Tetlow Ian J, Wait Robin, Lu Zhenxiao, Akkasaeng Rut, Bowsher Caroline G, Esposito Sergio, Kosar-Hashemi Behjat, Morell Matthew K, Emes Michael J
Department of Botany, University of Guelph, Guelph, Ontario, N1G 2W1, Canada.
Plant Cell. 2004 Mar;16(3):694-708. doi: 10.1105/tpc.017400. Epub 2004 Feb 18.
Protein phosphorylation in amyloplasts and chloroplasts of Triticum aestivum (wheat) was investigated after the incubation of intact plastids with gamma-(32)P-ATP. Among the soluble phosphoproteins detected in plastids, three forms of starch branching enzyme (SBE) were phosphorylated in amyloplasts (SBEI, SBEIIa, and SBEIIb), and both forms of SBE in chloroplasts (SBEI and SBEIIa) were shown to be phosphorylated after sequencing of the immunoprecipitated (32)P-labeled phosphoproteins using quadrupole-orthogonal acceleration time of flight mass spectrometry. Phosphoamino acid analysis of the phosphorylated SBE forms indicated that the proteins are all phosphorylated on Ser residues. Analysis of starch granule-associated phosphoproteins after incubation of intact amyloplasts with gamma-(32)P-ATP indicated that the granule-associated forms of SBEII and two granule-associated forms of starch synthase (SS) are phosphorylated, including SSIIa. Measurement of SBE activity in amyloplasts and chloroplasts showed that phosphorylation activated SBEIIa (and SBEIIb in amyloplasts), whereas dephosphorylation using alkaline phosphatase reduced the catalytic activity of both enzymes. Phosphorylation and dephosphorylation had no effect on the measurable activity of SBEI in amyloplasts and chloroplasts, and the activities of both granule-bound forms of SBEII in amyloplasts were unaffected by dephosphorylation. Immunoprecipitation experiments using peptide-specific anti-SBE antibodies showed that SBEIIb and starch phosphorylase each coimmunoprecipitated with SBEI in a phosphorylation-dependent manner, suggesting that these enzymes may form protein complexes within the amyloplast in vivo. Conversely, dephosphorylation of immunoprecipitated protein complex led to its disassembly. This article reports direct evidence that enzymes of starch metabolism (amylopectin synthesis) are regulated by protein phosphorylation and indicate a wider role for protein phosphorylation and protein-protein interactions in the control of starch anabolism and catabolism.
用γ-(32)P-ATP孵育完整的质体后,对普通小麦(小麦)的造粉体和叶绿体中的蛋白质磷酸化进行了研究。在质体中检测到的可溶性磷蛋白中,造粉体中有三种形式的淀粉分支酶(SBE)被磷酸化(SBEI、SBEIIa和SBEIIb),使用四极杆-正交加速飞行时间质谱对免疫沉淀的(32)P标记磷蛋白进行测序后发现,叶绿体中的两种形式的SBE(SBEI和SBEIIa)也被磷酸化。对磷酸化的SBE形式进行的磷酸氨基酸分析表明,这些蛋白质均在丝氨酸残基上被磷酸化。用γ-(32)P-ATP孵育完整的造粉体后,对淀粉颗粒相关磷蛋白的分析表明,SBEII的颗粒相关形式和两种颗粒相关形式的淀粉合酶(SS)被磷酸化,包括SSIIa。对造粉体和叶绿体中SBE活性的测量表明,磷酸化激活了SBEIIa(以及造粉体中的SBEIIb),而使用碱性磷酸酶进行去磷酸化则降低了这两种酶的催化活性。磷酸化和去磷酸化对造粉体和叶绿体中SBEI的可测量活性没有影响,造粉体中两种颗粒结合形式的SBEII的活性也不受去磷酸化的影响。使用肽特异性抗SBE抗体进行的免疫沉淀实验表明,SBEIIb和淀粉磷酸化酶均以磷酸化依赖的方式与SBEI共免疫沉淀,这表明这些酶可能在体内造粉体内形成蛋白质复合物。相反,免疫沉淀的蛋白质复合物的去磷酸化导致其解体。本文报道了淀粉代谢(支链淀粉合成)酶受蛋白质磷酸化调控的直接证据,并表明蛋白质磷酸化和蛋白质-蛋白质相互作用在淀粉合成代谢和分解代谢控制中具有更广泛的作用。