| Literature DB >> 25686154 |
Xiaoyu Xiang1, Xiaoxing Huang2, Haina Wang3, Li Huang4.
Abstract
Plasmids occur frequently in Archaea. A novel plasmid (denoted pTC1) containing typical conjugation functions has been isolated from Sulfolobus tengchongensis RT8-4, a strain obtained from a hot spring in Tengchong, China, and characterized. The plasmid is a circular double-stranded DNA molecule of 20,417 bp. Among a total of 26 predicted pTC1 ORFs, 23 have homologues in other known Sulfolobus conjugative plasmids (CPs). pTC1 resembles other Sulfolobus CPs in genome architecture, and is most highly conserved in the genomic region encoding conjugation functions. However, attempts to demonstrate experimentally the capacity of the plasmid for conjugational transfer were unsuccessful. A survey revealed that pTC1 and its closely related plasmid variants were widespread in the geothermal area of Tengchong. Variations of the plasmids at the target sites for transposition by an insertion sequence (IS) and a miniature inverted-repeat transposable element (MITE) were readily detected. The IS was efficiently inserted into the pTC1 genome, and the inserted sequence was inactivated and degraded more frequently in an imprecise manner than in a precise manner. These results suggest that the host organism has evolved a strategy to maintain a balance between the insertion and elimination of mobile genetic elements to permit genomic plasticity while inhibiting their fast spreading.Entities:
Year: 2015 PMID: 25686154 PMCID: PMC4390865 DOI: 10.3390/life5010506
Source DB: PubMed Journal: Life (Basel) ISSN: 2075-1729
Figure 1Identification of plasmid pTC1 from Sulfolobus tengchongensis RT8-4. (a) Restriction digestion of the total DNA from S. tengchongensis RT8-4 containing pTC1. The total DNA from the cells was digested with indicated restriction enzymes. Restriction fragments were subjected to electrophoresis in agarose gel. Lane M, 1-kb DNA ladder with sizes of 10, 8, 6, 5, 4, 3.5, 3, 2.5, 2, 1.5, 1, 0.75, 0.5, and 0.25 kb (from top to bottom); lane 1, EcoRI; lane 2, EcoRV; lane 3, PstI; lane 4, XhoI; lane 5 SalI; lane 6, total DNA; (b) Restriction digestion of pTC1 DNA. pTC1 DNA was extracted from the cells by alkaline lysis and purified using a plasmid purification kit. The DNA was digested with EcoRI. The restriction digest was subjected to electrophoresis in agarose gel. Lane M, 1-kb DNA ladder; lane 1, EcoRI digest of the total DNA from S. tengchongensis RT8-4 containing pTC1; lane 2, EcoRI digest of purified pTC1 DNA; lane 3, purified pTC1 DNA.
Figure 2A map of pTC1. ORFs are shown by arrows. ORFs with no homologues in the other known Sulfolobus CPs are indicated with blank arrows, whereas those with homologues in other CPs are shown with black arrows. Functional sections A, B and C are indicated.
Genome annotation of pTC1.
| Name | Predicted function | Conserved motifs | Homologues in other | Section |
|---|---|---|---|---|
| ORF62 | Transmembrane protein involved in conjugation | Signal peptide and transmembrane regions (1)1 | pAH1_p35, pARN3_p40, pARN4_p39, pHVE14_p53, pSOG1_p44, pSOG2_p41, pYN01_p2 | A |
| ORF297 | Signal peptide involved in conjugation | Signal peptide | pAH1_p1, pARN3_p1, pARN4_p1, pLD8501_p25, pYN01_p50, pHVE14_p3, pING1_p34, pKEF9_p3, pNOB8_p33, pSOG1_p5, pSOG2_p4, pMGB1_p1 | A |
| ORF144 | Unknown | - | pAH1_p1, pARN3_p1, pARN4_p1, pLD8501_p25, pYN01_p50, pMGB1_p1 | A |
| ORF124 | Unknown | - | pAH1_p1, pARN3_p1, pARN4_p1, pLD8501_p25, pYN01_p50, pMGB1_p1 | A |
| ORF213 | The transcription factor TFIIB | TF_Zn_Ribbon superfamily | pAH1_p2, pARN3_p2, pARN4_p2, pLD8501_p24, pYN01_p49, pSOG1_p45 | A |
| ORF99c | Unknown | - | pAH1_p3, pARN3_p3, pARN4_p3, pLD8501_p23, pYN01_p48, pMGB1_p3 | A |
| ORF621 | TrbE-like protein involved in conjugation transfer | AAA_10 | pAH1_p4, pARN3_p4, pARN4_p4, pHVE14_p1, pING1_p32, pKEF9_p1, pLD8501_p22, pNOB8_p31, pSOG1_p2, pSOG2_p2, pYN01_p47, pMGB1_p4 | A |
| ORF458 | Transmembrane protein involved in conjugation | Signal peptide and transmembrane regions (9) | pAH1_p5, pARN3_p5, pARN4_p5, pLD8501_p6, pSOG1_p7, pYN01_p36, pMGB1_p5 | A |
| ORF161 | Transmembrane protein involved in conjugation | Transmembrane regions (2) | pAH1_p6, pARN3_p6, pARN4_p6, pYN01_p35 | A |
| ORF179 | Transmembrane protein involved in conjugation | Transmembrane regions (3) | pAH1_p9, pARN3_p7, pARN4_p8, pLD8501_p1, pYN01_p33 | A |
| ORF92 | Transmembrane protein involved in conjugation | Transmembrane regions (2) | pAH1_p10, pARN3_p8, pARN4_p9, pYN01, pMGB1_p8 | A |
| ORF189 | Transmembrane protein involved in conjugation | Signal peptide and transmembrane regions (1) | pAH1_p11, pARN3_p9, pARN4_p10, pSOG1_p4, pYN01_p31, pMGB1_p9 | A |
| ORF129 | Transmembrane protein involved in conjugation | Signal peptide and transmembrane regions (2) | pAH1_p12, pARN3_p10, pARN4_p11, pYN01_p30, pMGB1_p10 | A |
| ORF1019 | VirD/TraG-like protein | TraG_VirD4/AAA_10 | pAH1_p13, pARN3_p11, pARN4_p12, pHVE14_p14, pING1_p5, pKEF9_p12, pNOB8_p10, pSOG1_p12, pSOG1_p2, pSOG2_p12, pYN01_p29, pMGB1_p11 | A |
| ORF142 | Unknown | - | pAH1_p14, pARN3_p12, pARN4_p13, pING1_p6, pKEF9_p13, pSOG1_p13, pSOG2_p13 | A |
| ORF99a | Predicted transcriptional regulators | HTH_ARSR superfamily | pING_p18, pNOB8_p18, pNOB8_p44, pYN01_p41, pMGB1_p20 | C |
| ORF107 | Predicted transcriptional regulators | HTH_MARR | pAH1_p22, pKEF9_p24, pNOB8_p18, pNOB8_p2, pNOB8_p19, pYN01_p42, pLD8501_p16, pMGB1_p20, pMGB1_21 | C |
| ORF204 | Transposase | COG3316 | pARN4_p16 | C |
| ORF104 | Unknown | - | pARN3_p27, pARN4_p25, pING1_p19, pNOB8_p20, pYN01_p17, pHVE14_p30, pKEF9_p25, pSOG1_p23, pSOG2_p26 | C |
| ORF108 | Unknown | - | - | C |
| ORF92a | Unknown | - | - | C |
| ORF79 | Unknown | - | pSOG1_p24, pSOG2_p27, pMGB1_p7 | C |
| ORF80 | PlrA-like protein | pING1_p26, pARN4_p33, pNOB8_p28, pKEF9_p33, pSOG1_p34, pLD8501_p29, pHVE14_p41, pAH1_p33, pYN01_p6 | C | |
| ORF56 | CopG family transcriptional regulator | PHA01748/RHH_1 superfamily | pAH1_p28, pKEF9_p28, pYN01_p11, pNOB8_24, pMGB1_p26 | C |
| ORF162 | Unknown | - | C | |
| ORF125 | Unknown | - | pARN3_p38, pARN4_p37, pKEF9_p38, pHVE14_p50, pSOG1_p42, pSOG2_p39, pYN01_p4 | C |
1 The number of transmembrane regions in a protein encoded by an ORF is indicated by the number in parentheses.
Figure 3Alignment of the putative origins of replication of pARN3, pING1, pKEF9, pSOG1, pSOG2 and pTC1. Repeating sequences are indicated by arrows. Identical or similar sequences are shown in dark or grey background, respectively.
Figure 4Patterns of deletion at the sites of transposition by ISSte1 (a) and MITE (b). Total DNAs or plasmid DNAs were isolated from enrichment cultures established with various hot spring and mud hole samples. PCR targeting the ISSte1 site or the MITE site was carried out. Fragments shorter than expected for the insertion of full-length ISStel or MITE into the pTC1 DNA were sequenced. Repeating sequences are labeled in color and specified. ORFs are shown with blank arrows. An additional deletion (AGGGGCTCT) occurred at 88 bp upstream of LDR in type 2 deletion variants, whereas an additional deletion (AGAGACCGAGAATGATA) was 86 bp downstream of RDR in types 3 and 8 deletion variants. The percentage of each deletion type for ISStel in all samples is indicated.
Figure 5Restriction patterns of pTC plasmids. Plasmid DNAs were extracted from various isolates by alkaline lysis and purified using a plasmid purification kit. The DNAs were digested with EcoRI. The restriction digests were subjected to electrophoresis in agarose gel. Lane M, 1-kb DNA ladder with sizes of 10, 8, 6, 5, 4, 3.5, 3, 2.5, 2, 1.5, 1, 0.75, 0.5, and 0.25 kb (from top to bottom); lane 1, pTC1 DNA from S. tengchongensis RT8-4; lane 2, plasmid DNA from isolate H7; lane 3, plasmid DNA from isolate H7; lane 4, plasmid DNA from isolate H3; lane 5, plasmid DNA from isolate D2; lane 6, plasmid DNA from isolate D4; lane 7, plasmid DNA from isolate H5. Restriction fragments containing a deletion are indicated by arrows.