1.Bioinformatics analysis of the RNA binding protein DDX39 of Toxoplasma gondii.
Z YANG ; J WANG ; Y QI ; X TIAN ; X MEI ; Z ZHANG ; S WANG
Chinese Journal of Schistosomiasis Control 2023;35(4):358-365
OBJECTIVE:
To analyze the RNA binding protein of Toxoplasma gondii (TgDDX39) using bioinformatics technology, and to evaluate the immunogenicity of TgDDX39, so as to provide insights into development of toxoplasmosis vaccines.
METHODS:
The amino acid sequences of TgDDX39 were retrieved from the ToxoDB database, and the physicochemical properties, transmembrane structure domain, signal peptide sites, post-translational modification sites, coils, secondary and tertiary structures, hydrophobicity, and antigenic epitopes of the TgDDX39 protein were predicted using online bioinformatics tools, incluiding ProtParam, TMHMM 2.0, SignalP 5.0, NetPhos 3.1, COILS, SOPMA, Phyre2, ProtScale, ABCpred, SYFPEITHI and DNA-STAR.
RESULTS:
TgDDX39 protein was predicted to be an unstable hydrophilic protein with the molecular formula of C2173H3458N598O661S18, which contained 434 amino acids and had an estimated molecular weight of 49.1 kDa and a theoretical isoelectric point of 5.55. The protein was predicted to have an extremely low possibility of signal peptides, without transmembrane regions, and contain 27 phosphorylation sites. The β turn and random coils accounted for 39.63% of the secondary structure of the TgDDX39 protein, and a coiled helix tended to produce in one site. In addition, the TgDDX39 protein contained multiple B and T cell antigenic epitopes.
CONCLUSIONS
Bioinformatics analyses predict that TgDDX39 protein has high immunogenicity and contains multiple antigenic epitopes. TgDDX39 protein is a potential candidate antigen for vaccine development.
Humans
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Toxoplasma/metabolism*
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Toxoplasmosis/prevention & control*
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Vaccines
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Epitopes, T-Lymphocyte
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Computational Biology
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Protozoan Proteins/chemistry*
2.Identification of Immunodominant B-cell Epitope Regions of Reticulocyte Binding Proteins in Plasmodium vivax by Protein Microarray Based Immunoscreening.
Jin Hee HAN ; Jian LI ; Bo WANG ; Seong Kyun LEE ; Myat Htut NYUNT ; Sunghun NA ; Jeong Hyun PARK ; Eun Taek HAN
The Korean Journal of Parasitology 2015;53(4):403-411
Plasmodium falciparum can invade all stages of red blood cells, while Plasmodium vivax can invade only reticulocytes. Although many P. vivax proteins have been discovered, their functions are largely unknown. Among them, P. vivax reticulocyte binding proteins (PvRBP1 and PvRBP2) recognize and bind to reticulocytes. Both proteins possess a C-terminal hydrophobic transmembrane domain, which drives adhesion to reticulocytes. PvRBP1 and PvRBP2 are large (> 326 kDa), which hinders identification of the functional domains. In this study, the complete genome information of the P. vivax RBP family was thoroughly analyzed using a prediction server with bioinformatics data to predict B-cell epitope domains. Eleven pvrbp family genes that included 2 pseudogenes and 9 full or partial length genes were selected and used to express recombinant proteins in a wheat germ cell-free system. The expressed proteins were used to evaluate the humoral immune response with vivax malaria patients and healthy individual serum samples by protein microarray. The recombinant fragments of 9 PvRBP proteins were successfully expressed; the soluble proteins ranged in molecular weight from 16 to 34 kDa. Evaluation of the humoral immune response to each recombinant PvRBP protein indicated a high antigenicity, with 38-88% sensitivity and 100% specificity. Of them, N-terminal parts of PvRBP2c (PVX_090325-1) and PvRBP2 like partial A (PVX_090330-1) elicited high antigenicity. In addition, the PvRBP2-like homologue B (PVX_116930) fragment was newly identified as high antigenicity and may be exploited as a potential antigenic candidate among the PvRBP family. The functional activity of the PvRBP family on merozoite invasion remains unknown.
Epitopes, B-Lymphocyte/*chemistry/genetics/*immunology
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Female
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Humans
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Immunodominant Epitopes/chemistry/genetics/*immunology
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Malaria, Vivax/immunology/*parasitology
;
Middle Aged
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Plasmodium vivax/chemistry/genetics/*immunology
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Protein Structure, Tertiary
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Protozoan Proteins/chemistry/genetics/*immunology
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Reticulocytes/*parasitology
3.Occurrence and Molecular Identification of Giardia duodenalis from Stray Cats in Guangzhou, Southern China.
Guochao ZHENG ; Wei HU ; Yuanjia LIU ; Qin LUO ; Liping TAN ; Guoqing LI
The Korean Journal of Parasitology 2015;53(1):119-124
The objective of this study was to genetically characterize isolates of Giardia duodenalis and to determine if zoonotic potential of G. duodenalis could be found in stray cats from urban and suburban environments in Guangzhou, China. Among 102 fresh fecal samples of stray cats, 30 samples were collected in Baiyun district (urban) and 72 in Conghua district (suburban). G. duodenalis specimens were examined using light microscopy, then the positive specimens were subjected to PCR amplification and subsequent sequencing at 4 loci such as glutamate dehydrogenase (gdh), triose phosphate isomerase (tpi), beta-giardin (bg), and small subunit ribosomal RNA (18S rRNA) genes. The phylogenetic trees were constructed using obtained sequences by MEGA5.2 software. Results show that 9.8% (10/102) feline fecal samples were found to be positive by microscopy, 10% (3/30) in Baiyun district and 9.7% (7/72) in Conghua district. Among the 10 positive samples, 9 were single infection (8 isolates, assemblage A; 1 isolate, assemblage F) and 1 sample was mixed infection with assemblages A and C. Based on tpi, gdh, and bg genes, all sequences of assemblage A showed complete homology with AI except for 1 isolate (CHC83). These findings not only confirmed the occurrence of G. duodenalis in stray cats, but also showed that zoonotic assemblage A was found for the first time in stray cats living in urban and suburban environments in China.
Animals
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Cat Diseases/*parasitology
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Cats
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China
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Cluster Analysis
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DNA, Protozoan/chemistry/genetics
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DNA, Ribosomal/chemistry/genetics
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Feces/parasitology
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Giardia lamblia/*classification/cytology/genetics/*isolation & purification
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Giardiasis/parasitology/*veterinary
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Microscopy
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Molecular Sequence Data
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Phylogeny
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Protozoan Proteins/genetics
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RNA, Ribosomal, 18S/genetics
;
Sequence Analysis, DNA
4.Occurrence and Molecular Identification of Giardia duodenalis from Stray Cats in Guangzhou, Southern China.
Guochao ZHENG ; Wei HU ; Yuanjia LIU ; Qin LUO ; Liping TAN ; Guoqing LI
The Korean Journal of Parasitology 2015;53(1):119-124
The objective of this study was to genetically characterize isolates of Giardia duodenalis and to determine if zoonotic potential of G. duodenalis could be found in stray cats from urban and suburban environments in Guangzhou, China. Among 102 fresh fecal samples of stray cats, 30 samples were collected in Baiyun district (urban) and 72 in Conghua district (suburban). G. duodenalis specimens were examined using light microscopy, then the positive specimens were subjected to PCR amplification and subsequent sequencing at 4 loci such as glutamate dehydrogenase (gdh), triose phosphate isomerase (tpi), beta-giardin (bg), and small subunit ribosomal RNA (18S rRNA) genes. The phylogenetic trees were constructed using obtained sequences by MEGA5.2 software. Results show that 9.8% (10/102) feline fecal samples were found to be positive by microscopy, 10% (3/30) in Baiyun district and 9.7% (7/72) in Conghua district. Among the 10 positive samples, 9 were single infection (8 isolates, assemblage A; 1 isolate, assemblage F) and 1 sample was mixed infection with assemblages A and C. Based on tpi, gdh, and bg genes, all sequences of assemblage A showed complete homology with AI except for 1 isolate (CHC83). These findings not only confirmed the occurrence of G. duodenalis in stray cats, but also showed that zoonotic assemblage A was found for the first time in stray cats living in urban and suburban environments in China.
Animals
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Cat Diseases/*parasitology
;
Cats
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China
;
Cluster Analysis
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DNA, Protozoan/chemistry/genetics
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DNA, Ribosomal/chemistry/genetics
;
Feces/parasitology
;
Giardia lamblia/*classification/cytology/genetics/*isolation & purification
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Giardiasis/parasitology/*veterinary
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Microscopy
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Molecular Sequence Data
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Phylogeny
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Protozoan Proteins/genetics
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RNA, Ribosomal, 18S/genetics
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Sequence Analysis, DNA
5.Sequence Variation in Superoxide Dismutase Gene of Toxoplasma gondii among Various Isolates from Different Hosts and Geographical Regions.
Shuai WANG ; Aiping CAO ; Xun LI ; Qunli ZHAO ; Yuan LIU ; Hua CONG ; Shenyi HE ; Huaiyu ZHOU
The Korean Journal of Parasitology 2015;53(3):253-258
Toxoplasma gondii, an obligate intracellular protozoan parasite of the phylum Apicomplexa, can infect all warm-blooded vertebrates, including humans, livestock, and marine mammals. The aim of this study was to investigate whether superoxide dismutase (SOD) of T. gondii can be used as a new marker for genetic study or a potential vaccine candidate. The partial genome region of the SOD gene was amplified and sequenced from 10 different T. gondii isolates from different parts of the world, and all the sequences were examined by PCR-RFLP, sequence analysis, and phylogenetic reconstruction. The results showed that partial SOD gene sequences ranged from 1,702 bp to 1,712 bp and A + T contents varied from 50.1% to 51.1% among all examined isolates. Sequence alignment analysis identified total 43 variable nucleotide positions, and these results showed that 97.5% sequence similarity of SOD gene among all examined isolates. Phylogenetic analysis revealed that these SOD sequences were not an effective molecular marker for differential identification of T. gondii strains. The research demonstrated existence of low sequence variation in the SOD gene among T. gondii strains of different genotypes from different hosts and geographical regions.
Amino Acid Sequence
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Animals
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Base Sequence
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Cats
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*Genetic Variation
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Goats
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Humans
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Molecular Sequence Data
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Phylogeny
;
Protozoan Proteins/chemistry/*genetics/metabolism
;
Sequence Alignment
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Sheep
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Superoxide Dismutase/chemistry/*genetics/metabolism
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Toxoplasma/classification/*enzymology/genetics/isolation & purification
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Toxoplasmosis/*parasitology
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Toxoplasmosis, Animal/*parasitology
6.Sequence Diversity in MIC6 Gene among Toxoplasma gondii Isolates from Different Hosts and Geographical Locations.
Zhong Yuan LI ; Hui Qun SONG ; Jia CHEN ; Xing Quan ZHU
The Korean Journal of Parasitology 2015;53(3):341-344
Toxoplasma gondii is an opportunistic protozoan parasite that can infect almost all warm-blooded animals including humans with a worldwide distribution. Micronemes play an important role in invasion process of T. gondii, associated with the attachment, motility, and host cell recognition. In this research, sequence diversity in microneme protein 6 (MIC6) gene among 16 T. gondii isolates from different hosts and geographical regions and 1 reference strain was examined. The results showed that the sequence of all the examined T. gondii strains was 1,050 bp in length, and their A + T content was between 45.7% and 46.1%. Sequence analysis presented 33 nucleotide mutation positions (0-1.1%), resulting in 23 amino acid substitutions (0-2.3%) aligned with T. gondii RH strain. Moreover, T. gondii strains representing the 3 classical genotypes (Type I, II, and III) were separated into different clusters based on the locus of MIC6 using phylogenetic analyses by Bayesian inference (BI), maximum parsimony (MP), and maximum likelihood (ML), but T. gondii strains belonging to ToxoDB #9 were separated into different clusters. Our results suggested that MIC6 gene is not a suitable marker for T. gondii population genetic studies.
Amino Acid Sequence
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Animals
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Base Sequence
;
Cats
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Cell Adhesion Molecules/chemistry/*genetics/metabolism
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Deer
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*Genetic Variation
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Genotype
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Goats
;
Humans
;
Molecular Sequence Data
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Phylogeny
;
Protozoan Proteins/chemistry/*genetics/metabolism
;
Sequence Alignment
;
Sheep
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Swine
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Toxoplasma/classification/*genetics/isolation & purification/physiology
;
Toxoplasmosis/*parasitology
;
Toxoplasmosis, Animal/*parasitology
7.Cloning and Iron Transportation of Nucleotide Binding Domain of Cryptosporidium andersoni ATP-Binding Cassette (CaABC) Gene.
Ju Hua WANG ; Xiu Heng XUE ; Jie ZHOU ; Cai Yun FAN ; Qian Qian XIE ; Pan WANG
The Korean Journal of Parasitology 2015;53(3):335-339
Cryptosporidium andersoni ATP-binding cassette (CaABC) is an important membrane protein involved in substrate transport across the membrane. In this research, the nucleotide binding domain (NBD) of CaABC gene was amplified by PCR, and the eukaryotic expression vector of pEGFP-C1-CaNBD was reconstructed. Then, the recombinant plasmid of pEGFP-C1-CaNBD was transformed into the mouse intestinal epithelial cells (IECs) to study the iron transportation function of CaABC. The results indicated that NBD region of CaABC gene can significantly elevate the transport efficiency of Ca2+, Mg2+, K+, and HCO3 - in IECs (P<0.05). The significance of this study is to find the ATPase inhibitors for NBD region of CaABC gene and to inhibit ATP binding and nutrient transport of CaABC transporter. Thus, C. andersoni will be killed by inhibition of nutrient uptake. This will open up a new way for treatment of cryptosporidiosis.
ATP-Binding Cassette Transporters/*chemistry/*genetics/metabolism
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Adenosine Triphosphate/metabolism
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Amino Acid Sequence
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Animals
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Calcium/metabolism
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*Cloning, Molecular
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Cryptosporidiosis/parasitology
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Cryptosporidium/chemistry/genetics/*metabolism
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Humans
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Iron/metabolism
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Mice
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Molecular Sequence Data
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Protein Structure, Tertiary
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Protozoan Proteins/*chemistry/*genetics/metabolism
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Sequence Alignment
8.Potential Interaction of Plasmodium falciparum Hsp60 and Calpain.
Seon Ju YEO ; Dong Xu LIU ; Hyun PARK
The Korean Journal of Parasitology 2015;53(6):665-673
After invasion of red blood cells, malaria matures within the cell by degrading hemoglobin avidly. For enormous protein breakdown in trophozoite stage, many efficient and ordered proteolysis networks have been postulated and exploited. In this study, a potential interaction of a 60-kDa Plasmodium falciparum (Pf)-heat shock protein (Hsp60) and Pf-calpain, a cysteine protease, was explored. Pf-infected RBC was isolated and the endogenous Pf-Hsp60 and Pf-calpain were determined by western blot analysis and similar antigenicity of GroEL and Pf-Hsp60 was determined with anti-Pf-Hsp60. Potential interaction of Pf-calpain and Pf-Hsp60 was determined by immunoprecipitation and immunofluorescence assay. Mizoribine, a well-known inhibitor of Hsp60, attenuated both Pf-calpain enzyme activity as well as P. falciparum growth. The presented data suggest that the Pf-Hsp60 may function on Pf-calpain in a part of networks during malaria growth.
Amino Acid Sequence
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Calpain/genetics/*metabolism
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Chaperonin 60/chemistry/genetics/*metabolism
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Erythrocytes/parasitology
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Humans
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Malaria, Falciparum/parasitology
;
Molecular Sequence Data
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Plasmodium falciparum/chemistry/enzymology/genetics/*metabolism
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Protein Binding
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Protozoan Proteins/chemistry/genetics/*metabolism
;
Sequence Alignment
9.Genotyping of Giardia duodenalis Isolates from Dogs in Guangdong, China Based on Multi-Locus Sequence.
Guochao ZHENG ; Muhamd ALSARAKIBI ; Yuanjia LIU ; Wei HU ; Qin LUO ; Liping TAN ; Guoqing LI
The Korean Journal of Parasitology 2014;52(3):299-304
This study aimed to identify the assemblages (or subassemblages) of Giardia duodenalis by using normal or nested PCR based on 4 genetic loci: glutamate dehydrogenase (gdh), triose phosphate isomerase (tpi), beta-giardin (bg), and small subunit ribosomal DNA (18S rRNA) genes. For this work, a total of 216 dogs' fecal samples were collected in Guangdong, China. The phylogenetic trees were constructed with MEGA5.2 by using the neighbor-joining method. Results showed that 9.7% (21/216) samples were found to be positive; moreover, 10 samples were single infection (7 isolates assemblage A, 2 isolates assemblage C, and 1 isolate assemblage D) and 11 samples were mixed infections where assemblage A was predominant, which was potentially zoonotic. These findings showed that most of the dogs in Guangdong were infected or mixed-infected with assemblage A, and multi-locus sequence typing could be the best selection for the genotype analysis of dog-derived Giardia isolates.
Animals
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China
;
Cluster Analysis
;
Coinfection/parasitology/veterinary
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Cytoskeletal Proteins/genetics
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DNA, Protozoan/chemistry/genetics
;
Dog Diseases/parasitology
;
Dogs
;
Genotype
;
Giardia lamblia/*classification/*genetics/isolation & purification
;
Giardiasis/parasitology/*veterinary
;
Glutamate Dehydrogenase/genetics
;
Molecular Sequence Data
;
*Multilocus Sequence Typing
;
Phylogeny
;
Polymerase Chain Reaction
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RNA, Ribosomal, 18S/genetics
;
Triose-Phosphate Isomerase/genetics
10.Structural and evolutionary characteristics of pyruvate phosphate dikinase in Giardia lamblia and other amitochondriate protozoa.
Xianmin FENG ; Chunlin YANG ; Wenyu ZHENG ; Jianfan WEN
Chinese Medical Journal 2014;127(23):4097-4103
BACKGROUNDPyruvate phosphate dikinase (PPDK) reversibly catalyzes the interconversion of phosphoenolpyruvate (PEP) and pyruvic acid, leading to catabolism and adenosine triphosphate (ATP) synthesis or gluconeogenesis and ATP consumption. Molecular modeling of PPDKs from divergent organisms demonstrates that the orientation of the phosphorylatable histidine residue within the central domain of PPDK determines whether this enzyme promotes catabolism or gluconeogenesis. The goal of this study was to determine whether PDDK from Giardia underwent adaptive evolution in order to produce more energy under anaerobic conditions.
METHODSA total of 123 PPDK sequences from protozoans, proteobacteria, plants, and algae were selected, based upon sequence similarities to Giardia lamblia PPDK and Zea mays PPDK. Three-dimensional (3-D) models were generated for PPDKs from divergent organisms and were used to compare the orientation of the phosphorylatable histidine residue within the central domain of PPDKs. These PPDKs were compared using a maximum-likelihood tree.
RESULTSFor PPDK from Giardia, as well as from other anaerobic protozoans, the central domain tilted toward the N-terminal nucleotide-binding domain, indicating that this enzyme catalyzed ATP synthesis. Furthermore, the orientation of this central domain was determined by interactions between the N- and C-terminal domains. Phylogenetic analysis of the N- and C-terminal sequences of PPDKs from different species suggested that PPDK has likely undergone adaptive evolution in response to differences in environmental and metabolic conditions.
CONCLUSIONThese results suggested that PPDK in anaerobic organisms is functionally adapted to generate energy more efficiently in an anaerobic environment.
Adenosine Triphosphate ; metabolism ; Evolution, Molecular ; Giardia lamblia ; enzymology ; Protozoan Proteins ; chemistry ; classification ; genetics ; Pyruvate, Orthophosphate Dikinase ; chemistry ; classification ; genetics

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