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Mechanistic insights into RNase L through use of an MDMX-derived multi-functional protein domain.

Biochim Biophys Acta.. 2013-04;  S1570-9639(13):00164 - 7
Garvie CW, Vasanthavada K, Xiang Q. Hoffmann-La Roche Inc., Discovery Technology, 340 Kingsland Street, Nutley, NJ, 07110, USA.
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摘要

RNase L is part of the innate immune response to viral infection. It is activated by a small oligonucleotide (2-5A) whose synthesis is initiated as part of the interferon response. Binding of 2-5A to the N-terminal regulatory region, the ANK domain, of RNase L activates its ribonuclease activity and results in cleavage of RNA in the cell, which ultimately leads to apoptosis of the infected cell. The mechanism by which 2-5A activates the ribonuclease activity of RNase L is currently unclear but 2-5A has been shown to induce dimerization of RNase L. To investigate the importance of dimerization of RNase L, we developed a 15kDa dimerization-inducing protein domain that was fused to the N-terminus of RNase L. From ... More

关键词

RNase L; Dimerization; MDMX; Affinity purification; Ribonuclease; FRET assay