首页> 外文期刊>Biochemistry >Role of hydrophobic partitioning in substrate selectivity and turnover of the ricinus communis stearoyl acyl carrier protein delta(9) desaturase.
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Role of hydrophobic partitioning in substrate selectivity and turnover of the ricinus communis stearoyl acyl carrier protein delta(9) desaturase.

机译:疏水分区在底物选择性和蓖麻蓖麻油硬脂酰基酰基载体蛋白delta(9)去饱和酶的营业额中的作用。

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摘要

Stearoyl acyl carrier protein Delta(9) desaturase (Delta9D) uses a diiron center to catalyze the NADPH- and O(2)-dependent desaturation of stearoyl acyl carrier protein (ACP) to form oleoyl-ACP. The reaction of recombinant Ricinus communis Delta9D with natural and nonnatural chain length acyl-ACPs was used to examine the coupling of the reconstituted enzyme complex, the specificity for position of double-bond insertion, the kinetic parameters for the desaturation reaction, and the selectivity for acyl chain length. The coupling of NADPH and O(2) consumption and olefin production was found to be maximal for 18:0-ACP, and the loss of coupling observed for the more slowly desaturated acyl-ACPs was attributed to autoxidation of the electron-transfer chain. Analysis of steady-state kinetic parameters for desaturation of acyl-ACPs having various acyl chain lengths revealed that the K(M) values were similar ( approximately 2.5-fold difference) for 15:0-18:0-ACP, while the k(cat) values increased by approximately 26-fold for the same range of acyl chain lengths. A linear increase in log (k(cat)/K(M)) was observed upon lengthening of the acyl chain from 15:0- to 18:0-ACP, while no further increase was observed for 19:0-ACP. The similarity of the k(cat)/K(M) values for 18:0- and 19:0-ACPs and the retained preference for double-bond insertion at the Delta(9) position with 19:0-ACP (>98% desaturation at the Delta(9) position) suggest that the active-site channel past the diiron center can accommodate at least one more methylene group than is found in the natural substrate. The DeltaDeltaG(binding) estimated from the change in k(cat)/K(M) for increasing substrate acyl-chain length was -3 kJ/mol per methylene group, similar to the value of -3.5 kJ/mol estimated for the hydrophobic partition of long-chain fatty acids (C-7 to C-21) from water to heptane [Smith, R. , and Tanford, C. (1973) Proc. Natl. Acad. Sci. U.S.A. 70, 289-293]. Since the K(M) values are overall similar for all acyl-ACPs tested, the progressive increase in hydrophobic binding energy available from increased chain length is apparently utilized to enhance catalytic steps, which thus provides the underlying physical mechanism for acyl chain selectivity observed with Delta9D.
机译:硬脂酰基酰基载体蛋白Delta(9)去饱和酶(Delta9D)使用二铁中心催化NADPH和O(2)依赖性的硬脂酰基酰基载体蛋白(ACP)的去饱和形成油酰基ACP。重组蓖麻(Ricinus communis)Delta9D与天然和非天然链长酰基-ACP的反应用于检测重组酶复合物的偶联,双键插入位置的特异性,去饱和反应的动力学参数以及对酰基链长度。对于18:0-ACP,发现NADPH和O(2)消耗量与烯烃生产的偶联最大,而观察到的较慢去饱和的酰基-ACP偶联的损失归因于电子转移链的自氧化。分析具有各种酰基链长度的酰基ACP脱饱和的稳态动力学参数表明,对于15:0-18:0-ACP,K(M)值相似(相差约2.5倍),而k(M对于相同范围的酰基链长度,Cat)值增加了约26倍。在酰基链从15:0-延长到18:0-ACP时,观察到log的线性增加(k(cat)/ K(M)),而19:0-ACP则没有观察到进一步的增加。 18:0-和19:0-ACP的k(cat)/ K(M)值的相似性以及在19:0-ACP(> 98时在Delta(9)位置保留双键插入的保留偏好)在Delta(9)位置的去饱和百分率%)表明,穿过二恶铁中心的活性位点通道可以容纳比天然底物中至少多一个的亚甲基。通过增加底物酰基链长度的k(cat)/ K(M)的变化估算的DeltaDeltaG(结合)为-3 kJ / mol /亚甲基,类似于疏水基的-3.5 kJ / mol的估算值将长链脂肪酸(C-7至C-21)从水分配到庚烷中[Smith,R.和Tanford,C.(1973)Proc.Natl.Acad.Sci.USA,87:3587-5877。 Natl。学院科学U.S.A. 70,289-293]。由于所有测试的酰基ACP的K(M)值总体上相似,因此显然可以利用增加链长得到的疏水结合能的逐步增加来增强催化步骤,从而为观察到的酰基链选择性提供了潜在的物理机理。 Delta9D。

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