Citations in PubMed

Primary Citation PubMed: 8601311 Citations in PubMed

PDB ID Mentions in PubMed Central Article count: 4

Citations in PubMed

This linkout lists citations, indexed by PubMed, to the Primary Citation for this PDB ID.

PDB ID Mentions in PubMed Central

Data mentions are occurrences of PDB IDs in the full text articles from the PubMedCentral Open Access Subset of currently about 1 million articles. For each article, the sentences containing the PDB ID are listed. Article titles can be filtered by keywords and sorted by year.

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IKK? inhibitor identification: a multi-filter driven novel scaffold.

(2010) BMC Bioinformatics 11 Suppl 7

PubMed: 21106122 | PubMedCentral: PMC2957683 | DOI: 10.1186/1471-2105-11-S7-S15

The templates (Table 4 ) are human calmodulin-dependent protein kinase (PDB: 2JC6 ), rat calmodulin-dependent protein kinase (PDB: 1A06 ), kinase and ubiquitin-associated domains of MARK3/Par-1 (PDB: ... QNJ ) and Proetin kinase A-fivefold mutant model of Rho-kinase (PDB: 2GNG).

Table 4 The templates used to model IKK β protein PDB Identity Protein function Resolution in Å 2JC6 31% Crystal Structure of Human Calmodulin-dependent protein kinase 1 D. 2.30 1A06 29% Calmodulin-dependent protein kinase from rat.

Publication Year: 2010


The Cryptosporidium parvum kinome.

(2011) BMC Genomics 12

PubMed: 21962082 | PubMedCentral: PMC3227725 | DOI: 10.1186/1471-2164-12-478

The following models were used: Cp CDPK1 used PDB: 2QG5 , Cp CDPK2 used 1A06, Cp CDPK4 used PDB: 3DFA , and Cp MAP-1 used PDB: 2B9F .

Publication Year: 2011


Structure of the nuclear factor ?B-inducing kinase (NIK) kinase domain reveals a constitutively active conformation.

(2012) J Biol Chem 287

PubMed: 22718757 | PubMedCentral: PMC3431628 | DOI: 10.1074/jbc.M112.366658

C , superposition of the structures of active PhK and autoinhibited calcium/calmodulin-dependent protein kinase I ( CaMKI ; Protein Data Bank code 1A06 ) with NIK in the C-terminal extension ( C-ext )... area.

Publication Year: 2012


Crystal structures of human CaMKI? reveal insights into the regulation mechanism of CaMKI.

(2012) PLoS One 7

PubMed: 23028635 | PubMedCentral: PMC3447817 | DOI: 10.1371/journal.pone.0044828

Structure determination and refinement The structure of the CaMKI293-ATP complex was solved with the molecular replacement method implemented in program CNS [18] using the apo rat CaMKI320 structure (... DB code 1A06) as the search model.

A Comparison of the apo human CaMKI320 and the apo rat CaMKI320 (PDB code 1A06) [16] .

A Comparison of the overall structures of kinases with the CaM-binding and/or autoinhibitory segments including human CaMKIα (the CaMKI315-ATP structure determined in this study, green), rat CaMKIα (PDB code 1A06, cyan), human CaMK1δ (2JC6, magenta), human CaMK1γ (2JAM, yellow), human CaMK2α (2VZ6, wheat), human CaMK2β (3BHH, grey), human CaMK2δ (2VN9, sky-blue), human CaMK2γ (2V7O, orange), human CaMKIV (2W4O, blue), and human death-associated kinase 1 (2X0G, red).

Publication Year: 2012