Please use this identifier to cite or link to this item: http://223.31.159.10:8080/jspui/handle/123456789/1739
Title: Branched DNA processing by a thermostable CAS-Cas4 from Thermococcus onnurineus: expanding biochemical landscape of nuclease activity
Authors: Jain, Muskan
Pattnayak, Asish Kumar
Aggarwal, Sakshi
Rai, Praveen
Kavya, J.
Chandrayan, Sanjeev
Goel, Manisha
Gaur, Vineet
Keywords: DNA endonuclease
DNA repair
DNA recombination
CRISPR/Cas
DNA‐protein interaction
structure-selective endonuclease
CAS-Cas4
exonuclease
Issue Date: 2025
Publisher: Elsevier B.V.
Citation: Journal of Biological Chemistry, 301(10): 110701
Abstract: The adaptive immune function of CRISPR-Cas systems in bacteria and archaea is mediated through CRISPR-Associated Proteins (Cas). The adaptation module, typically involving Cas1, Cas2, and Cas4, helps integrate viral “spacer” sequences into the host genome. Cas4 proteins are classified into two types based on neighboring genes: CAS-Cas4, flanked by other cas genes, and Solo-Cas4, which exist independently. While CAS-Cas4 proteins are implicated in adaptation, they remain biochemically uncharacterized in archaea, unlike archaeal Solo-Cas4 proteins. This study biochemically characterizes TON_0321, a CAS-Cas4 protein from the Type IV-C CRISPR cassette of Thermococcus onnurineus. TON_0321 exhibits 5′ to 3′ exonuclease activity and unique structure-dependent endonuclease activity, shedding light on CAS-Cas4 functional diversity. A distinct spatial organization of the catalytic site, angled with the positively charged patch on the protein surface, enables TON_0321 to recognize branching points in DNA substrates. Furthermore, this spatial arrangement facilitates cleavage 2 to 3 nucleotides away from the branch point in the 5′ direction, demonstrating structure-specific endonuclease activity.
Description: Accepted date: 7 September 2025
URI: https://www.sciencedirect.com/science/article/pii/S0021925825025530?via%3Dihub
http://223.31.159.10:8080/jspui/handle/123456789/1739
ISSN: 1083-351X
0021-9258
Appears in Collections:Institutional Publications

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