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Recognition of tRNAHis in an RNase P-Free Nanoarchaeum
Indira Rizqita Ivanesthi
, Gita Riswana Nawung Rida
, Aditya Aryandi Setiawibawa
,
Yi Kuan Tseng
, Arief Muammar
,
Chien Chia Wang
Graduate Institute of Statistics
Department of Life Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Scopus citations
Overview
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Keyphrases
TRNA Synthetase
100%
RNase P
100%
Nanoarchaea
100%
Transfer RNA (tRNA)
62%
Monophosphate
62%
Triphosphate
50%
Hyperthermophilic Archaea
25%
Recognition Elements
25%
Guanosine
25%
Nanoarchaeum Equitans
25%
Amino Acid Residues
12%
Universal Characteristic
12%
Minor Effect
12%
Preferred Position
12%
Thg1
12%
Identity Elements
12%
Guanylyltransferase
12%
Anticodon
12%
TRNAHis
12%
Immunology and Microbiology
Hyperthermophilic Archaeon
100%
Nanoarchaeum
100%
Nanoarchaeum equitans
100%
Anticodon
50%
Amino Acid
50%
Transfer RNA
50%
Biochemistry, Genetics and Molecular Biology
Nanoarchaeum
100%
RNase P
100%
Enzyme
40%
Hyperthermophilic Archaeon
40%
Nanoarchaeum equitans
40%
Guanosine
40%
Amino Acids
20%
Anticodon
20%
Transfer RNA
20%
Arts and Humanities
Curiosity
100%
disregard
100%
Cognates
100%
Medicine and Dentistry
Ribonuclease
100%
Synthetase
100%
Guanosine
25%
Amino Acid
12%
Anticodon
12%
Transfer RNA
12%
Agricultural and Biological Sciences
Ribonuclease
100%
Archaeon
40%
Guanosine
40%
Anticodon
20%
Transfer RNA
20%