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从人宫颈癌细胞系(HeLa细胞)中分离含hypusine蛋白eIF-5A的不同亚型并进行结构表征。

Isolation and structural characterization of different isoforms of the hypusine-containing protein eIF-5A from HeLa cells.

作者信息

Klier H, Csonga R, Joäo H C, Eckerskorn C, Auer M, Lottspeich F, Eder J

机构信息

SANDOZ Research Institute, Vienna, Austria.

出版信息

Biochemistry. 1995 Nov 14;34(45):14693-702. doi: 10.1021/bi00045a010.

Abstract

Posttranslational modification of a specific lysine residue in eukaryotic initiation factor 5A (eIF-5A) is essential for cell viability and proliferation. The product of this modification is hypusine, an amino acid unique to eIF-5A. We have purified and characterized one major and three minor isoforms of human eIF-5A from HeLa cells. The main form, which accounts for approximately 95% of the total eIF-5A, carries hypusine at position 50 and is amino-terminally acetylated as determined by amino acid composition analysis and electrospray ionization mass spectrometry. Analytical gel filtration indicates that this protein variant possesses a native apparent molecular weight that lies between that expected for a monomeric and dimeric form. Nevertheless, several experiments confirm this protein to be monomeric. It is further shown that eIF-5A have well-defined secondary structure. Both the far-UV circular dichroism spectrum as well as secondary structure predictions using different algorithms suggest this protein to have predominantly beta-sheet structure. Two plausible models for the packing of the secondary structure elements are presented. In contrast to the main form, all three minor isoforms of eIF-5A are characterized by acetylation of the epsilon-amino group of lysine at position 47. The minor isoforms are distinguishable by their state of modification of the lysine residue at position 50. Whereas the main form occurs in both the cytoplasmic and the nuclear fraction of HeLa cells, the minor isoforms were not detectable in the preparation of the nuclear fraction. Therefore, acetylation of lysine at position 47 might play a controlling role in the distribution of the minor isoforms to the nucleus.

摘要

真核生物起始因子5A(eIF - 5A)中特定赖氨酸残基的翻译后修饰对于细胞活力和增殖至关重要。这种修饰的产物是hypusine,一种eIF - 5A特有的氨基酸。我们从HeLa细胞中纯化并鉴定了人eIF - 5A的一种主要同工型和三种次要同工型。主要形式约占总eIF - 5A的95%,通过氨基酸组成分析和电喷雾电离质谱法确定其在第50位带有hypusine且氨基末端被乙酰化。分析性凝胶过滤表明这种蛋白质变体具有的天然表观分子量介于单体和二聚体形式预期的分子量之间。然而,多项实验证实该蛋白质为单体。进一步表明eIF - 5A具有明确的二级结构。远紫外圆二色光谱以及使用不同算法的二级结构预测均表明该蛋白质主要具有β - 折叠结构。提出了两种二级结构元件堆积的合理模型。与主要形式不同,eIF - 5A的所有三种次要同工型的特征在于第47位赖氨酸的ε - 氨基被乙酰化。次要同工型可通过其第50位赖氨酸残基的修饰状态区分。主要形式存在于HeLa细胞的细胞质和细胞核部分,而在细胞核部分的制备中未检测到次要同工型。因此,第47位赖氨酸的乙酰化可能在次要同工型向细胞核的分布中起控制作用。

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