Purushotham Sangeetha, Deivanayagam Champion
Department of Vision Sciences and Center for Structural Biology, CBSE/UAB University of Alabama at Birmingham, Birmingham, AL 35294-4400, United States.
Protein Expr Purif. 2013 Aug;90(2):67-73. doi: 10.1016/j.pep.2013.05.003. Epub 2013 May 22.
Glycoprotein 340 (gp340), an innate immunity molecule is secreted luminally by monolayered epithelia and associated glands within the human oral cavity. Gp340 contains 14 scavenger receptor cysteine rich (SRCR) domains, two CUB (C1r/C1s Uegf Bmp1) domains and one zona pellucida (ZP) domain. Oral streptococci are known to adhere to the tooth immobilized gp340 via its surface protein Antigen I/II (AgI/II), which is considered to be the critical first step in pathogenesis that eventually results in colonization and infection. In order to decipher the interactions between gp340's domains and oral streptococcal AgI/II domains, we undertook to express human gp340's first SRCR domain (SRCR1) and the first three tandem SRCR domains (SRCR123) in Drosophila S2 cells. While our initial attempts with human codons did not produce optimal results, codon-optimization for expression in Drosophila S2 cells and usage of inducible/secretory Drosophila expression system (DES) pMT/BiP/V5-HisA vector greatly enhanced the expression of the SRCR domains. Here we report the successful cloning, expression, and purification of the SRCR domains of gp340. Recognition of expressed SRCRs by the conformational dependent gp340 antibody indicate that these domains are appropriately folded and furthermore, surface plasmon resonance studies confirmed functional adherence of the SRCR domains to AgI/II.
糖蛋白340(gp340)是一种固有免疫分子,由人类口腔内的单层上皮细胞和相关腺体向管腔内分泌。Gp340包含14个富含清道夫受体半胱氨酸(SRCR)的结构域、两个CUB(C1r/C1s Uegf Bmp1)结构域和一个透明带(ZP)结构域。已知口腔链球菌通过其表面蛋白抗原I/II(AgI/II)黏附于固定在牙齿上的gp340,这被认为是发病机制中关键的第一步,最终导致定植和感染。为了解析gp340结构域与口腔链球菌AgI/II结构域之间的相互作用,我们着手在果蝇S2细胞中表达人类gp340的第一个SRCR结构域(SRCR1)和前三个串联的SRCR结构域(SRCR123)。虽然我们最初用人密码子进行的尝试未产生最佳结果,但对果蝇S2细胞表达进行密码子优化并使用诱导型/分泌型果蝇表达系统(DES)pMT/BiP/V5-HisA载体极大地增强了SRCR结构域的表达。在此我们报告gp340的SRCR结构域的成功克隆、表达和纯化。构象依赖性gp340抗体对表达的SRCR的识别表明这些结构域折叠正确,此外,表面等离子体共振研究证实了SRCR结构域与AgI/II的功能性黏附。