Bourguignon J, Vauclare P, Merand V, Forest E, Neuburger M, Douce R
URA CNRS 576, Département de Biologie Moléculaire et Structurale, Grenoble, France.
Eur J Biochem. 1993 Oct 1;217(1):377-86. doi: 10.1111/j.1432-1033.1993.tb18256.x.
cDNA clones encoding the precursor of the T protein of the glycine decarboxylase complex have been isolated from a pea leaf cDNA library in lambda gt11. The longest cDNA insert of 1430 bp encodes a polypeptide of 408 amino acid residues of which 30 residues constitute an N-terminal cleavable presequence and 378 residues make up the mature protein. Several results confirmed the identity of the cDNA and the exactness of the predicted primary structure. Firstly, we purified the T protein to homogeneity and its mass was measured by mass spectrometry. The mass obtained (40966 +/- 5 Da) was the value predicted from the cDNA (40961 Da). Secondly, the purified T protein was chemically cleaved with cyanogen bromide and the peptide fragments were analysed by high-performance liquid chromatography/electrospray ionization mass spectrometry and/or fast-atom-bombardment mass spectrometry. The mass values of all the peptides generated by chemical cleavage and measured by these techniques were very close to the values calculated from the predicted primary structure. Thirdly, microsequencing of some of these peptides, which represent 35% of the total protein, fits perfectly with the primary structure deduced from the cDNA. In the present HPLC/electrospray ionization MS studies we never detected the presence of covalently bound tetrahydropteroylpolyglutamate (H4PteGlun), either in the native T protein or in the different peptide fragments generated by the chemical cleavage. The absence of H4PteGlun bound to the T protein in our experimental conditions demonstrates that H4PteGlun is not covalently linked to the T protein. Northern blot analysis showed that the steady-state level of the mRNA corresponding to the T protein was high in green leaves compared to the level in etiolated leaves (approximately 8-10-fold higher). Surprisingly, a non-negligible amount of mRNA corresponding to the T protein was present in roots whereas the mRNA encoding the H protein was not detectable. Western blot analysis showed that the P, L and T proteins of the glycine decarboxylase complex were present in roots whereas the H protein was not detectable. Southern hybridization to pea genomic DNA indicated the presence of a single gene encoding the T protein of the glycine decarboxylase complex in the haploid genome.
已从λgt11载体中的豌豆叶cDNA文库中分离出编码甘氨酸脱羧酶复合体T蛋白前体的cDNA克隆。最长的1430 bp cDNA插入片段编码一个由408个氨基酸残基组成的多肽,其中30个残基构成N端可裂解的前导序列,378个残基构成成熟蛋白。多项结果证实了该cDNA的身份以及预测一级结构的准确性。首先,我们将T蛋白纯化至同质,并通过质谱测定其质量。所得质量(40966±5 Da)与从cDNA预测的值(40961 Da)相符。其次,用溴化氰对纯化的T蛋白进行化学裂解,并用高效液相色谱/电喷雾电离质谱和/或快原子轰击质谱分析肽片段。通过这些技术对化学裂解产生的所有肽进行测量得到的质量值与根据预测一级结构计算的值非常接近。第三,对其中一些占总蛋白35%的肽进行微量测序,与从cDNA推导的一级结构完美匹配。在目前的高效液相色谱/电喷雾电离质谱研究中,无论是天然T蛋白还是化学裂解产生的不同肽片段中,我们都从未检测到共价结合的四氢蝶酰多谷氨酸(H4PteGlun)的存在。在我们的实验条件下,T蛋白上不存在H4PteGlun,这表明H4PteGlun与T蛋白不是共价连接的。Northern印迹分析表明,与T蛋白对应的mRNA的稳态水平在绿叶中比在黄化叶中高(约高8 - 10倍)。令人惊讶的是,根中存在不可忽略量的与T蛋白对应的mRNA,而编码H蛋白的mRNA则无法检测到。Western印迹分析表明,甘氨酸脱羧酶复合体的P、L和T蛋白存在于根中,而H蛋白无法检测到。与豌豆基因组DNA的Southern杂交表明,单倍体基因组中存在一个编码甘氨酸脱羧酶复合体T蛋白的基因。