Mayevska O, Shuvayeva H, Igumentseva N, Havrylov S, Basaraba O, Bobak Y, Barska M, Volod'ko N, Baranska J, Buchman V, Drobot L
Institute of Cell Biology, National Academy of Sciences of Ukraine, Lviv 79005, Ukraine.
Exp Oncol. 2006 Dec;28(4):275-81.
Development of monoclonal and polyclonal antibodies against recombinant GST-fused proteins including correspondingly N- and C-terminal parts of Ruk/CIN85 adaptor protein. Analysis of Ruk/CIN85 expression patterns in cell lines of various tissue origins and human melanoma.
Recombinant GST-fused fragments of Ruk/CIN85 were expressed in bacterial system and affinity purified. Monoclonal antibodies against SH3A domain of Ruk/CIN85 were produced using hybridoma technique. The specificity of generated antibodies was examined by ELISA. Polyclonal antibodies against C-terminal coiled-coil region of Ruk/CIN85 were affinity purified from serum of immunized rabbit. Expression patterns of Ruk/CIN85 isoforms and their subcellular localization in cell lines of various tissue origins and human melanoma samples were analyzed by immunoblotting, immunoprecipitation and immunofluorescence microcopy.
Ruk/CIN85 is ubiquitously expressed SH3-containing adaptor/scaffold protein which plays important roles in signalling processes. N-terminal half of Ruk/CIN85 molecule, including three SH3 domains, and its C-terminal coiled-coil region were used as antigens to produce monoclonal and polyclonal antibodies, respectively. Hybridoma cell lines secreting monoclonal antibodies (mAbs) to SH3 fragment of Ruk/CIN85 were established. One of the mAbs was extensively characterized and designated as MISh-A1. It was shown that this mAb recognizes an epitope, which resides within first SH3A domain. Polyclonal anti-Ruks Abs affinity purified from serum of immunized rabbit specifically recognized main Ruk/CIN85 isoforms, both endogenous and recombinant, in lysates of HEK293 cells. Notably, produced Abs did not cross-react with CD2AP, the member of the same family of adaptor/scaffold proteins. Multiple molecular forms of Ruk/CIN85 with apparent molecular weights of 130, 80-85, 70-75, 50-56, 34-40 and 29 kD were detected in cell lyzates of NIH3T3, Cos1, L1210, HEK293, Ramos, HeLa S3, MDCK, C6, A549 and U937 using anti-Ruk antibodies. Oligomerization between p85 and p50-56 forms of Ruk/CIN85 was revealed in C6 and NIH3T3 cells, but not in HeLa S3 and HEK293 cells by immunoprecipitation using MISh-A1 antibody following anti-Ruk Western-blot analysis. Using immunofluorescent microscopy and anti-Ruk antibodies, endogenous Ruk-variates were found mostly in cytoplasm of C6, NIH3T3, HEK293 cells and at lower level - in nuclei.
Patterns of Ruk/CIN85 molecular forms expression are cell-specific and determined by cellular context. Assembly of oligomeric complexes between p85 and p50-56 Ruk/CIN85 isoforms in C6 and NIH3T3 cells but not in HeLa S3 and HEK293 cells may reflect their specific biological roles in different cell lines. High level of full-length Rukl/CIN85 form expression was revealed in extracts of human melanoma samples. Abs described in this paper may prove useful in future studies of Ruk/CIN85 expression and function in normal and transformed cells.
开发针对重组GST融合蛋白的单克隆抗体和多克隆抗体,该融合蛋白包含Ruk/CIN85衔接蛋白相应的N端和C端部分。分析Ruk/CIN85在各种组织来源的细胞系和人类黑色素瘤中的表达模式。
Ruk/CIN85的重组GST融合片段在细菌系统中表达并进行亲和纯化。使用杂交瘤技术制备针对Ruk/CIN85的SH3A结构域的单克隆抗体。通过酶联免疫吸附测定(ELISA)检测所产生抗体的特异性。从免疫兔血清中亲和纯化针对Ruk/CIN85 C端卷曲螺旋区域的多克隆抗体。通过免疫印迹、免疫沉淀和免疫荧光显微镜分析Ruk/CIN85亚型在各种组织来源的细胞系和人类黑色素瘤样本中的表达模式及其亚细胞定位。
Ruk/CIN85是一种普遍表达的含SH3的衔接/支架蛋白,在信号传导过程中起重要作用。Ruk/CIN85分子的N端一半,包括三个SH3结构域,及其C端卷曲螺旋区域分别用作抗原以产生单克隆抗体和多克隆抗体。建立了分泌针对Ruk/CIN85的SH3片段的单克隆抗体(mAb)的杂交瘤细胞系。其中一种mAb经过广泛表征并命名为MISh-A1。结果表明,该mAb识别位于第一个SH3A结构域内的一个表位。从免疫兔血清中亲和纯化的多克隆抗Ruks抗体在HEK293细胞裂解物中特异性识别内源性和重组的主要Ruk/CIN85亚型。值得注意的是,所产生的抗体与同一家族的衔接/支架蛋白成员CD2AP没有交叉反应。使用抗Ruk抗体在NIH3T3、Cos1、L1210、HEK293、Ramos、HeLa S3、MDCK、C6、A549和U937细胞裂解物中检测到表观分子量为130、80 - 85、70 - 75、50 - 56、34 - 40和29 kD的多种Ruk/CIN85分子形式。在抗Ruk Western印迹分析后,使用MISh-A1抗体通过免疫沉淀在C6和NIH3T3细胞中揭示了Ruk/CIN85的p85和p50 - 56形式之间的寡聚化,但在HeLa S3和HEK293细胞中未发现。使用免疫荧光显微镜和抗Ruk抗体,发现内源性Ruk变体主要存在于C6、NIH3T3、HEK293细胞的细胞质中,在细胞核中的水平较低。
Ruk/CIN85分子形式的表达模式具有细胞特异性,并由细胞环境决定。C6和NIH3T3细胞中但不是HeLa S3和HEK293细胞中p85和p50 - 56 Ruk/CIN85亚型之间寡聚复合物的组装可能反映了它们在不同细胞系中的特定生物学作用。在人类黑色素瘤样本提取物中发现全长Rukl/CIN85形式的高水平表达。本文所述的抗体可能在未来对Ruk/CIN85在正常细胞和转化细胞中的表达和功能研究中证明有用。