亞洲知識產權資訊網為知識產權業界提供一個一站式網上交易平台,協助業界發掘知識產權貿易商機,並與環球知識產權業界建立聯繫。無論你是知識產權擁有者正在出售您的知識產權,或是製造商需要購買技術以提高操作效能,又或是知識產權配套服務供應商,你將會從本網站發掘到有用的知識產權貿易資訊。

Insect Cell Lines for Use in Baculovirus Expression Vector System (BEVS)

詳細技術說明
Introduction Most membrane proteins are not sufficiently abundant in nature to purify and crystallize, and gene expression systems have been unable to reliably express membrane proteins in sufficient quantities. The baculovirus expression vector system (BEVS) is one of the most widely used gene expression systems for eukaryotic proteins and is optimal for glycosylated protein expression in a cost-effective manner. BEVS has also been used to express some membrane proteins. Despite some success, however, many membrane proteins cannot be expressed at high enough levels for structural studies. One possible means for improving membrane expression using BEVS is to develop new cell lines with greater intrinsic ability for membrane protein synthesis.  Description of Technology Michigan State University’s invention is a new cell line derived from Trichoplusia ni embryos for use in BEVS known as TnT4. TnT4 has favorable growth characteristics for use in BEVS and expresses a human neurotensin receptor 1 (NTSR1), a model G-protein coupled receptor with the ability to express membrane proteins at higher levels. TnT4 cells have been shown to express the membrane-GFP-fusion protein at approximately twice the level of Sf21 cells, as evaluated by GFP intensity. They are susceptible to infection by Autographa californica nucleopolyhedrovirus (AcMNPV) and support its complete lifecycle, producing both BV and polyhedra. The cell line develops rapidly and can be grown in suspension culture, providing favorable growth characteristics for both research and drug development.  Key BenefitsFree of Latent NodavirusImproved membrane protein expression: Expression of the membrane-GFP-protein at levels twice that of the Sf21 cell line has been demonstrated. Compatible with existing BEVS technologies: The cell line can be used with little or no changes in current methodologies. Favorable growth: Grows in suspension culture with short doubling time.  ApplicationsDrug and vaccine development and production Diagnostic test development Insecticide development Three-dimensional structural protein research Licensing  This technology is licensed on a non-exclusive basis Patent Status U.S. Patent Issued: 8,383,402 Inventors Suzanne Thiem Tech ID TEC2008-0034
*Abstract
None
*Principal Investigation

Name: Suzanne Thiem, Associate Professor

Department: Entomology

國家/地區
美國

欲了解更多信息,請點擊 這裡
移動設備