원문정보
Microenvironmental Optimizaton of Immobilized Invertase for Methyl- β -D-Fructofuranoside Synthesis )
초록
영어
In order to enhance the selectivity, productivity and yield of methyl fructoside, which was synthesized by enzymatic glycosylation of sucrose and methanol solution, controlling of surface property of solid support using different immobilization procedures optimized microenvironment of immobilized invertase. Silanization and polyethylene imine coating methods were adopted to give a hydrophobic and hydrophilic environment of immobilized invertase. As a result, polyethyleneimine coating method gave higher loading of enzyme, effective activity, and relative activity than silanization method, because it brought on increasing the functional density of amino group and enhancing the conservation of activity by regulating of hydrophilicity. And then, hydrophilic environment was possible to restraint the assessing of methyl fructoside molecule, which was more hydrophobic than sucrose, fructose, and glucose molecule in the reaction mixture, into .the active site of immobilizedinvertase. Consequently, hydrophilic microenvironment of immobilized invertase by polyethyleneimine coating obtained higher yield and productivity with increasing conversion than silanized and native invertase. Thus, this procedure optimized the microenvironment of immobilized invertase suitable for the enzymatic synthesis of methyl fructoside.
목차
1. 서론
2. 이론적 배경
2.1 메틸 프럭토시드의 합성반응
3. 재료 및 방법
3.1 전화당 효소의 고정화
3.2 메틸 프럭토시드 생산성에 대한 담체 표면특성의 영향
3.3 최적 고정화 담체의 선정
4. 결과 및 고찰
4.1 고정화 효소의 유효 활성도와 상대 활성도에 대한 담체 표면특성의 영향
4.2 메틸 프럭토시드 생산성에 대한 담체 표면특성의 영향
4.3 담체표면 특성에 따른 고정화 전화당 효소의 Vm과 Km 비교
5. 결론
참고문헌