Webster C, Gaut R L, Browning K S, Ravel J M, Roberts J K
Department of Biochemistry, University of California, Riverside 92521.
J Biol Chem. 1991 Dec 5;266(34):23341-6.
We have identified two isoforms of initiation factor 4A (eIF-4A) in maize root tips, with distinct isoelectric points and similar molecular mass (approximately 50 kDa). Both isoforms of maize eIF-4A cross-react with antibodies raised against wheat germ eIF-4A, and one of the maize proteins (higher pI isoform) comigrates with purified wheat germ eIF-4A on two-dimensional gels. The two maize eIF-4As were indistinguishable by comparative peptide fingerprint analysis, which also showed a very strong similarity between eIF-4A in maize roots and wheat germ. Maize eIF-4As copurify with eIF-4F and eIF-(iso)4F on a 7-methyl-GTP-Sepharose affinity column, indicating that they are part of the 5'-cap-binding complex. Two-dimensional gel electrophoresis and immunoblotting of proteins from 32P-labeled maize root tips revealed that the lower pI isoform of eIF-4A is phosphorylated. Two-dimensional phosphopeptide maps of trypsin-digested eIF-4A contained one principal phosphorylated fragment; phosphoamino acid analysis indicated phosphorylation of threonine. In oxygenated maize root tips, the ratio of phosphorylated to nonphosphorylated eIF-4A is approximately 0.2. This ratio increases to approximately 1 within 20 min following the onset of hypoxia, due to interconversion between the two maize eIF-4A isoforms. The hypoxia-induced phosphorylation of eIF-4A is discussed with respect to metabolic responses, and the translational control of gene expression, in hypoxic plant tissues.
我们在玉米根尖中鉴定出了起始因子4A(eIF-4A)的两种同工型,它们具有不同的等电点和相似的分子量(约50 kDa)。玉米eIF-4A的两种同工型都能与针对小麦胚芽eIF-4A产生的抗体发生交叉反应,并且其中一种玉米蛋白(较高pI同工型)在二维凝胶上与纯化的小麦胚芽eIF-4A迁移位置相同。通过比较肽指纹图谱分析,这两种玉米eIF-4A无法区分,该分析还表明玉米根中的eIF-4A与小麦胚芽中的eIF-4A非常相似。玉米eIF-4A在7-甲基-GTP-琼脂糖亲和柱上与eIF-4F和eIF-(iso)4F共纯化,表明它们是5'-帽结合复合物的一部分。对32P标记的玉米根尖蛋白质进行二维凝胶电泳和免疫印迹分析表明,eIF-4A的较低pI同工型被磷酸化。胰蛋白酶消化的eIF-4A的二维磷酸肽图谱包含一个主要的磷酸化片段;磷酸氨基酸分析表明苏氨酸发生了磷酸化。在充氧的玉米根尖中,磷酸化的eIF-4A与未磷酸化的eIF-4A的比例约为0.2。在缺氧开始后的20分钟内,由于两种玉米eIF-4A同工型之间的相互转化,该比例增加到约1。本文讨论了缺氧诱导的eIF-4A磷酸化在缺氧植物组织中的代谢反应和基因表达的翻译控制方面的作用。