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Hollis, Thomas
One or more keywords matched the following items that are connected to
Hollis, Thomas
Item Type
Name
Academic Article
The human TREX2 3' -> 5'-exonuclease structure suggests a mechanism for efficient nonprocessive DNA catalysis.
Academic Article
A mutation in TREX1 that impairs susceptibility to granzyme A-mediated cell death underlies familial chilblain lupus.
Academic Article
Mutations in the gene encoding the 3'-5' DNA exonuclease TREX1 are associated with systemic lupus erythematosus.
Academic Article
Functional consequences of the RNase H2A subunit mutations that cause Aicardi-Goutieres syndrome.
Academic Article
The TREX1 exonuclease R114H mutation in Aicardi-Goutières syndrome and lupus reveals dimeric structure requirements for DNA degradation activity.
Academic Article
The molecular mechanism of DNA damage recognition by MutS homologs and its consequences for cell death response.
Academic Article
The crystal structure of TREX1 explains the 3' nucleotide specificity and reveals a polyproline II helix for protein partnering.
Academic Article
Heterozygous mutations in TREX1 cause familial chilblain lupus and dominant Aicardi-Goutieres syndrome.
Academic Article
DNA damage recognition and repair by 3-methyladenine DNA glycosylase I (TAG).
Academic Article
Cooperative DNA binding and communication across the dimer interface in the TREX2 3' --> 5'-exonuclease.
Academic Article
The TREX1 double-stranded DNA degradation activity is defective in dominant mutations associated with autoimmune disease.
Academic Article
RNaseH2 mutants that cause Aicardi-Goutieres syndrome are active nucleases.
Academic Article
The structure of the mammalian RNase H2 complex provides insight into RNA.NA hybrid processing to prevent immune dysfunction.
Academic Article
AmrZ beta-sheet residues are essential for DNA binding and transcriptional control of Pseudomonas aeruginosa virulence genes.
Academic Article
Dominant mutation of the TREX1 exonuclease gene in lupus and Aicardi-Goutieres syndrome.
Academic Article
Defects in DNA degradation revealed in crystal structures of TREX1 exonuclease mutations linked to autoimmune disease.
Concept
Mutation
Concept
Mutation, Missense
Concept
Frameshift Mutation
Academic Article
The Arg-62 residues of the TREX1 exonuclease act across the dimer interface contributing to catalysis in the opposing protomers.
Academic Article
Exonuclease TREX1 degrades double-stranded DNA to prevent spontaneous lupus-like inflammatory disease.
Grant
Structure and Regulation of the TREX1 Exonuclease
Search Criteria
Mutation