Related Experiment Video
Updated: Apr 18, 2026

Utilizing Time-Resolved Protein-Induced Fluorescence Enhancement to Identify Stable Local Conformations One α-Synuclein Monomer at a Time
Published on: May 30, 2021
Hyperactivation Behavior of Site-Specifically Immobilized Fusion Protein of Lipase with α-Synuclein and
Ting Xu1, Baoxin Yang1, Ranran Guo1
1State Key Laboratory of Synthetic Biology, School of Synthetic Biology and Biomanufacturing, Frontiers Science Center for Synthetic Biology (MOE), and Key Laboratory of Systems Bioengineering (MOE), Tianjin University, Tianjin 300350, China.
Abstract:
Bacillus thermocatenulatus lipase 2 (BTL2) is a highly versatile enzyme for catalyzing the hydrolysis and synthesis of various esters, but the practical application of the enzyme is limited by its poor operational stability and difficulty in recovery. To address these limitations, we have herein proposed a dual fusion strategy that combines the chaperone-like protein α-synuclein (αS) at the C-terminus and silica-binding peptide (SiBP) at the N-terminus, making a fusion enzyme (SiBP-BTL2-αS) for enhanced enzymatic performance and site-specific immobilization on mesoporous silica nanoparticles (MSNs) for repeated use. The catalytic activity of the enzymes was evaluated using a colorimetric p-nitrophenyl palmitate (pNPP) assay at 30 °C in 50 mM HEPES buffer (pH 8.0), and relative activity was expressed as the ratio to the wild-type BTL2. It was found that free SiBP-BTL2-αS showed a 1.8-fold higher activity than BTL2 due to the chaperone effect of αS, and immobilization on MSNs brought out a further 1.4-fold increase in activity at an enzyme loading of 194 mg/g. Thus, SiBP-BTL2-αS@MSNs presented 3.3-fold higher activity than BTL2. Moreover, SiBP-BTL2-αS@MSNs exhibited significantly improved thermostability and broad pH tolerance over the free counterpart and BTL2. In repeated uses, SiBP-BTL2-αS@MSNs retained 82.1% of its initial activity after seven consecutive reaction cycles. In the synthesis of vitamin E succinate, SiBP-BTL2-αS@MSNs showed 32% and 78% higher yields over SiBP-BTL2-αS and BTL2, respectively, verifying the superiority of SiBP-BTL2-αS@MSNs in enzymatic catalysis. This work not only offers a highly efficient, robust, and recyclable enzyme preparation, but also provides a promising way to design immobilized lipase with hyperactivation behavior.
More Related Videos
09:16Exogenous Administration of Microsomes-associated Alpha-synuclein Aggregates to Primary Neurons As a Powerful Cell Model of Fibrils Formation
Published on: June 26, 2018
15:04Interactions with and Membrane Permeabilization of Brain Mitochondria by Amyloid Fibrils
Published on: September 28, 2019
Related Concept Videos
Ligand Binding and Linkage
Ligand Binding Sites
Protein-ligand interactions are quite specific; even though numerous potential ligands surround a cellular protein at any given time, only a particular ligand can bind to that protein. Moreover, a ligand binds only to a dedicated area on the surface of the protein, known as the...