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Cdc23/Mcm10 Primase Generates the Lagging Strand-Specific Ribonucleotide Imprint in Fission Yeast

Balveer Singh, Kamlesh K Bisht, Udita Upadhyay, Avinash Chandra Kushwaha, Jagpreet Singh Nanda, Suchita Srivastava, Amar J.S. Klar, View ORCID ProfileJagmohan Singh
doi: https://doi.org/10.1101/303180
Balveer Singh
1Institute of Microbial Technology, Sector 39A, Chandigarh-160036. India
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Kamlesh K Bisht
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Udita Upadhyay
4Department of Anesthesiology, RMSB 8022, 1600 NW, 10th Ave, Miami, FL 33136, USA
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Avinash Chandra Kushwaha
5Institute of Nano Science and Technology, Phase 10, Mohali - 160062
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Jagpreet Singh Nanda
6Department of Pharmacology, Case Western Reserve University, 10900 Euclid Ave, Cleveland, OH 44106, USA
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Suchita Srivastava
1Institute of Microbial Technology, Sector 39A, Chandigarh-160036. India
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Amar J.S. Klar
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Jagmohan Singh
1Institute of Microbial Technology, Sector 39A, Chandigarh-160036. India
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  • ORCID record for Jagmohan Singh
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Abstract

The developmental asymmetry of fission yeast daughter cells derives from inheriting “older Watson” versus “older Crick” DNA strand from the parental cell, strands that are complementary but not identical with each other. A novel DNA strand-specific “imprint”, installed during DNA replication at the mating-type locus (mat1), imparts competence for cell type inter-conversion to one of the two chromosome replicas. The biochemical nature of the imprint and the mechanism of its installation are still not understood. The catalytic subunit of DNA Polymerase α (Polα) has been implicated in the imprinting process. Based on its known biochemical function, Polα might install the mat1 imprint during lagging strand synthesis. The nature of the imprint is not clear: it is either a nick or a ribonucleotide insertion. Our investigations do not support a role of Polα in nicking through putative endonuclease domains but confirm its role in installing an alkali-labile moiety as the imprint. A detailed genetic and molecular analysis reveals a direct role of the Cdc23/Mcm10 primase activity in installing the imprint in cooperation with Polα and Swi1.

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Posted April 17, 2018.
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Cdc23/Mcm10 Primase Generates the Lagging Strand-Specific Ribonucleotide Imprint in Fission Yeast
Balveer Singh, Kamlesh K Bisht, Udita Upadhyay, Avinash Chandra Kushwaha, Jagpreet Singh Nanda, Suchita Srivastava, Amar J.S. Klar, Jagmohan Singh
bioRxiv 303180; doi: https://doi.org/10.1101/303180
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Cdc23/Mcm10 Primase Generates the Lagging Strand-Specific Ribonucleotide Imprint in Fission Yeast
Balveer Singh, Kamlesh K Bisht, Udita Upadhyay, Avinash Chandra Kushwaha, Jagpreet Singh Nanda, Suchita Srivastava, Amar J.S. Klar, Jagmohan Singh
bioRxiv 303180; doi: https://doi.org/10.1101/303180

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