Wiefel Lars, Steinbüchel Alexander
Institut für Molekulare Mikrobiologie und Biotechnologie, Westfälische Wilhelms-Universität, Münster, Corrensstraße 3, 48149, Münster, Germany.
Environmental Science Department, King Abdulaziz University, 21589, Jeddah, Saudi Arabia.
Macromol Biosci. 2016 Jul;16(7):1064-71. doi: 10.1002/mabi.201500433. Epub 2016 Mar 8.
An increased structural variety expands the number of putative applications for cyanophycin (multi-l-arginyl-poly-[l-aspartic acid], CGP). Therefore, structural modifications of CGP are of major interest; these are commonly obtained by modification and optimization of the bacterial producing strain or by chemical modification. In this study, an enzymatic modification of arginine side chains from lysine-rich CGP is demonstrated using the peptidyl arginine deiminase from Oryctolagus cuniculus, purified from Escherichia coli after heterologous expression. About 10% of the arginine side chains are converted to citrulline which corresponds to 4% of the polymer's total side chains. An inhibition of the reaction in the presence of small amounts of l-citrulline is observed, thereby explaining the low conversion rate. CGP dipeptides can be modified with about 7.5 mol% of the Asp-Arg dipeptides being converted to Asp-Cit. These results show that the enzymatic modification of CGP is feasible, opening up a whole new area of possible CGP modifications for further research.
结构多样性的增加扩大了藻青素(多聚-L-精氨酰-聚-L-天冬氨酸,CGP)可能的应用范围。因此,CGP的结构修饰备受关注;这些修饰通常通过对产生菌进行修饰和优化或通过化学修饰来实现。在本研究中,利用从大肠杆菌中异源表达后纯化得到的穴兔肽基精氨酸脱亚氨酶,对富含赖氨酸的CGP的精氨酸侧链进行了酶促修饰。约10%的精氨酸侧链被转化为瓜氨酸,这相当于聚合物总侧链的4%。在存在少量L-瓜氨酸的情况下观察到反应受到抑制,从而解释了转化率较低的原因。CGP二肽可以被修饰,约7.5摩尔%的Asp-Arg二肽被转化为Asp-Cit。这些结果表明,CGP的酶促修饰是可行的,为进一步研究开辟了全新的CGP修饰领域。