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在哺乳动物细胞和寄生原生动物中,糖基磷脂酰肌醇附着的要求相似但不完全相同。

Requirements for glycosylphosphatidylinositol attachment are similar but not identical in mammalian cells and parasitic protozoa.

作者信息

Moran P, Caras I W

机构信息

Department of Neurobiology, Genentech, Inc., South San Francisco, California 94080.

出版信息

J Cell Biol. 1994 Apr;125(2):333-43. doi: 10.1083/jcb.125.2.333.

Abstract

The general features of the glycosylphosphatidylinositol (GPI) signal have been conserved in evolution. To test whether the requirements for GPI attachment are indeed the same in mammalian cells and parasitic protozoa, we expressed the prototype GPI-linked protein of Trypanosoma brucei, the variant surface glycoprotein (VSG), in COS cells. Although large amounts of VSG were produced, only a small fraction became GPI linked. This impaired processing is not caused by the VSG ectodomain, since replacement of the VSG GPI signal with that of decay accelerating factor (DAF) produced GPI-linked VSG. Furthermore, whereas fusion of the DAF GPI signal to the COOH terminus of human growth hormone (hGH) produces GPI-linked hGH, an analogous hGH fusion using the VSG GPI signal does not, indicating that the VSG GPI signal functions poorly in mammalian cells. By constructing chimeric VSG-DAF GPI signals and fusing them to the COOH terminus of hGH, we show that of the two critical elements that comprise the GPI-signal--the cleavage/attachment site and the COOH terminal hydrophobic domain--the former is responsible for the impaired activity of the VSG GPI signal in COS cells. To confirm this, we show that the VSG GPI signal can be converted to a viable signal for mammalian cells by altering the amino acid configuration at the cleavage/attachment site. We also show that when fused to the COOH terminus of hGH, the putative GPI signal from the malaria circumsporozoite (CS) protein produces low levels of GPI-anchored hGH, suggesting that the CS protein is indeed GPI linked, but that the CS protein GPI signal, like the VSG-signal, functions poorly in COS cells. The finding that the requirements for GPI attachment are similar but not identical in parasitic protozoa and mammalian cells may allow for the development of selective inhibitors of GPI-anchoring that might prove useful as antiparasite therapeutics.

摘要

糖基磷脂酰肌醇(GPI)信号的一般特征在进化过程中得以保留。为了测试在哺乳动物细胞和寄生原生动物中GPI连接的要求是否确实相同,我们在COS细胞中表达了布氏锥虫的原型GPI连接蛋白,即变异表面糖蛋白(VSG)。尽管产生了大量的VSG,但只有一小部分与GPI连接。这种加工受损并非由VSG胞外结构域引起,因为用衰变加速因子(DAF)的GPI信号替换VSG的GPI信号可产生GPI连接的VSG。此外,虽然将DAF的GPI信号融合到人生长激素(hGH)的COOH末端可产生GPI连接的hGH,但使用VSG的GPI信号进行类似的hGH融合却不能,这表明VSG的GPI信号在哺乳动物细胞中的功能不佳。通过构建嵌合的VSG-DAF GPI信号并将其融合到hGH的COOH末端,我们发现,构成GPI信号的两个关键元件——切割/连接位点和COOH末端疏水结构域——前者是导致VSG的GPI信号在COS细胞中活性受损的原因。为了证实这一点,我们表明,通过改变切割/连接位点的氨基酸构型,VSG的GPI信号可转化为对哺乳动物细胞可行的信号。我们还表明,当融合到hGH的COOH末端时,来自疟原虫环子孢子(CS)蛋白的推定GPI信号产生的GPI锚定hGH水平较低,这表明CS蛋白确实与GPI连接,但CS蛋白的GPI信号与VSG信号一样,在COS细胞中的功能不佳。寄生原生动物和哺乳动物细胞中GPI连接的要求相似但不完全相同这一发现,可能有助于开发GPI锚定的选择性抑制剂,这些抑制剂可能被证明可作为抗寄生虫治疗药物。

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