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磷酸胆碱作为淋巴细胞穿孔素的钙离子依赖性受体分子。

Phosphorylcholine acts as a Ca2+-dependent receptor molecule for lymphocyte perforin.

作者信息

Tschopp J, Schäfer S, Masson D, Peitsch M C, Heusser C

机构信息

Institute of Biochemistry, University of Lausanne, CH-1066 Epalinges, Switzerland.

出版信息

Nature. 1989 Jan 19;337(6204):272-4. doi: 10.1038/337272a0.

Abstract

Large granular lymphocytes and cytolytic T-lymphocytes (CTL) contain numerous cytoplasmic granules thought to be responsible, at least in part, for the cytolytic activity of these effector cells. Isolated granules are lytic for a variety of target cells and the granule proteins are specifically released upon target-cell interaction. Major proteins in mouse CTL granules are a family of seven serine proteases designated granzymes A to G, and a pore-forming protein called perforin (cytolysin). Purified perforin is cytolytic in the presence of Ca2+ and shows ultrastructural, immunological and amino-acid sequence similarities to complement component C9. Despite these similarities, perforin and C9 are clearly distinct in their mode of target-cell recognition. Whereas C9 insertion is absolutely dependent on a receptor moiety assembled from the complement proteins C5b, C6, C7, and C8 on the target-cell membrane, no requirement for a receptor molecule has been reported for perforin. Here, we demonstrate that phosphorylcholine acts as a specific, Ca2+-dependent receptor molecule for perforin.

摘要

大颗粒淋巴细胞和细胞溶解性T淋巴细胞(CTL)含有大量细胞质颗粒,这些颗粒至少在一定程度上被认为与这些效应细胞的细胞溶解活性有关。分离出的颗粒对多种靶细胞具有溶解性,并且颗粒蛋白在与靶细胞相互作用时会特异性释放。小鼠CTL颗粒中的主要蛋白质是一个由七种丝氨酸蛋白酶组成的家族,命名为颗粒酶A至G,以及一种称为穿孔素(细胞溶素)的成孔蛋白。纯化的穿孔素在Ca2+存在下具有细胞溶解性,并且在超微结构、免疫学和氨基酸序列上与补体成分C9相似。尽管有这些相似之处,但穿孔素和C9在靶细胞识别模式上明显不同。C9的插入绝对依赖于由靶细胞膜上的补体蛋白C5b、C6、C7和C8组装而成的受体部分,而对于穿孔素尚未报道需要受体分子。在这里,我们证明磷酸胆碱作为穿孔素的一种特异性、Ca2+依赖性受体分子发挥作用。

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