Ruszkowski Milosz, Sekula Bartosz, Ruszkowska Agnieszka, Dauter Zbigniew
Synchrotron Radiation Research Section of MCL, National Cancer Institute, Argonne, IL, United States.
Department of Chemistry & Biochemistry, University of Notre Dame, Notre Dame, IN, United States.
Front Plant Sci. 2018 May 11;9:584. doi: 10.3389/fpls.2018.00584. eCollection 2018.
Serine hydroxymethyltransferase (SHMT, EC 2.1.2.1) is a pyridoxal 5'-phosphate (PLP)-dependent enzyme which catalyzes the reversible serine-to-glycine conversion in either a tetrahydrofolate-dependent or -independent manner. The enzyme is also responsible for the tetrahydrofolate-independent cleavage of other β-hydroxy amino acids. In addition to being an essential player in the serine homeostasis, SHMT action is the main source of activated one-carbon units, which links SHMT activity with the control of cell proliferation. In plants, studies of SHMT enzymes are more complicated than of those of, e.g., bacterial or mammalian origins because plant genomes encode multiple SHMT isozymes that are targeted to different subcellular compartments: cytosol, mitochondria, plastids, and nucleus. Here we report crystal structures of chloroplast-targeted SHMT from (SHMT3). SHMT3 is a tetramer in solution, composed of two tight and obligate dimers. Our complexes with PLP internal aldimine, PLP-serine and PLP-glycine external aldimines, and PLP internal aldimine with a free glycine reveal structural details of the SHMT3-catalyzed reaction. Capturing the enzyme in different stages along the course of the slow tetrahydrofolate-independent serine-to-glycine conversion allowed to observe a unique conformation of the PLP-serine γ-hydroxyl group, and a concerted movement of two tyrosine residues in the active site.
丝氨酸羟甲基转移酶(SHMT,EC 2.1.2.1)是一种依赖于磷酸吡哆醛(PLP)的酶,它以四氢叶酸依赖或非依赖的方式催化丝氨酸向甘氨酸的可逆转化。该酶还负责其他β-羟基氨基酸的四氢叶酸非依赖性裂解。除了是丝氨酸稳态的重要参与者外,SHMT的作用还是活性一碳单位的主要来源,这将SHMT活性与细胞增殖的控制联系起来。在植物中,对SHMT酶的研究比对例如细菌或哺乳动物来源的酶的研究更为复杂,因为植物基因组编码多种靶向不同亚细胞区室(细胞质、线粒体、质体和细胞核)的SHMT同工酶。在此,我们报道了来自(SHMT3)的叶绿体靶向SHMT的晶体结构。SHMT3在溶液中是四聚体,由两个紧密且必然的二聚体组成。我们与PLP内部醛亚胺、PLP-丝氨酸和PLP-甘氨酸外部醛亚胺以及带有游离甘氨酸的PLP内部醛亚胺的复合物揭示了SHMT3催化反应的结构细节。在缓慢的四氢叶酸非依赖性丝氨酸向甘氨酸转化过程中捕捉处于不同阶段的酶,使得能够观察到PLP-丝氨酸γ-羟基的独特构象以及活性位点中两个酪氨酸残基的协同运动。