| Literature DB >> 33985552 |
Yang Wang1, Chengjian Han1,2, Rongsheng Zhou2, Jinjin Zhu1, Famin Zhang1, Jingyang Li1,2, Qingli Luo1, Jian Du1,3, Deyong Chu1, Yihong Cai1,4, Jilong Shen1, Li Yu5.
Abstract
BACKGROUND: The predominant genotype of Toxoplasma in China is the Chinese 1 (ToxoDB#9) lineage. TgCtwh3 and TgCtwh6 are two representative strains of Chinese 1, exhibiting high and low virulence to mice, respectively. Little is known regarding the virulence mechanism of this non-classical genotype. Our previous RNA sequencing data revealed differential mRNA levels of TgMIC1 in TgCtwh3 and TgCtwh6. We aim to further confirm the differential expression of TgMIC1 and its significance in this atypical genotype.Entities:
Keywords: Invasion; Microneme protein 1; Polyclonal antibody; Toxoplasma gondii
Year: 2021 PMID: 33985552 PMCID: PMC8117571 DOI: 10.1186/s13071-021-04752-z
Source DB: PubMed Journal: Parasit Vectors ISSN: 1756-3305 Impact factor: 3.876
Fig. 1Quantitative real-time PCR analysis of TgMIC1, TgMIC4 and TgMIC6 mRNA expression in TgCtwh3 and TgCtwh6 strains. *p < 0.05, **p < 0.01 versus TgCtwh6 group. Data are represented as mean ± SD for three independent experiments
Fig. 2Optimization of TgMIC1 codon sequences. a Relative adaptiveness distribution of the original and optimized gene sequences. CAI > 0.9 is regarded as very good in terms of a high gene expression level. b The percentage distribution of codons in the original and optimized groups. A value of 100 is set for the codon with the highest usage frequency for a given amino acid in the desired expression organism. c Total GC content of the original and optimized genes. d Comparison of the mRNA secondary structure between the original and optimized groups
Fig. 3SDS-PAGE and western blot analysis of the rTgMIC1 protein. a Expression of pET30a-MIC1/BL21 in small amounts. Lane M: protein marker; lane 1–3: mono-clone picked from conversion plates after induction with IPTG; lane 4: uninduced control. b Large amounts of expression detection. Lane M: protein marker; lane 1: proteins in pET30a-MIC1/BL21 after induction with IPTG; lane 2: supernatant of pET30a-MIC1/BL21 bacteria after ultrasonication; lane 3: precipitation of pET30a-MIC1/BL21 bacteria after ultrasonication; lane 4: uninduced control. c Western blot analysis of the rTgMIC1. Lane M: protein marker; lane 1: rTgMIC1 detected by HIS monoclonal antibodies. d The rTgMIC1 purified by Ni2+-affinity chromatography. Lane M: protein marker; lane 1: 0.5 mg/ml BSA; lane 2: 1.0 mg/ml BSA; lane 3: purified rTgMIC1 proteins
Fig. 4Preparation and specific detection of TgMIC1 polyclonal antibody. a The titer of the purified TgMIC1 polyclonal antibody was detected by indirect ELISA. The titer is the dilution corresponding to the minimum OD reading greater than the maximum OD/2. b The purity of TgMIC1 polyclonal antibody indicated by SDS-PAGE. Lane M: protein marker; lane 1: heavy and light chains of the purified TgMIC1 polyclonal antibody. c Different recombinant bacteria from Toxoplasma proteins reacted with the TgMIC1 polyclonal antibody. Lane M: protein marker; lane 1: rTgMIC1; lane 2: pET30a-MIC1 bacteria; lane 3–5: pET30a-MIC4, pET30a-MIC6 and pET28a-ROP18, respectively. d The TgMIC1 polyclonal antibody reacted with proteins from different type of T. gondii strains and parasites. Lane M: protein marker; lane 1–6: RH, TgCtwh3, TgCtwh6, Plasmodium, and Schistosoma, respectively. e Confocal microscopy images showing the localization of TgMIC1 (red) in GFP-RH tachyzoites (green) challenges HFF cells for 24 h. DAPI (blue) was used to stain the nuclei. The scale bars are 10 µm
Fig. 5Differential expression of TgMIC1 protein in TgCtwh3 and TgCtwh6 strains. Total proteins extracted from TgCtwh3 and TgCtwh6 tachyzoites were examined for the expression of TgMIC1 by western blot analysis. Tgβ-actin was used as a reference protein to analyze the T. gondii protein quantitatively. *p < 0.05 versus TgCtwh6 group. Data are represented as mean ± SD for three independent experiments
Fig. 6TgMIC1 polyclonal antibody regulates parasite invasion and growth. a Representative images of invaded and attached tachyzoites with HFF cells. Infected HFF cells were incubated with TgGAP45 polyclonal antibody and then analyzed by immunofluorescence staining to evaluate the invasion rate of T. gondii. Extracellular (yellow) and intracellular (red) tachyzoites in merged pictures; DAPI (blue) was used to stain the nuclei. Scale bar, 10 μm. b Histogram of T. gondii invasion. The tachyzoites were counted under a microscope (200×). c Microscopy showing the growth of parasites in HFF monocytes. Scale bar, 5 μm. d The percentage of parasites/vacuole histogram; the tachyzoites were counted under a microscope (400). *p < 0.05, ***p < 0.001 versus TgCtwh3 group. Data are represented as mean ± SD for three independent experiments