Yu Fengmei, Raheem Muhammad Akmal, Tan Yang, Rahim Muhammad Ajwad, Zha Lisha, Zhang Jun, Zhu Zhiwei, Li Zhonghua, Chen Fangfang
Key Laboratory of Veterinary Pathobiology and Disease Control, College of Animal Science and Technology, Anhui Agricultural University, Hefei 230036, China.
Institute of Biopharmaceutical and Health Engineering, Tsinghua Shenzhen International Graduate School, Tsinghua University, Shenzhen 518055, China.
Animals (Basel). 2023 Jan 23;13(3):387. doi: 10.3390/ani13030387.
Rab22a is an important small GTPase protein the molecule that is involved in intracellular transportation and regulation of proteins. It also plays an important role in antigens uptake, transportation, regulation of endosome morphology, and also regulates the transport of antigens to MHC (Major Histocompatibility Complex) molecules. To investigate the role of Rab22a, the intracellular co-localization of chicken Rab22a (cRab22a) molecule and its relationship to BF and chicken invariant chain (cIi) molecules was studied. A 3D protein structure of Rab22a was constructed by using informatics tools (DNASTAR 4.0 and DNAMAN). Based on the model, the corresponding recombinant eukaryotic plasmids were constructed by point mutations in the protein's structural domains. HEK 293T cells were co-transfected with plasmids pEGFP-C1-cIi to observe the intracellular co-localization. Secondly, the DC2.4 Mouse Dendritic Cell and Murine RAW 264.7 cells were transfected with recombinant plasmids of pmCherry-cRab22a and pmCherry-mRab22a respectively. Subsequently, the intracellular localization of cRab22a in early and late endosomes was observed with specific antibodies against EEA1 and LAMP1 respectively. For gene expression-based studies, the cRab22a gene was down-regulated and up-regulated in HD11 cells, following the detection of transcription levels of the BFa (MHCIa) and cIi genes by real-time quantitative PCR (RT-qPCR). The interactions of the cRab22a gene with BFa and cIi were detected by co-immunoprecipitation (Co-IP) and Western blot. The results showed that the protein structures of chicken and mouse Rab22a were highly homologous (95.4%), and both localize to the early and late endosomes. Ser41 and Tyr74 are key amino acids in the Switch regions of Rab22a which maintain its intracellular localization. The down-regulation of cRab22a gene expression significantly reduced ( < 0.01) the transcription of BFa (MHCIa) and cIi in HD11 cells. However, when the expression of the cRab22a gene was increased 55 times as compared to control cells, the expression of the BFa (MHCIa) gene was increased 1.7 times compared to the control cells ( < 0.01), while the expression of the cIi gene did not significantly differ from control ( > 0.05). Western blot results showed that cRab22a could not directly bind to BFa and cIi. So, cRab22a can regulate BFa and cIi protein molecules indirectly. It is concluded that cRab22a was localized with cIi in the endosome. The Switch regions of cRab22a are the key domains that affect intracellular localization and colocalization of the cIi molecule.
Rab22a是一种重要的小GTPase蛋白分子,参与细胞内运输和蛋白质调节。它在抗原摄取、运输、内体形态调节中也发挥着重要作用,还调节抗原向主要组织相容性复合体(MHC)分子的运输。为了研究Rab22a的作用,对鸡Rab22a(cRab22a)分子的细胞内共定位及其与BF和鸡不变链(cIi)分子的关系进行了研究。利用信息学工具(DNASTAR 4.0和DNAMAN)构建了Rab22a的三维蛋白质结构。基于该模型,通过对蛋白质结构域进行点突变构建了相应的重组真核质粒。将质粒pEGFP-C1-cIi共转染HEK 293T细胞以观察细胞内共定位。其次,分别用pmCherry-cRab22a和pmCherry-mRab22a重组质粒转染DC2.4小鼠树突状细胞和鼠RAW 264.7细胞。随后,分别用针对EEA1和LAMP1的特异性抗体观察cRab22a在早期和晚期内体中的细胞内定位。对于基于基因表达的研究,在HD11细胞中下调和上调cRab22a基因,然后通过实时定量PCR(RT-qPCR)检测BFa(MHCIa)和cIi基因的转录水平。通过免疫共沉淀(Co-IP)和蛋白质免疫印迹法检测cRab22a基因与BFa和cIi的相互作用。结果表明,鸡和小鼠Rab22a的蛋白质结构高度同源(95.4%),且都定位于早期和晚期内体。Ser41和Tyr74是Rab22a开关区域中的关键氨基酸,维持其细胞内定位。cRab22a基因表达下调显著降低(<0.01)HD11细胞中BFa(MHCIa)和cIi的转录。然而,当cRab22a基因的表达比对照细胞增加55倍时,BFa(MHCIa)基因的表达比对照细胞增加1.7倍(<0.01),而cIi基因的表达与对照无显著差异(>0.05)。蛋白质免疫印迹结果表明,cRab22a不能直接与BFa和cIi结合。因此,cRab22a可间接调节BFa和cIi蛋白分子。结论是,cRab22a与cIi在内体中共定位。cRab22a的开关区域是影响cIi分子细胞内定位和共定位的关键结构域。