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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Amide bond hydrolysis in peptides and cyclic peptides catalyzed by a dimeric Zr(iv)-substituted Keggin type polyoxometalate
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Amide bond hydrolysis in peptides and cyclic peptides catalyzed by a dimeric Zr(iv)-substituted Keggin type polyoxometalate

机译:Zr(iv)取代的Keggin型多金属氧酸盐催化的肽和环肽中的酰胺键水解

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Detailed kinetic studies on the hydrolysis of glycylserine (Gly-Ser) and glycylglycine (Gly-Gly) in the presence of the dimeric zirconium(iv)-substituted Keggin type polyoxometalate (Et_2NH_2)_8[{α -PW_(11)O_(39)Zr(μ-OH)(H_2O)}_2] ·7H_2O (1) were performed by a combination of ~1H, ~(13)C and ~(31)P NMR spectroscopy. The observed rate constants for the hydrolysis of Gly-Ser and Gly-Gly at pD 5.4 and 60 °C were 63.3 × 10~(-7) s~(-1) and 4.44 × 10~(-7) s ~(-1) respectively, representing a significant acceleration as compared to the uncatalyzed reactions. The pD dependence of the rate constant for both reactions exhibited a bell-shaped profile with the fastest hydrolysis observed in the pD range of 5.5-6.0. Interaction of 1 with Gly-Ser and Gly-Gly via their amine nitrogen and amide oxygen was proven by ~(13)C NMR spectroscopy. The effective hydrolysis of Gly-Ser in the presence of 1 is most likely a combination of the polarization of the amide oxygen due to its binding to the Zr(iv) ion in 1 and the intramolecular attack of the Ser hydroxyl group on the amide carbonyl carbon. The effect of temperature, inhibitors, and ionic strength on the hydrolysis rate constant was also examined. The solution structure of 1 was investigated by means of ~(31)P NMR spectroscopy, revealing that its stability is highly dependent on pH, concentration and temperature. A 2.0 mM solution of 1 was found to be fully stable under hydrolytic conditions (pD 5.4 and 60 °C) both in the presence and in the absence of the dipeptides. This journal is
机译:在二聚物锆(iv)取代的Keggin型多金属氧酸盐(Et_2NH_2)_8 [{α-PW_(11)O_(39)的存在下,水解甘氨酰丝氨酸(Gly-Ser)和甘氨酰甘氨酸(Gly-Gly)的详细动力学研究Zr(μ-OH)(H_2O)} _ 2]·7H_2O(1)通过〜1H,〜(13)C和〜(31)P NMR光谱组合进行。在5.4和60°C下观察到的Gly-Ser和Gly-Gly水解速率常数为63.3×10〜(-7)s〜(-1)和4.44×10〜(-7)s〜(- 1)分别表示与未催化反应相比的显着加速。两个反应速率常数的pD依赖性显示出钟形轮廓,在5.5-6.0的pD范围内观察到最快的水解。 〜(13)C NMR光谱证实了1与Gly-Ser和Gly-Gly通过其胺氮和酰胺氧的相互作用。在1存在下Gly-Ser的有效水解很可能是酰胺氧的极化的结合,这是由于它与1中的Zr(iv)离子结合以及Ser羟基对酰胺羰基的分子内攻击碳。还研究了温度,抑制剂和离子强度对水解速率常数的影响。 1的溶液结构通过〜(31)P NMR光谱进行了研究,表明其稳定性高度依赖于pH值,浓度和温度。发现在存在和​​不存在二肽的情况下,在水解条件下(pD 5.4和60°C),2.0 mM的1溶液都是完全稳定的。这本日记是

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