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来自革兰氏阳性戈登链球菌表面蛋白表达系统的活性单体和二聚体核酸酶A的表达

Expression of active monomeric and dimeric nuclease A from the gram-positive Streptococcus gordonii surface protein expression system.

作者信息

Dutton E K, Ottum S A, Bolken T C, Franke C A, Hruby D E

机构信息

SIGA Research Laboratories, Suite 230, Corvallis, Oregon 97333, USA.

出版信息

Protein Expr Purif. 2000 Jun;19(1):158-72. doi: 10.1006/prep.2000.1223.

DOI:10.1006/prep.2000.1223
PMID:10833403
Abstract

We used the surface protein expression (SPEX) system to express an anchored and a secreted form of staphylococcal nuclease A (NucA) from gram-positive bacteria. NucA is a small ( approximately 18 kDa), extracellular, monomeric enzyme from Staphylococcus aureus. A deletion of amino acids 114-119 causes monomeric NucA to form homodimers. The DNA sequence encoding either wild-type or deletion mutant NucA was cloned via homologous recombination into Streptococcus gordonii. S. gordonii strains expressing either anchored or secreted, monomeric or dimeric NucA were isolated and tested for enzymatic activity using a novel fluorescence enzyme assay. We show that active monomeric and dimeric NucA enzyme can be expressed either anchored on the cell surface or secreted into the culture medium. The activity of the dimer NucA was approximately 100-fold less than the monomer. Secreted and anchored, monomeric NucA migrated on SDS-polyacrylamide gels at approximately 18 or approximately 30 kDa, respectively. In addition, similar to S. aureus NucA, the S. gordonii recombinant NucA enzyme was dependent on CaCl(2) and was heat stable. In contrast, however, the recombinant NucA activity was maximal at pH 7.0-7.5 whereas S. aureus NucA was maximal at pH 9.0. These results show, for the first time, expression of active enzyme and polymeric protein in secreted and anchored forms using SPEX. This further demonstrates the utility of this gram-positive surface protein expression system as a potential commensal bacterial delivery system for active, therapeutic enzymes, biopharmaceuticals, or vaccines.

摘要

我们使用表面蛋白表达(SPEX)系统来表达革兰氏阳性菌中葡萄球菌核酸酶A(NucA)的锚定形式和分泌形式。NucA是一种来自金黄色葡萄球菌的小蛋白(约18 kDa),为胞外单体酶。缺失氨基酸114 - 119会导致单体NucA形成同型二聚体。通过同源重组将编码野生型或缺失突变型NucA的DNA序列克隆到戈登链球菌中。分离出表达锚定或分泌的单体或二聚体NucA的戈登链球菌菌株,并使用一种新型荧光酶测定法检测其酶活性。我们发现活性单体和二聚体NucA酶既可以锚定在细胞表面表达,也可以分泌到培养基中。二聚体NucA的活性比单体低约100倍。分泌型和锚定型单体NucA在SDS - 聚丙烯酰胺凝胶上的迁移分子量分别约为18 kDa或约30 kDa。此外,与金黄色葡萄球菌NucA相似,戈登链球菌重组NucA酶依赖于CaCl₂且具有热稳定性。然而,相比之下,重组NucA的活性在pH 7.0 - 7.5时最高,而金黄色葡萄球菌NucA在pH 9.0时活性最高。这些结果首次表明,利用SPEX系统可以以分泌和锚定形式表达活性酶和聚合蛋白。这进一步证明了这种革兰氏阳性表面蛋白表达系统作为一种潜在的共生细菌递送系统,用于递送活性治疗酶、生物制药或疫苗的实用性。

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