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Cloning and Characterization of the IgA Fc Receptor from Swine
( Yumei Chen ),( Yunchao Liu ),( Gaiping Zhang ),( Hua Feng ),( Pengchao Ji ),( Guoqiang Wang ),( Chang Liu ),( Yapeng Song ),( Yunfang Su ),( Songlin Qiao ),( Aiping Wang ) 한국미생물 · 생명공학회 2016 Journal of microbiology and biotechnology Vol.26 No.12
The myeloid-specific IgA Fc receptor (FcαR) is a cell surface molecule on immunocytes that provides a fundamental connection between humoral and cellular immunity. In this study, the full-length cDNA sequence of swine FcαRI (swFcαRI) was isolated and characterized and found to contain a 792-base-pair open reading frame, encoding a 264-amino-acid transmembrane glycoprotein with a predicted molecular mass of 29.4 kDa. The swFcαRI shares high amino acid sequence homology (>50%) with its counterparts from cattle, seal, and horse. Rosetting analysis confirmed that COS-7 cells transfected with an swFcαRI expression plasmid was able to combine with chicken erythrocytes sensitized with porcine IgA, but not IgG.
Green and mild production of 5-aminolevulinic acid from algal biomass
Binglin Chen,Jiachen Li,Yunchao Feng,Kai Le,Yuxia Zai,Xing Tang,Yong Sun,Xianhai Zeng,Lu Lin 한국화학공학회 2021 Korean Journal of Chemical Engineering Vol.38 No.5
Algal biomass was converted into 5-aminolevulinic acid (5-ALA) in five chemical steps: conversion to 5- (chloromethyl)furfural (5-CMF), ammoniation, ring-opening (photo-oxidation), reduction, and hydrolyzation. Among them, we mainly focused on the 5-CMF production and the following ammoniation. To our knowledge, the mixed solvent catalytic system of deep eutectic solvent (DES) and low concentration hydrochloric acid is the first reported for the synthesis of 5-CMF from algal biomass, providing a 24.6% 5-CMF yield at 120 oC for 5 h. Potassium phthalimide (KPI) was employed as an ammoniation reagent with superb selectivity and activity instead of conventional sodium azide (NaN3). Optimizing the experimental design, a 23.7% 5-ALA yield along with high purity (>96%) was achieved from 5-CMF, and the total 5-ALA yield was 5.8% from algal biomass. This work provides a green and mild pathway for 5- ALA production from algal biomass.
Ting Wang,Junnan Wei,Huai Liu,Yunchao Feng,Xing Tang,Xianhai Zeng,Yong Sun,Tingzhou Lei,Lu Lin 한국공업화학회 2020 Journal of Industrial and Engineering Chemistry Vol.81 No.-
2, 5-Bishydroxymethylfuran (BHMF) has been currently emerged as a promising biomass-derivedmonomer. It is highly desirable to proceed a chemical process at a high substrate concentration, by whicha facile and cost-effective separation of products can be expected. Herein, we report for thefirst time onthe hydrogenation of highly concentrated 5-hydroxymethylfurfural (HMF) in deep eutectic solvents(DESs), giving a near quantitative selectivity towards BHMF in ChCl-glycerol DES at 25 C in 3 h usingNaBH4 as the H-donor. DES is hailed as a new class of green solvent, in which HMF/BHMF could bestabilized by the strong hydrogen-bond interaction, and allowed the selective hydrogenation of HMF athigh concentration up to 40 wt%. Notably, the resulting BHMF could be facilely separated by extractionwith ethyl acetate, and then high purity of BHMF with a desirable isolated yield around 80% was obtainedafter removing of ethyl acetate. Additionally, the reaction efficiency of HMF hydrogenation in DESs wasverified to be strongly associated with the viscosity of DESs and the pKa value of hydrogen-bonding donor.