Results 241 to 250 of about 365,508 (294)
RIBOTAC-mediated degradation of hsa-microRNA-301a-3p suppresses TNBC bone metastasis. [PDF]
Zhou W +9 more
europepmc +1 more source
Amplification of RNA for identification of Zika and HCV in whole blood. [PDF]
Lim J +7 more
europepmc +1 more source
1. A limited amount of RNase U, (0.5units/mg RNA) can be used as a purine specific ribonuclease, but the specificity is not absolute; the susceptibility of four nucleo-tide residues to RNase Ui increases in the order; U < C < G < A.
T, Uchida, T, Arima, F, Egami
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RNase 7 belongs to the RNase A superfamily and exhibits a broad spectrum of antimicrobial activity against various microorganisms. RNase 7 is expressed in human skin, and expression in keratinocytes can be induced by cytokines and microbes.
Jürgen Harder, Maren Simanski
exaly +2 more sources
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Is RNase V a manifestation of RNase II?
Biochemical and Biophysical Research Communications, 1971Abstract The relationship between RNase II and RNase V activities in Escherichia coli was investigated. The experiments suggest the possibility that the activity named RNase V was due to residual RNase II activity or a related enzyme on ribosomes.
A L, Bothwell, D, Apirion
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Nature Plants, 2020
Plants have developed a variety of molecular ways to express self-incompatibility (SI) that promote outcrossing by preventing self-fertilization. A new study reveals that Citrus uses the S-RNase as the key molecule for expressing SI, giving us further evidence that the S-RNase system is widespread and evolved in an early branch of angiosperms.
Sota Fujii, Seiji Takayama
openaire +2 more sources
Plants have developed a variety of molecular ways to express self-incompatibility (SI) that promote outcrossing by preventing self-fertilization. A new study reveals that Citrus uses the S-RNase as the key molecule for expressing SI, giving us further evidence that the S-RNase system is widespread and evolved in an early branch of angiosperms.
Sota Fujii, Seiji Takayama
openaire +2 more sources
A novel protein shared by RNase MRP and RNase P
RNA (New York, N.Y.), 1997We have isolated suppressors of the temperature-sensitive rRNA processing mutation rrp2-2 in Saccharomyces cerevisiae. A class of extragenic suppressors was mapped to the YBR257w reading frame in the right arm of Chromosome II. Characterization of this gene, renamed POP4, shows that the gene product is necessary both for normal 5.8S rRNA processing and
S, Chu, J M, Zengel, L, Lindahl
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