细胞膜片钳方法,我们能够测量CD59(-)人B细胞细胞膜中同源MAC的积累,这些MAC形成了非选择性离子通道,在内向电流稳态阶段开始时测量,其总电导为360±24 pS。C5b-8和小尺寸MAC(仅包含单个C9的MAC)也能形成离子通道。然而,在CD59(+)人B细胞中,尽管形成了小尺寸MAC,但未检测到离子电流。此外,将CD59恢复到CD59(-)细胞的膜上可抑制血清诱发的内向电流。因此,由小尺寸MAC形成的离子通道被封闭,这表明CD59直接干扰了C5b-8以及小尺寸C5b-9的孔道形成。这些结果解释了为什么尽管同源C5b-8和小尺寸MAC积累,但表达CD59的细胞不会渗漏。我们的实验还证实,CD59对离子通道的抑制具有同源限制性,并且当由异种(兔)血清产生时,CD59不能阻断MAC的导电性。

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