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・ 169th meridian
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・ 16S
16S ribosomal RNA
・ 16S rRNA
・ 16S rRNA (adenine1408-N1)-methyltransferase
・ 16S rRNA (adenine1518-N6/adenine1519-N6)-dimethyltransferase
・ 16S rRNA (cytidine1402-2'-O)-methyltransferase
・ 16S rRNA (cytidine1409-2'-O)-methyltransferase
・ 16S rRNA (cytosine1402-N4)-methyltransferase
・ 16S rRNA (cytosine1407-C5)-methyltransferase
・ 16S rRNA (cytosine967-C5)-methyltransferase
・ 16S rRNA (guanine1207-N2)-methyltransferase
・ 16S rRNA (guanine1405-N7)-methyltransferase
・ 16S rRNA (guanine1516-N2)-methyltransferase
・ 16S rRNA (guanine527-N7)-methyltransferase
・ 16S rRNA (guanine966-N2)-methyltransferase
・ 16S rRNA (uracil1498-N3)-methyltransferase


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16S ribosomal RNA : ウィキペディア英語版
16S ribosomal RNA

16S ribosomal RNA (or 16S rRNA) is a component of the 30S small subunit of prokaryotic ribosomes. The genes coding for it are referred to as 16S rDNA and are used in reconstructing phylogenies, due to the slow rates of evolution of this region of the gene. Carl Woese and George E. Fox were two of the people who pioneered the use of 16S rRNA in phylogenies.
Multiple sequences of 16S rRNA can exist within a single bacterium.
==Functions==
It has several functions:
* Like the large (23S) ribosomal RNA, it has a structural role, acting as a scaffold defining the positions of the ribosomal proteins.
* The 3' end contains the anti-Shine-Dalgarno sequence, which binds upstream to the AUG start codon on the mRNA. The 3'-end of 16S RNA binds to the proteins S1 and S21 known to be involved in initiation of protein synthesis; RNA-protein cross-linking by A.P. Czernilofsky et al. (FEBS Lett. Vol 58, pp 281–284, 1975).
* Interacts with 23S, aiding in the binding of the two ribosomal subunits (50S+30S)
* Stabilizes correct codon-anticodon pairing in the A site, via a hydrogen bond formation between the N1 atom of Adenine (''see image of Purine chemical structure'') residues 1492 and 1493 and the 2'OH group of the mRNA backbone

抄文引用元・出典: フリー百科事典『 ウィキペディア(Wikipedia)
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