Catherine Christy, Lee Seung-Won, Ju Jung Won, Kim Ho-Cheol, Shin Hyun-Il, Kim Yu Jung, Kim Dong-Myung
Department of Fine Chemical Engineering and Applied Chemistry, Chungnam National University, Daejeon 305-764, Korea.
Division of Malaria and Parasitic Diseases, National Institute of Health, Osong 361-951, Korea.
PLoS One. 2015 Nov 24;10(11):e0143597. doi: 10.1371/journal.pone.0143597. eCollection 2015.
Progress towards genetic sequencing of human parasites has provided the groundwork for a post-genomic approach to develop novel antigens for the diagnosis and treatment of parasite infections. To fully utilize the genomic data, however, high-throughput methodologies are required for functional analysis of the proteins encoded in the genomic sequences. In this study, we investigated cell-free expression and in situ immobilization of parasite proteins as a novel platform for the discovery of antigenic proteins. PCR-amplified parasite DNA was immobilized on microbeads that were also functionalized to capture synthesized proteins. When the microbeads were incubated in a reaction mixture for cell-free synthesis, proteins expressed from the microbead-immobilized DNA were instantly immobilized on the same microbeads, providing a physical linkage between the genetic information and encoded proteins. This approach of in situ expression and isolation enables streamlined recovery and analysis of cell-free synthesized proteins and also allows facile identification of the genes coding antigenic proteins through direct PCR of the microbead-bound DNA.
人类寄生虫基因测序的进展为采用后基因组方法开发用于诊断和治疗寄生虫感染的新型抗原奠定了基础。然而,为了充分利用基因组数据,需要高通量方法对基因组序列中编码的蛋白质进行功能分析。在本研究中,我们研究了寄生虫蛋白质的无细胞表达和原位固定,将其作为发现抗原性蛋白质的新型平台。通过PCR扩增的寄生虫DNA被固定在微珠上,这些微珠也经过功能化处理以捕获合成的蛋白质。当微珠在用于无细胞合成的反应混合物中孵育时,从固定在微珠上的DNA表达的蛋白质会立即固定在同一微珠上,从而在遗传信息和编码的蛋白质之间建立物理联系。这种原位表达和分离方法能够简化无细胞合成蛋白质的回收和分析,还能通过对与微珠结合的DNA进行直接PCR轻松鉴定编码抗原性蛋白质的基因。