Chemistry: molecular biology and microbiology – Micro-organism – tissue cell culture or enzyme using process... – Preparing compound containing saccharide radical
Reexamination Certificate
2008-01-29
2008-01-29
Kaushal, Sumesh (Department: 1633)
Chemistry: molecular biology and microbiology
Micro-organism, tissue cell culture or enzyme using process...
Preparing compound containing saccharide radical
C536S023100, C536S024100, C536S024300, C536S024500, C435S091300, C435S091500, C435S183000, C435S320100
Reexamination Certificate
active
10250029
ABSTRACT:
Materials and methods for incorporating adenosine derivatives into the 5′ end of transcribed RNA are disclosed. Adenosine derivatives include naturally occurring compounds such as Coenzyme A, NAD, and FAD, as well as various non-naturally occurring compounds. The derivatives can be used to impart desirable properties to the RNA such as fluorescence, the ability to bind to receptors or ligands, and improved catalytic activity. The transcribed RNAs can be used in a variety of applications including nucleic acid detection, designed or random generation of catalytic RNAs, antisense applications, and in the study of RNA structure and function.
REFERENCES:
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http://www-dept.usm.edu/˜chembio/FACULTY/huang.htm; The University of Southern Mississippi; “Faqing Huang;” printed May 12, 2003.
http://ocean.otr.usm.edu/˜fhuan2/; “Faqing Huang Lab Homepage,” printed May 12, 2003.
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“RNA-Catalyzed CoA, NAD, and FAD Synthesis from Phosphopantetheine, NMN, and FMN;” Faqing Huang, Charles Walter Bugg, Michael Yarus; Biochemistry 2000, 39, 15548-15555.
“Efficient Incorporation of CoA, NAD and FAD into RNA by in vitro transcription;” Faqing Huang; Nucleic Acids Research, 2003, vol. 31, Oxford University Press 2003.
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“More Mistakes by T7 RNA Polymerase at the 5' ends of in vitro-transcribed RNAs;” Mark Helm, Herve Brule, Richard Giege; Catherine Florentz; RNA (1999), 5:618-621, Cambridge University Pres. Printed in the USA.
Coleman TM, Wang G, Huang F (2004).Superior 5' homogeneity of RNA from ATP-initiated transcription under the T7 ø2.5 promoter. Nucleic Acids Research. 32(1)e14.
Hiriyanna Kelaginamane
Howrey LLP
Kaushal Sumesh
The University of Southern Mississippi
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