Imidazole-Grafted Nanogels for the Fabrication of Organic-Inorganic Protein Hybrids

被引:23
|
作者
Rodriguez-Abetxuko, Andoni [1 ]
Carmen Morant-Minana, Maria [1 ]
Lopez-Gallego, Fernando [2 ,3 ]
Yate, Luis [4 ,5 ]
Seifert, Andreas [1 ]
Knez, Mato [1 ]
Beloqui, Ana [1 ]
机构
[1] CICnanoGUNE, Av Tolosa 76, E-20018 Donostia San Sebastian, Spain
[2] ISQCH, C Pedro Cerbuna 12, E-50009 Zaragoza, Spain
[3] Fdn ARAID, Av Renillas 1, E-50018 Zaragoza, Spain
[4] CICbiomaGUNE, Paseo Miramon 182, E-20009 Donostia San Sebastian, Spain
[5] Basque Fdn Sci, Ikerbasque, Maria Diaz Haro 3, E-48013 Bilbao, Spain
关键词
biomineralization; nanobiohybrids; nanoflowers; protein stabilization; single enzyme nanogels; ENHANCED ENZYME-ACTIVITY; NUCLEATION MECHANISMS; FACILE SYNTHESIS; SINGLE-ENZYME; COPPER; NANOFLOWERS; FRAMEWORKS; STABILITY; ELECTRODEPOSITION; ENCAPSULATION;
D O I
10.1002/adfm.201803115
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Here, a platform for the development of highly responsive organic-inorganic enzyme hybrids is provided. The approach entails a first step of protein engineering, in which individual enzymes are armored with a porous nanogel decorated with imidazole motifs. In a second step, by mimicking the biomineralization mechanism, the assembly of the imidazole nanogels with CuSO4 and phosphate salts is triggered. A full characterization of the new composites reveals the first reported example in which the assembly mechanism is triggered by the sum of Cu(II)-imidazole interaction and Cu-3(PO4)(2) inorganic salt formation. It is demonstrated that the organic component of the hybrids, namely the imidazole-modified polyacrylamide hydrogel, provides a favorable spatial distribution for the enzyme. This results in enhanced conversion rates, robustness of the composite at low pH values, and a remarkable thermal stability at 65 degrees C, exhibiting 400% of the activity of the mineralized enzyme lacking the organic constituent. Importantly, unlike in previous works, the protocol applies to the use of a broad range of transition metal cations (including mono-, di-, and trivalent cations) to trigger the mineralization mechanism, which eventually broadens the chemical and structural diversity of organic-inorganic protein hybrids.
引用
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页数:9
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