Large T Antigen
From Proteopedia
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{{#tree:id=OrganizedByTopic|openlevels=0| | {{#tree:id=OrganizedByTopic|openlevels=0| | ||
| - | *Large T antigen | + | *Large T antigen; Domains – origin-binding 131-260; helicase 266-627 |
**[[1faf]] – MPVLTA N terminal – murine polyomavirus – NMR<BR /> | **[[1faf]] – MPVLTA N terminal – murine polyomavirus – NMR<BR /> | ||
**[[1n25]], [[1svo]] – SVLTA helicase domain – SV40<br /> | **[[1n25]], [[1svo]] – SVLTA helicase domain – SV40<br /> | ||
| - | **[[2fuf]] - SVLTA | + | **[[2fuf]], [[2ipr]], [[2itj]], [[2if9]], [[3qn2]] - SVLTA origin-binding domain<br /> |
**[[1tbd]], [[2tbd]] - SVLTA DNA-binding domain - NMR<BR /> | **[[1tbd]], [[2tbd]] - SVLTA DNA-binding domain - NMR<BR /> | ||
| - | **[[2ipr]], [[2itj]], [[2if9]], [[3qn2]] - SVLTA origin-binding domain<br /> | ||
**[[4lif]], [[4nbp]], [[4lmd]] - JpvLTA origin-binding domain – JC polyomavirus<br /> | **[[4lif]], [[4nbp]], [[4lmd]] - JpvLTA origin-binding domain – JC polyomavirus<br /> | ||
**[[5cyn]] - JpvLTA origin-binding domain (mutant)<br /> | **[[5cyn]] - JpvLTA origin-binding domain (mutant)<br /> | ||
| - | **[[5j40]] - JpvLTA | + | **[[5j40]] - JpvLTA helicase domain (mutant)<br /> |
**[[5j47]], [[5j4v]], [[5j4y]] - JpvLTA helicase domain (mutant) + inhibitor<br /> | **[[5j47]], [[5j4v]], [[5j4y]] - JpvLTA helicase domain (mutant) + inhibitor<br /> | ||
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**[[2itl]], [[2ntc]], [[3qk2]], [[2nl8]], [[4fgn]], [[4gdf]], [[5d9i]] - SVLTA origin-binding domain + DNA<br /> | **[[2itl]], [[2ntc]], [[3qk2]], [[2nl8]], [[4fgn]], [[4gdf]], [[5d9i]] - SVLTA origin-binding domain + DNA<br /> | ||
| + | **[[9f3t]] - SVLTA helicase domain + DNA <br /> | ||
| + | **[[1svl]] - SVLTA helicase domain + ADP | ||
| + | **[[1svm]] - SVLTA helicase domain + ATP | ||
**[[4fb3]] - MPVLTA origin-binding domain + DNA<br /> | **[[4fb3]] - MPVLTA origin-binding domain + DNA<br /> | ||
| - | **[[3qfq]] - | + | **[[3qfq]] - McpLTA origin-binding domain + DNA – Merkel cell polyomavirus |
| - | **[[ | + | **[[9exd]] - BpvLTA + ATP – Betapolyoma virus – Cryo EM<br /> |
| - | **[[ | + | **[[9evh]] - BpvLTA + ADP + DNA – Cryo EM<br /> |
| + | **[[9f3u]], [[9f74]], [[9f7n]], [[9f9o]], [[9fa1]], [[9fa2]], [[9fb6]], [[9kae]], [[9kak]] - BpvLTA origin-binding domain + DNA – Cryo EM<br /> | ||
*Large T antigen complex with protein | *Large T antigen complex with protein | ||
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**[[1z1d]] – SVLTA origin-binding domain + replication protein A32 C terminal<br /> | **[[1z1d]] – SVLTA origin-binding domain + replication protein A32 C terminal<br /> | ||
**[[2h1l]] - SVLTA helicase domain + p53 DNA-binding domain<br /> | **[[2h1l]] - SVLTA helicase domain + p53 DNA-binding domain<br /> | ||
| - | **[[1gh6]] – SVLTA + retinoblastoma protein | + | **[[1gh6]] – SVLTA 7-117 + retinoblastoma protein |
| - | **[[4e2i]] – SVLTA + DNA polymerase α subunit<br /> | + | **[[4e2i]] – SVLTA origin-binding domain + DNA polymerase α subunit<br /> |
*Large T antigen peptide complex with protein | *Large T antigen peptide complex with protein | ||
| - | **[[1bk6]], [[1ejl]], [[1q1s]], [[1q1t]] – SVLTA peptide + karyopherin α<br /> | + | **[[1bk6]], [[1ejl]], [[1q1s]], [[1q1t]] – SVLTA peptide 110-133 + karyopherin α<br /> |
| - | **[[4rxh]] – SVLTA | + | **[[4rxh]] – SVLTA 125-132 + importin α subunit<br /> |
| - | + | **[[8tur]] – McLTA 274-308 + importin α subunit<br /> | |
| + | **[[8sud]] – JpvLTA 111-133 + importin α subunit<br /> | ||
| + | **[[8tuq]] – LTA 124-144 + importin α subunit – STL polyomavirus<br /> | ||
| + | }} | ||
== References == | == References == | ||
{{reflist}} | {{reflist}} | ||
[[Category:Topic Page]] | [[Category:Topic Page]] | ||
Current revision
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3D structures of large T antigen
Updated on 29-October-2025
References
- ↑ 1.0 1.1 Luo X, Sanford DG, Bullock PA, Bachovchin WW. Solution structure of the origin DNA-binding domain of SV40 T-antigen. Nat Struct Biol. 1996 Dec;3(12):1034-9. PMID:8946857
- ↑ Gai D, Zhao R, Li D, Finkielstein CV, Chen XS. Mechanisms of conformational change for a replicative hexameric helicase of SV40 large tumor antigen. Cell. 2004 Oct 1;119(1):47-60. PMID:15454080 doi:10.1016/j.cell.2004.09.017
- ↑ Falchuk KH, Czupryn M. Isolation of metallothioneins under metal-free conditions. Methods Enzymol. 1991;205:47-53. PMID:1779811
- ↑ Shafer WM, Onunka VC. Mechanism of staphylococcal resistance to non-oxidative antimicrobial action of neutrophils: importance of pH and ionic strength in determining the bactericidal action of cathepsin G. J Gen Microbiol. 1989 Apr;135(4):825-30. PMID:2600586
- ↑ Gai D, Zhao R, Li D, Finkielstein CV, Chen XS. Mechanisms of conformational change for a replicative hexameric helicase of SV40 large tumor antigen. Cell. 2004 Oct 1;119(1):47-60. PMID:15454080 doi:10.1016/j.cell.2004.09.017
- ↑ Erdman HP, Klein MH, Greist JH, Skare SS, Husted JJ, Robins LN, Helzer JE, Goldring E, Hamburger M, Miller JP. A comparison of two computer-administered versions of the NIMH Diagnostic Interview Schedule. J Psychiatr Res. 1992 Jan;26(1):85-95. PMID:1560412
- ↑ 7.0 7.1 7.2 Jezequel J, Cambeau M, Becuwe B, Daniel C. [Fractures of the face. Craniofacial dislocations and comminution of the middle protion of the face]. J Fr Otorhinolaryngol Audiophonol Chir Maxillofac. 1977 Mar;26(3):203-18. PMID:140208
- ↑ Kelley WL, Georgopoulos C. Positive control of the two-component RcsC/B signal transduction network by DjlA: a member of the DnaJ family of molecular chaperones in Escherichia coli. Mol Microbiol. 1997 Sep;25(5):913-31. PMID:9364917
- ↑ Mitrofanov PM. [Pathomorphology in chlamydial-parainfluenzal infection in calves]. Veterinariia. 1979 Jul;(7):35-8. PMID:232328
- ↑ Lee JO, Russo AA, Pavletich NP. Structure of the retinoblastoma tumour-suppressor pocket domain bound to a peptide from HPV E7. Nature. 1998 Feb 26;391(6670):859-65. PMID:9495340 doi:10.1038/36038
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