Kulkarni Manjusha M, Olson Cheryl L, Engman David M, McGwire Bradford S
Division of Infectious Diseases and Center for Microbial Interface Biology, The Ohio State University, Biomedical Research Tower, Rm. 1012, 460 W. 12th Ave., Columbus, OH 43210-1240, USA.
Infect Immun. 2009 May;77(5):2193-200. doi: 10.1128/IAI.01542-08. Epub 2009 Mar 9.
The protozoan Trypanosoma cruzi expresses multiple isoforms of the GP63 family of metalloproteases. Polyclonal antiserum against recombinant GP63 of T. cruzi (TcGP63) was used to study TcGP63 expression and localization in this organism. Western blot analysis revealed that TcGP63 is 61 kDa in epimastigotes, amastigotes, and tissue culture-derived trypomastigotes but 55 kDa in metacyclic trypomastigotes. Antiserum specific for Leishmania amazonensis GP63 specifically reacted with a 55-kDa TcGP63 form in metacyclic trypomastigotes, suggesting stage-specific expression of different isoforms. Surface biotinylation and endoglycosidase digestion experiments showed that TcGP63 is an ecto-glycoprotein in epimastigotes but is intracellular and lacking in N-linked glycans in metacyclic trypomastigotes. Immunofluorescence microscopy showed that TcGP63 is localized on the surfaces of epimastigotes but distributed intracellularly in metacyclic trypomastigotes. TcGP63 is soluble in cold Triton X-100, in contrast to Leishmania GP63, which is detergent resistant in this medium, suggesting that GP63 is not raft associated in T. cruzi. Western blot comparison of our antiserum to a previously described anti-peptide TcGP63 antiserum indicates that each antiserum recognizes distinct TcGP63 proteins. Preincubation of trypomastigotes with either TcGP63 antiserum or a purified TcGP63 C-terminal subfragment reduced infection of host myoblasts. These results show that TcGP63 is expressed at all life stages and that individual isoforms play a role in host cell infection.
原生动物克氏锥虫表达金属蛋白酶GP63家族的多种同工型。利用针对克氏锥虫重组GP63(TcGP63)的多克隆抗血清来研究TcGP63在该生物体中的表达和定位。蛋白质免疫印迹分析显示,TcGP63在前鞭毛体、无鞭毛体和组织培养衍生的锥鞭毛体中为61 kDa,但在循环后期锥鞭毛体中为55 kDa。针对亚马逊利什曼原虫GP63的特异性抗血清与循环后期锥鞭毛体中55 kDa的TcGP63形式发生特异性反应,表明不同同工型存在阶段特异性表达。表面生物素化和内切糖苷酶消化实验表明,TcGP63在前鞭毛体中是一种胞外糖蛋白,但在循环后期锥鞭毛体中位于细胞内且缺乏N-连接聚糖。免疫荧光显微镜检查显示,TcGP63定位于前鞭毛体表面,但在循环后期锥鞭毛体中分布于细胞内。与利什曼原虫GP63不同,TcGP63可溶于冷的Triton X-100,利什曼原虫GP63在该培养基中具有去污剂抗性,这表明GP63在克氏锥虫中不与脂筏相关。将我们的抗血清与先前描述的抗肽TcGP63抗血清进行蛋白质免疫印迹比较表明,每种抗血清识别不同的TcGP63蛋白。用TcGP63抗血清或纯化的TcGP63 C末端亚片段对锥鞭毛体进行预孵育可降低宿主成肌细胞的感染。这些结果表明,TcGP63在所有生命阶段均有表达,且各个同工型在宿主细胞感染中发挥作用。