A unified catalytic mechanism in bifunctional DNA glycosylases with an evolutionarily conserved aspartate-lysine dyad
A
Aleem Syed
(Division of Radiation and Genome Stability, Department of Radiation Oncology, Dana-Farber Cancer Institute, Harvard Medical School)
L
Leonardo F. Serafim
A
Andrew S. Arvai
I
Irina G. Minko
H
Henry Y. H. Tang
J
Joy L. Huffman
C
Clifford D. Mol
K
Kenichi Hitomi
A
Altaf H. Sarker
S
Sudip Parikh
C
Chi-Lin Tsai
A
Albino Bacolla
D
David S. Shin
R
Richard P. Cunningham
S
Shigenori Iwai
D
Dipanjan Chowdhury
R
R. Stephen Lloyd
I
Ivaylo Ivanov
J
John A. Tainer
Article Details
Journal
Nature Communications
Volume / Issue
Vol. 1, Issue 1
Published
July 15, 2026
ISSN
2041-1723
Publisher
Nature Portfolio
Authors (19)
A
Aleem Syed
Division of Radiation and Genome Stability, Department of Radiation Oncology, Dana-Farber Cancer Institute, Harvard Medical School
L
Leonardo F. Serafim
A
Andrew S. Arvai
I
Irina G. Minko
H
Henry Y. H. Tang
J
Joy L. Huffman
C
Clifford D. Mol
K
Kenichi Hitomi
A
Altaf H. Sarker
S
Sudip Parikh
C
Chi-Lin Tsai
A
Albino Bacolla
D
David S. Shin
R
Richard P. Cunningham
S
Shigenori Iwai
D
Dipanjan Chowdhury
R
R. Stephen Lloyd
I
Ivaylo Ivanov
J
John A. Tainer
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