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在丝氨酸棕榈酰转移酶中,第二种底物棕榈酰辅酶A的类似物对底物α-碳原子去质子化的加速作用。

Acceleration of the substrate Calpha deprotonation by an analogue of the second substrate palmitoyl-CoA in Serine Palmitoyltransferase.

作者信息

Ikushiro Hiroko, Fujii Shigeru, Shiraiwa Yuka, Hayashi Hideyuki

机构信息

Department of Biochemistry, Osaka Medical College, 2-7 Daigakumachi, Takatsuki, Osaka 569-8686.

出版信息

J Biol Chem. 2008 Mar 21;283(12):7542-53. doi: 10.1074/jbc.M706874200. Epub 2007 Dec 31.

Abstract

Serine palmitoyltransferase (SPT) is a key enzyme of sphingolipid biosynthesis and catalyzes the pyridoxal 5'-phosphate (PLP)-dependent decarboxylative condensation reaction of l-serine with palmitoyl-CoA to generate 3-ketodihydrosphingosine. The binding of l-serine alone to SPT leads to the formation of the external aldimine but does not produce a detectable amount of the quinonoid intermediate. However, the further addition of S-(2-oxoheptadecyl)-CoA, a nonreactive analogue of palmitoyl-CoA, caused the apparent accumulation of the quinonoid. NMR studies showed that the hydrogen-deuterium exchange at Calpha of l-serine is very slow in the SPT-l-serine external aldimine complex, but the rate is 100-fold increased by the addition of S-(2-oxoheptadecyl)-CoA, showing a remarkable substrate synergism in SPT. In addition, the observation that the nonreactive palmitoyl-CoA facilitated alpha-deprotonation indicates that the alpha-deprotonation takes place before the Claisen-type C-C bond formation, which is consistent with the accepted mechanism of the alpha-oxamine synthase subfamily enzymes. Structural modeling of both the SPT-l-serine external aldimine complex and SPT-l-serine-palmitoyl-CoA ternary complex suggests a mechanism in which the binding of palmitoyl-CoA to SPT induced a conformation change in the PLP-l-serine external aldimine so that the Calpha-H bond of l-serine becomes perpendicular to the plane of the PLP-pyridine ring and is favorable for the alpha-deprotonation. The model also proposed that the two alternative hydrogen bonding interactions of His(159) with l-serine and palmitoyl-CoA play an important role in the conformational change of the external aldimine. This is the unique mechanism of SPT that prevents the formation of the reactive intermediate before the binding of the second substrate.

摘要

丝氨酸棕榈酰转移酶(SPT)是鞘脂生物合成的关键酶,催化L-丝氨酸与棕榈酰辅酶A在磷酸吡哆醛(PLP)依赖性脱羧缩合反应,生成3-酮二氢鞘氨醇。单独的L-丝氨酸与SPT结合会导致外部醛亚胺的形成,但不会产生可检测量的醌型中间体。然而,进一步添加棕榈酰辅酶A的非反应性类似物S-(2-氧代十七烷基)-辅酶A会导致醌型中间体明显积累。核磁共振研究表明,在SPT-L-丝氨酸外部醛亚胺复合物中,L-丝氨酸α位的氢-氘交换非常缓慢,但添加S-(2-氧代十七烷基)-辅酶A后速率提高了100倍,表明SPT中存在显著的底物协同作用。此外,非反应性棕榈酰辅酶A促进α-去质子化的观察结果表明,α-去质子化发生在克莱森型碳-碳键形成之前,这与α-氧胺合酶亚家族酶的公认机制一致。SPT-L-丝氨酸外部醛亚胺复合物和SPT-L-丝氨酸-棕榈酰辅酶A三元复合物的结构模型表明,棕榈酰辅酶A与SPT的结合诱导了PLP-L-丝氨酸外部醛亚胺的构象变化,使得L-丝氨酸的α-H键垂直于PLP-吡啶环平面,有利于α-去质子化。该模型还提出,His(159)与L-丝氨酸和棕榈酰辅酶A的两种交替氢键相互作用在外部醛亚胺的构象变化中起重要作用。这是SPT的独特机制,可防止在第二个底物结合之前形成反应性中间体。

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