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Efficient and rapid digestion of proteins with a dual-enzyme microreactor featuring 3-D pores formed by dopamine/polyethyleneimine/acrylamide-coated KIT-6 molecular sieve.
Yuan, Fang-Fang; Wang, Pei; Han, Xiao-Jie; Qin, Ting-Ting; Lu, Xin; Bai, Hai-Jiao.
Affiliation
  • Yuan FF; Tianjin Institute for Drug Control, Tianjin, 300070, China.
  • Wang P; Tianjin Institute for Drug Control, Tianjin, 300070, China.
  • Han XJ; Tianjin Institute for Drug Control, Tianjin, 300070, China.
  • Qin TT; Tianjin Institute for Drug Control, Tianjin, 300070, China.
  • Lu X; Tianjin Institute for Drug Control, Tianjin, 300070, China.
  • Bai HJ; Tianjin Institute for Drug Control, Tianjin, 300070, China. bhjdxx@163.com.
Sci Rep ; 14(1): 15667, 2024 Jul 08.
Article in En | MEDLINE | ID: mdl-38977741
ABSTRACT
The microreactor with two types of immobilized enzymes, exhibiting excellent orthogonal performance, represents an effective approach to counteract the reduced digestion efficiency resulting from the absence of a single enzyme cleavage site, thereby impacting protein identification. In this study, we developed a hydrophilic dual-enzyme microreactor characterized by rapid mass transfer and superior enzymatic activity. Initially, we selected KIT-6 molecular sieve as the carrier for the dual-IMER due to its three-dimensional network pore structure. Modification involved co-deposition of polyethyleneimine (PEI) and acrylamide (AM) as amine donors, along with dopamine to enhance material hydrophilicity. Remaining amino and double bond functional groups facilitated stepwise immobilization of trypsin and Glu-C. Digestion times for bovine serum albumin (BSA) and bovine hemoglobin (BHb) on the dual-IMER were significantly reduced compared to solution-based digestion (1 min vs. 36 h), resulting in improved sequence coverage (91.30% vs. 82.7% for BSA; 90.24% vs. 89.20% for BHb). Additionally, the dual-IMER demonstrated excellent durability, retaining 96.08% relative activity after 29 reuse cycles. Enhanced protein digestion efficiency can be attributed to several factors (1) KIT-6's large specific surface area, enabling higher enzyme loading capacity; (2) Its three-dimensional network pore structure, facilitating faster mass transfer and substance diffusion; (3) Orthogonality of trypsin and Glu-C enzyme cleavage sites; (4) The spatial effect introduced by the chain structure of PEI and glutaraldehyde's spacing arm, reducing spatial hindrance and enhancing enzyme-substrate interactions; (5) Mild and stable enzyme immobilization. The KIT-6-based dual-IMER offers a promising technical tool for protein digestion, while the PDA/PEI/AM-KIT-6 platform holds potential for immobilizing other proteins or active substances.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Polyethyleneimine / Serum Albumin, Bovine / Trypsin / Dopamine / Acrylamide / Enzymes, Immobilized Limits: Animals Language: En Journal: Sci Rep Year: 2024 Document type: Article Affiliation country: China

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Polyethyleneimine / Serum Albumin, Bovine / Trypsin / Dopamine / Acrylamide / Enzymes, Immobilized Limits: Animals Language: En Journal: Sci Rep Year: 2024 Document type: Article Affiliation country: China
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