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首页> 外文期刊>Journal of cell biology >Analysis of nuclear lamin isoprenylation in Xenopus oocytes: isoprenylation of lamin B3 precedes its uptake into the nucleus.
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Analysis of nuclear lamin isoprenylation in Xenopus oocytes: isoprenylation of lamin B3 precedes its uptake into the nucleus.

机译:爪蟾卵母细胞中核纤层异戊二烯化的分析:纤层B3异戊烯化先于其摄取进入核。

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Protein prenylation is a posttranslational modification involving the covalent attachment of a prenyl lipid to a cysteine at or near the COOH terminus of a protein. It is required for membrane localization and efficient function of a number of cytoplasmic as well as nuclear proteins including the proto-oncogenic and activated forms of Ras. Farnesylation in conjunction with a nuclear localization signal has been shown to be necessary to target newly synthesized nuclear lamins to the inner nuclear envelope membrane. It is, however, not clear where in the cell isoprenylation of nuclear lamins takes place. In this study we describe in vivo and in vitro experiments on the isoprenylation of the Xenopus oocyte nuclear lamin B3. We show by kinetic analysis that newly synthesized lamins are isoprenylated in the cytosol of oocytes before uptake into the nucleus. From our data it can be concluded that isoprenylation of lamins in the nucleus, as it is observed under certain conditions of isoprene starvation, represents a default pathway rather than the physiological situation. We further analyzed the capacity of isolated nuclei to carry out isoprenylation of B3. Our results are in line with a dual localization of a protein farnesyltransferase in the cytosol and nuclei of amphibian oocytes. Implications for the possible functions of a nuclear protein farnesyltransferase as well as possible mechanisms of the selective inhibition of farnesylation of cytoplasmic proteins by peptidomimetics are discussed.
机译:蛋白质异戊二烯化是翻译后修饰,涉及异戊二烯基脂质与蛋白质的COOH末端处或附近的半胱氨酸共价连接。膜定位和许多胞质以及核蛋白(包括原癌基因形式和活化形式的Ras)的有效功能是必需的。已经证明,法呢基化结合核定位信号对于将新合成的核纤层蛋白靶向内核被膜是必要的。但是,尚不清楚细胞中核纤层蛋白的异戊二烯化发生在何处。在这项研究中,我们描述了非洲爪蟾卵母细胞核层粘连蛋白B3异戊二烯化的体内和体外实验。我们通过动力学分析表明,新合成的lamins在摄取进入细胞核之前在卵母细胞的胞质溶胶中是异戊二烯基化的。从我们的数据可以得出结论,在异戊二烯饥饿的某些条件下观察到,核中lamin的异戊二烯化代表默认途径,而不是生理情况。我们进一步分析了分离核进行B3异戊二烯化的能力。我们的结果与两栖卵母细胞的胞质溶胶和细胞核中蛋白质法呢基转移酶的双重定位一致。讨论了核蛋白法呢基转移酶可能功能的含义以及拟肽类药物选择性抑制细胞质蛋白法呢基化的可能机制。

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