Departamento de Biocatálisis, ICP-CSIC, Campus UAM-CSIC, 28049 Madrid, Spain.
Chemical Engineering Department, Campus do Pici, Federal University of Ceará, Bloco 709, Fortaleza CEP 60440-900, CE, Brazil.
Molecules. 2022 Nov 5;27(21):7587. doi: 10.3390/molecules27217587.
Penicillin G acylase (PGA) from was immobilized on vinyl sulfone (VS) agarose. The immobilization of the enzyme failed at all pH values using 50 mM of buffer, while the progressive increase of ionic strength permitted its rapid immobilization under all studied pH values. This suggests that the moderate hydrophobicity of VS groups is enough to transform the VS-agarose in a heterofunctional support, that is, a support bearing hydrophobic features (able to adsorb the proteins) and chemical reactivity (able to give covalent bonds). Once PGA was immobilized on this support, the PGA immobilization on VS-agarose was optimized with the purpose of obtaining a stable and active biocatalyst, optimizing the immobilization, incubation and blocking steps characteristics of this immobilization protocol. Optimal conditions were immobilization in 1 M of sodium sulfate at pH 7.0, incubation at pH 10.0 for 3 h in the presence of glycerol and phenyl acetic acid, and final blocking with glycine or ethanolamine. This produced biocatalysts with stabilities similar to that of the glyoxyl-PGA (the most stable biocatalyst of this enzyme described in literature), although presenting just over 55% of the initially offered enzyme activity versus the 80% that is recovered using the glyoxyl-PGA. This heterofuncionality of agarose VS beads opens new possibilities for enzyme immobilization on this support.
青霉素 G 酰化酶(PGA)从 被固定在乙烯砜(VS)琼脂糖上。在所有 pH 值下,使用 50mM 的缓冲液时,酶的固定化都失败了,而离子强度的逐渐增加允许在所有研究的 pH 值下快速固定化。这表明 VS 基团的中等疏水性足以将 VS-琼脂糖转化为杂功能支持物,即具有疏水性(能够吸附蛋白质)和化学反应性(能够形成共价键)的支持物。一旦 PGA 被固定在这种载体上,就可以优化 PGA 在 VS-琼脂糖上的固定化,以获得稳定且有活性的生物催化剂,优化固定化、孵育和封闭步骤,这些都是固定化方案的特征。最佳条件是在 pH7.0 下用 1M 硫酸钠进行固定化,在 pH10.0 下用甘油和苯乙酸孵育 3 小时,最后用甘氨酸或乙醇胺封闭。与文献中描述的最稳定的生物催化剂即乙二醛-PGA 相比,这些生物催化剂具有相似的稳定性,尽管其初始提供的酶活性仅超过 55%,而使用乙二醛-PGA 可回收 80%的酶活性。VS 琼脂糖珠的这种杂功能性为在这种载体上进行酶固定化开辟了新的可能性。