Citations in PubMed

Primary Citation PubMed: 12899834 Citations in PubMed

PDB ID Mentions in PubMed Central Article count: 6

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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Biochemical analyses are instrumental in identifying the impact of mutations on holo and/or apo-forms and on the region(s) of alanine:glyoxylate aminotransferase variants associated with primary hyperoxaluria type I.

(2012) Mol Genet Metab 105

PubMed: 22018727 | PubMedCentral: PMC3271384 | DOI: 10.1016/j.ymgme.2011.09.033

 1 3D representation of the AGT structure (PDB file 1H0C).

Publication Year: 2012


Molecular requirements for peroxisomal targeting of alanine-glyoxylate aminotransferase as an essential determinant in primary hyperoxaluria type 1.

(2012) PLoS Biol 10

PubMed: 22529745 | PubMedCentral: PMC3328432 | DOI: 10.1371/journal.pbio.1001309

The structure of the Pex5p(C)–AGT complex was solved by molecular replacement using the coordinates of apo-AGT (PDB code: 1H0C) and the Pex5p–SCP2 complex (PDB code: 2C0L) as search mo... els with the program PHASER [41] .

Publication Year: 2012


Protein homeostasis defects of alanine-glyoxylate aminotransferase: new therapeutic strategies in primary hyperoxaluria type I.

(2013) Biomed Res Int 2013

PubMed: 23956997 | PubMedCentral: PMC3730394 | DOI: 10.1155/2013/687658

The 3D structure of AGT (PDB: 1H0C) [ 27 ] has provided important information to better understand the function of the protein and the effect of changes in amino acid that account for a majority of th... PH1 mutations (see Section 3 below).

(a) A ribbon representation of the dimeric AGT structure (PDB code 1H0C) colored to highlight the domain organization.

Publication Year: 2013


The role of protein denaturation energetics and molecular chaperones in the aggregation and mistargeting of mutants causing primary hyperoxaluria type I.

(2013) PLoS One 8

PubMed: 24205397 | PubMedCentral: PMC3796444 | DOI: 10.1371/journal.pone.0071963

The p.I340M structure was solved by molecular replacement using Phaser [22] with the coordinates from the native protein (PDB 1H0C [23] ).

The structures of p.I340M and the WT (PDB code 1H0C [23] ) are nearly identical.

Publication Year: 2013


Crystal structure of the S187F variant of human liver alanine: glyoxylate [corrected] aminotransferase associated with primary hyperoxaluria type I and its functional implications.

(2013) Proteins 81

PubMed: 23589421 | PubMedCentral: PMC3810726 | DOI: 10.1002/prot.24300

The structure of the S187F variant was solved by molecular replacement with Phaser 28 using normal AGT as starting model (PDB entry: 1H0C).

Publication Year: 2013


S81L and G170R mutations causing Primary Hyperoxaluria type I in homozygosis and heterozygosis: an example of positive interallelic complementation.

(2014) Hum Mol Genet 23

PubMed: 24990153 | PubMedCentral: PMC4204775 | DOI: 10.1093/hmg/ddu329

In trying to explain this result, we modelled the putative dimeric structure of AGT through a crystallographic symmetry operation on the available monomeric structure [pdb file 1H0C ( 5 )].

Publication Year: 2014