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rNMPID: a database for riboNucleoside Mono-Phosphates In DNA
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AbstractMotivationRibonucleoside monophosphates (rNMPs) are the most abundant non-standard nucleotides embedded in genomic DNA. If the presence of rNMP in DNA cannot be controlled, it can lead to genome instability. The actual positive functions of rNMPs in DNA remain mainly unknown. Considering the association between rNMPs embedment and various diseases and cancer, the phenomenon of rNMPs embedment in DNA has become a prominent area of research in recent years.ResultsWe introduce the rNMPID database, which is the first database revealing rNMP-embedment characteristics, strand bias, and preferred incorporation patterns in the genomic DNA of samples from bacterial to human cells of different genetic backgrounds. The rNMPID database uses datasets generated by different rNMP-mapping techniques. It provides the researchers with a solid foundation to explore the features of rNMPs embedded in the genomic DNA of multiple sources, and their association with cellular functions, and, in future, disease. It also significantly benefits researchers in the fields of genetics and genomics who aim to integrate their studies with the rNMP-embedment data.AvailabilityrNMPID is freely accessible on the web athttps://www.rnmpid.org.Contactxph6113@gmail.comorstorici@gatech.edu
Cold Spring Harbor Laboratory
Title: rNMPID: a database for riboNucleoside Mono-Phosphates In DNA
Description:
AbstractMotivationRibonucleoside monophosphates (rNMPs) are the most abundant non-standard nucleotides embedded in genomic DNA.
If the presence of rNMP in DNA cannot be controlled, it can lead to genome instability.
The actual positive functions of rNMPs in DNA remain mainly unknown.
Considering the association between rNMPs embedment and various diseases and cancer, the phenomenon of rNMPs embedment in DNA has become a prominent area of research in recent years.
ResultsWe introduce the rNMPID database, which is the first database revealing rNMP-embedment characteristics, strand bias, and preferred incorporation patterns in the genomic DNA of samples from bacterial to human cells of different genetic backgrounds.
The rNMPID database uses datasets generated by different rNMP-mapping techniques.
It provides the researchers with a solid foundation to explore the features of rNMPs embedded in the genomic DNA of multiple sources, and their association with cellular functions, and, in future, disease.
It also significantly benefits researchers in the fields of genetics and genomics who aim to integrate their studies with the rNMP-embedment data.
AvailabilityrNMPID is freely accessible on the web athttps://www.
rnmpid.
org.
Contactxph6113@gmail.
comorstorici@gatech.
edu.
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