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将蛋白质靶向非洲锥虫的糖体。

Targeting proteins to the glycosomes of African trypanosomes.

作者信息

Sommer J M, Wang C C

机构信息

Department of Pharmaceutical Chemistry, School of Pharmacy, University of California, San Francisco 94143-0446.

出版信息

Annu Rev Microbiol. 1994;48:105-38. doi: 10.1146/annurev.mi.48.100194.000541.

Abstract

Glycosomes are microbodies found in protozoa belonging to the order Kinetoplastida. These highly specialized organelles compartmentalize most of the glycolytic enzymes normally located in the cytosol of other eukaryotic cells. The recent success in expressing foreign proteins in Trypanosoma brucei has permitted a detailed analysis of glycosomal protein targeting signals in these organisms. These studies have revealed that the previously identified C-terminal tripeptide peroxisomal targeting signal also functions in the import of proteins into the glycosomes of T. brucei. However, the glycosomal and peroxisomal targeting signals differ in a few important ways. The C-terminal tripeptide sequence requirements for glycosomal protein targeting are comparatively relaxed. Of the three C-terminal amino acids, the first can be any small, neutral amino acid; the second should be capable of forming hydrogen bondings, whereas the third is a hydrophobic amino acid. This degenerate tripeptide sequence differs significantly from the more stringent requirements observed for the import of proteins into mammalian peroxisomes and thus represents an opportunity for designing peptide analogues that specifically block the glycosomal protein import for a possible antitrypanosomal chemotherapy. A recently described N-terminal signal that targets thiolase to the mammalian peroxisomes does not appear to function in import into the glycosomes. However, a novel internal targeting signal has tentatively been identified in at least one of the glycosomal proteins that can target a reporter protein to the glycosomes of T. brucei. Glycosome-deficient mutants have been isolated recently, which will aid in the identification of genes involved in the biogenesis of the glycosome.

摘要

糖体是在动基体目原生动物中发现的微体。这些高度特化的细胞器将大多数通常位于其他真核细胞胞质溶胶中的糖酵解酶分隔开来。最近在布氏锥虫中表达外源蛋白的成功使得对这些生物体中糖体蛋白靶向信号进行详细分析成为可能。这些研究表明,先前鉴定的C端三肽过氧化物酶体靶向信号在将蛋白质导入布氏锥虫的糖体中也起作用。然而,糖体靶向信号和过氧化物酶体靶向信号在一些重要方面有所不同。糖体蛋白靶向的C端三肽序列要求相对宽松。在C端的三个氨基酸中,第一个可以是任何小的中性氨基酸;第二个应该能够形成氢键,而第三个是疏水氨基酸。这种简并的三肽序列与观察到的蛋白质导入哺乳动物过氧化物酶体的更严格要求有显著差异,因此为设计特异性阻断糖体蛋白导入的肽类似物提供了机会,用于可能的抗锥虫化疗。最近描述的将硫解酶靶向哺乳动物过氧化物酶体的N端信号似乎在导入糖体中不起作用。然而,在至少一种糖体蛋白中初步鉴定出了一种新的内部靶向信号,它可以将报告蛋白靶向布氏锥虫的糖体。最近分离出了糖体缺陷型突变体,这将有助于鉴定参与糖体生物发生的基因。

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