9JTU: Mouse RAG SEC-1DNA

CryoEM structure of mouse RAG SEC-1DNA (23RSS side). Determined by electron microscopy at 3.43 Å resolution. Released 23 Jul 2025.

Method
Electron microscopy
Resolution
3.43 Å
Organisms
Mus musculus, Escherichia coli
Chains
10
Atoms
18,706
Mol. weight
407.66 kDa
Ligands
CA, ZN
Released
23 Jul 2025

Explore 9JTU in 3D Show helices and sheets RCSB PDB PDBe

Secondary structure: helices and β-sheets

9JTU contains 73 α-helices and 99 β-strands across 4 chains. Residue ranges use author residue numbering, as in the PDB file, from PDBe. To see them in 3D, choose the Cartoon representation with Secondary structure coloring: helices, sheets and coils get different colors.

Chain A: 28 helices, 11 β-strands

ElementResiduesLengthSheet
α-helix409-41810
α-helix419-4235
α-helix428-44114
α-helix445-45511
α-helix464-47310
α-helix478-49215
α-helix500-5067
β-strand518-51921
α-helix522-5232
β-strand534-53631
β-strand554-55741
α-helix559-56911
α-helix571-58010
β-strand590-601121
β-strand620-633141
β-strand636-64271
β-strand653-65861
α-helix665-68218
β-strand687-69151
β-strand694-707141
α-helix709-7168
β-strand72512
β-strand73312
α-helix734-7407
α-helix750-76213
α-helix769-7768
α-helix793-81119
α-helix823-84119
α-helix852-8576
α-helix860-8678
α-helix874-88916
α-helix890-8934
α-helix898-9014
α-helix903-92321
α-helix934-9418
α-helix943-9508
α-helix959-97416
α-helix983-99513
α-helix1001-10077
Chain B: 6 helices, 41 β-strands
ElementResiduesLengthSheet
β-strand2-543
β-strand7-824
α-helix12-143
β-strand20-2455
β-strand27-3155
β-strand46-4725
β-strand50-5124
β-strand54-5524
β-strand58-5925
β-strand61-6226
β-strand76-8056
β-strand90-9456
β-strand9717
β-strand10317
β-strand107-116106
β-strand119-12796
β-strand130-13128
α-helix133-1364
β-strand13819
β-strand142-14768
β-strand150-15568
β-strand159-16139
α-helix162-1632
β-strand175-17739
α-helix178-1792
β-strand182-18658
β-strand191-19558
β-strand205110
β-strand208-211411
β-strand215-219511
β-strand222110
β-strand223112
β-strand228112
β-strand233-239711
β-strand246-251611
β-strand259113
β-strand262-265414
β-strand270-274514
β-strand277113
β-strand283113
β-strand288-292514
β-strand297-301514
α-helix303-3053
α-helix309-3124
β-strand318-32143
β-strand326-33273
β-strand343-34973
Chain C: 33 helices, 13 β-strands
ElementResiduesLengthSheet
α-helix396-3983
α-helix401-4077
α-helix411-42212
α-helix427-44115
α-helix445-45511
α-helix464-47310
α-helix478-49215
α-helix498-4992
α-helix500-51011
β-strand517-520415
α-helix522-5232
β-strand534-536315
β-strand554-557415
α-helix559-56911
α-helix571-58010
β-strand591-6031315
α-helix605-6084
β-strand618-6331615
β-strand636-642715
β-strand653-658615
α-helix666-68217
β-strand686-691615
β-strand694-7031015
α-helix709-7157
β-strand718116
β-strand725117
β-strand733117
α-helix734-7407
α-helix750-76213
α-helix769-7768
β-strand779116
α-helix793-81119
α-helix823-84119
α-helix851-8577
α-helix860-8667
α-helix873-89422
α-helix898-9014
α-helix903-9064
α-helix909-92214
α-helix934-9418
α-helix943-9508
α-helix954-9563
α-helix959-97416
α-helix984-99411
α-helix997-10015
α-helix1002-10043
Chain D: 6 helices, 34 β-strands
ElementResiduesLengthSheet
β-strand2-6518
β-strand7-8219
α-helix12-143
β-strand20-24519
β-strand27-31519
β-strand46-51619
β-strand54-59619
β-strand61-62220
β-strand76-79420
β-strand91-97720
β-strand103-1161420
β-strand119-127920
β-strand130-131221
α-helix133-1364
β-strand138122
β-strand142-147621
β-strand150-155621
β-strand159-161322
α-helix162-1632
β-strand175-177322
α-helix178-1792
β-strand182-186521
β-strand191-195521
β-strand208-211423
β-strand215-219523
β-strand223124
β-strand228124
β-strand233-239723
β-strand246-252723
β-strand259125
β-strand262-267626
β-strand270-274526
β-strand277125
β-strand288-291426
β-strand298-301426
α-helix303-3053
α-helix309-3124
β-strand318-321418
β-strand326-332718
β-strand343-349718

Molecules and chains

MoleculeChainsTypeLengthOrganismUniProt
V(D)J recombination-activating protein 1A, Cprotein1040Mus musculusP15919 (AlphaFold model)
V(D)J recombination-activating protein 2B, Dprotein527Mus musculusP21784 (AlphaFold model)
DNA (39-mer)GDNA39Escherichia coli
DNA (30-mer)LDNA30Escherichia coli
DNA (39-mer)MDNA39Escherichia coli
DNA (30-mer)FDNA30Escherichia coli
DNA (5'-d(*cp*ap*gp*gp*cp*cp*ap*gp*ap*tp*cp*cp*a)-3')HDNA13Escherichia coli
DNA (5'-d(p*tp*gp*gp*ap*tp*cp*tp*gp*gp*cp*cp*tp*g)-3')IDNA13Escherichia coli
Sequence of entity 1 (A, C), FASTA
>9JTU_1 V(D)J recombination-activating protein 1 (chains A, C)
MAASLPSTLSFSSAPDEIQHPQIKFSEWKFKLFRVRSFEKAPEEAQKEKDSSEGKPYLEQ
SPVVPEKPGGQNSILTQRALKLHPKFSKKFHADGKSSDKAVHQARLRHFCRICGNRFKSD
GHSRRYPVHGPVDAKTQSLFRKKEKRVTSWPDLIARIFRIDVKADVDSIHPTEFCHDCWS
IMHRKFSSSHSQVYFPRKVTVEWHPHTPSCDICFTAHRGLKRKRHQPNVQLSKKLKTVLN
HARRDRRKRTQARVSSKEVLKKISNCSKIHLSTKLLAVDFPAHFVKSISCQICEHILADP
VETSCKHLFCRICILRCLKVMGSYCPSCRYPCFPTDLESPVKSFLNILNSLMVKCPAQDC
NEEVSLEKYNHHVSSHKESKETLVHINKGGRPRQHLLSLTRRAQKHRLRELKIQVKEFAD
KEEGGDVKAVCLTLFLLALRARNEHRQADELEAIMQGRGSGLQPAVCLAIRVNTFLSCSQ
YHKMYRTVKAITGRQIFQPLHALRNAEKVLLPGYHPFEWQPPLKNVSSRTDVGIIDGLSG
LASSVDEYPVDTIAKRFRYDSALVSALMDMEEDILEGMRSQDLDDYLNGPFTVVVKESCD
GMGDVSEKHGSGPAVPEKAVRFSFTVMRITIEHGSQNVKVFEEPKPNSELCCKPLCLMLA
DESDHETLTAILSPLIAEREAMKSSELTLEMGGIPRTFKFIFRGTGYDEKLVREVEGLEA
SGSVYICTLCDTTRLEASQNLVFHSITRSHAENLQRYEVWRSNPYHESVEELRDRVKGVS
AKPFIETVPSIDALHCDIGNAAEFYKIFQLEIGEVYKHPNASKEERKRWQATLDKHLRKR
MNLKPIMRMNGNFARKLMTQETVDAVCELIPSEERHEALRELMDLYLKMKPVWRSSCPAK
ECPESLCQYSFNSQRFAELLSTKFKYRYEGKITNYFHKTLAHVPEIIERDGSIGAWASEG
NESGNKLFRRFRKMNARQSKCYEMEDVLKHHWLYTSKYLQKFMNAHNALKSSGFTMNSKE
TLGDPLGIEDSLESQDSMEF
Sequence of entity 2 (B, D), FASTA
>9JTU_2 V(D)J recombination-activating protein 2 (chains B, D)
MSLQMVTVGHNIALIQPGFSLMNFDGQVFFFGQKGWPKRSCPTGVFHFDIKQNHLKLKPA
IFSKDSCYLPPLRYPATCSYKGSIDSDKHQYIIHGGKTPNNELSDKIYIMSVACKNNKKV
TFRCTEKDLVGDVPEPRYGHSIDVVYSRGKSMGVLFGGRSYMPSTQRTTEKWNSVADCLP
HVFLIDFEFGCATSYILPELQDGLSFHVSIARNDTVYILGGHSLASNIRPANLYRIRVDL
PLGTPAVNCTVLPGGISVSSAILTQTNNDEFVIVGGYQLENQKRMVCSLVSLGDNTIEIS
EMETPDWTSDIKHSKIWFGSNMGNGTIFLGIPGDNKQAMSEAFYFYTLRCSEEDLSEDQK
IVSNSQTSTEDPGDSTPFEDSEEFCFSAEATSFDGDDEFDTYNEDDEDDESVTGYWITCC
PTCDVDINTWVPFYSTELNKPAMIYCSHGDGHWVHAQCMDLEERTLIHLSEGSNKYYCNE
HVQIARALQTPKRNPPLQKPPMKSLHKKGSGKVLTPAKKSFLRRLFD
Sequence of entity 3 (G), FASTA
>9JTU_3 DNA (39-MER) (chains G)
GGTTTTTGTCTGGCTTCACACTTGATTTGCATCACTGTG
Sequence of entity 4 (L), FASTA
>9JTU_4 DNA (30-MER) (chains L)
CACAGTGATACAGCCCTTAACAAAAACCCG
Sequence of entity 5 (M), FASTA
>9JTU_5 DNA (39-MER) (chains M)
CACAGTGATGCAAATCAAGTGTGAAGCCAGACAAAAACC
Sequence of entity 6 (F), FASTA
>9JTU_6 DNA (30-MER) (chains F)
CGGGTTTTTGTTAAGGGCTGTATCACTGTG
Sequence of entity 7 (H), FASTA
>9JTU_7 DNA (5'-D(*CP*AP*GP*GP*CP*CP*AP*GP*AP*TP*CP*CP*A)-3') (chains H)
CAGGCCAGATCCA
Sequence of entity 8 (I), FASTA
>9JTU_8 DNA (5'-D(P*TP*GP*GP*AP*TP*CP*TP*GP*GP*CP*CP*TP*G)-3') (chains I)
TGGATCTGGCCTG

Ligands and cofactors

IDNameFormulaCopies
CACalcium ionCa2
ZNZinc ionZn2

Primary citation

How RAG1/2 evolved from ancestral transposases to initiate V(D)J recombination without transposition. Chen, X., Yao, L., Li, W. et al. Proc Natl Acad Sci U S A (2025) 122:e2512362122-e2512362122. DOI 10.1073/pnas.2512362122 · PubMed

Other PDB entries of the same protein (UniProt P15919 (AlphaFold model), which also has an AlphaFold model), best resolution first:

Browse structure collections

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