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3-磷酸甘油醛脱氢酶中一个意想不到的磷酸结合位点:微小隐孢子虫酶的无辅基、全酶和三元复合物的晶体结构

An unexpected phosphate binding site in glyceraldehyde 3-phosphate dehydrogenase: crystal structures of apo, holo and ternary complex of Cryptosporidium parvum enzyme.

作者信息

Cook William J, Senkovich Olga, Chattopadhyay Debasish

机构信息

Department of Pathology, University of Alabama at Birmingham, Birmingham, AL 35294, USA.

出版信息

BMC Struct Biol. 2009 Feb 25;9:9. doi: 10.1186/1472-6807-9-9.

Abstract

BACKGROUND

The structure, function and reaction mechanism of glyceraldehyde 3-phosphate dehydrogenase (GAPDH) have been extensively studied. Based on these studies, three anion binding sites have been identified, one 'Ps' site (for binding the C-3 phosphate of the substrate) and two sites, 'Pi' and 'new Pi', for inorganic phosphate. According to the original flip-flop model, the substrate phosphate group switches from the 'Pi' to the 'Ps' site during the multistep reaction. In light of the discovery of the 'new Pi' site, a modified flip-flop mechanism, in which the C-3 phosphate of the substrate binds to the 'new Pi' site and flips to the 'Ps' site before the hydride transfer, was proposed. An alternative model based on a number of structures of B. stearothermophilus GAPDH ternary complexes (non-covalent and thioacyl intermediate) proposes that in the ternary Michaelis complex the C-3 phosphate binds to the 'Ps' site and flips from the 'Ps' to the 'new Pi' site during or after the redox step.

RESULTS

We determined the crystal structure of Cryptosporidium parvum GAPDH in the apo and holo (enzyme + NAD) state and the structure of the ternary enzyme-cofactor-substrate complex using an active site mutant enzyme. The C. parvum GAPDH complex was prepared by pre-incubating the enzyme with substrate and cofactor, thereby allowing free movement of the protein structure and substrate molecules during their initial encounter. Sulfate and phosphate ions were excluded from purification and crystallization steps. The quality of the electron density map at 2A resolution allowed unambiguous positioning of the substrate. In three subunits of the homotetramer the C-3 phosphate group of the non-covalently bound substrate is in the 'new Pi' site. A concomitant movement of the phosphate binding loop is observed in these three subunits. In the fourth subunit the C-3 phosphate occupies an unexpected site not seen before and the phosphate binding loop remains in the substrate-free conformation. Orientation of the substrate with respect to the active site histidine and serine (in the mutant enzyme) also varies in different subunits.

CONCLUSION

The structures of the C. parvum GAPDH ternary complex and other GAPDH complexes demonstrate the plasticity of the substrate binding site. We propose that the active site of GAPDH can accommodate the substrate in multiple conformations at multiple locations during the initial encounter. However, the C-3 phosphate group clearly prefers the 'new Pi' site for initial binding in the active site.

摘要

背景

甘油醛-3-磷酸脱氢酶(GAPDH)的结构、功能及反应机制已得到广泛研究。基于这些研究,已确定了三个阴离子结合位点,一个“Ps”位点(用于结合底物的C-3磷酸基团)以及两个用于结合无机磷酸的位点,即“Pi”位点和“新Pi”位点。根据最初的翻转模型,在多步反应过程中,底物磷酸基团从“Pi”位点切换至“Ps”位点。鉴于“新Pi”位点的发现,有人提出了一种改进的翻转机制,即底物的C-3磷酸基团先结合至“新Pi”位点,并在氢化物转移之前翻转至“Ps”位点。另一种基于嗜热栖热菌GAPDH三元复合物(非共价和硫代酰基中间体)多种结构的模型提出,在三元米氏复合物中,C-3磷酸基团结合至“Ps”位点,并在氧化还原步骤期间或之后从“Ps”位点翻转至“新Pi”位点。

结果

我们确定了微小隐孢子虫GAPDH在无辅因子和全酶(酶 + NAD)状态下的晶体结构,以及使用活性位点突变酶得到的三元酶 - 辅因子 - 底物复合物的结构。微小隐孢子虫GAPDH复合物通过将酶与底物和辅因子预孵育来制备,从而在它们最初相遇时允许蛋白质结构和底物分子自由移动。在纯化和结晶步骤中排除了硫酸根和磷酸根离子。2埃分辨率的电子密度图质量使得能够明确底物的定位。在同四聚体的三个亚基中,非共价结合底物的C-3磷酸基团位于“新Pi”位点。在这三个亚基中观察到了磷酸结合环的伴随移动。在第四个亚基中,C-3磷酸基团占据了一个之前未见过的意外位点,并且磷酸结合环保持在无底物的构象。底物相对于活性位点组氨酸和丝氨酸(在突变酶中)的取向在不同亚基中也有所不同。

结论

微小隐孢子虫GAPDH三元复合物和其他GAPDH复合物的结构证明了底物结合位点的可塑性。我们提出,在最初相遇时,GAPDH的活性位点能够在多个位置以多种构象容纳底物。然而,C-3磷酸基团在活性位点最初结合时显然更倾向于“新Pi”位点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe98/2662861/70f9f14c1fdb/1472-6807-9-9-1.jpg

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