Sandbox Reserved 327: Difference between revisions

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eIF1 is a small protein (12 kDa) that is encode by ''sui1'' which is one of the component of multifactor complex (MFC) that plays an important role in regulating translation initiation <ref name="asano"/><ref name="eIF1"/>. eIF1 is a universal translation factor across organisms which make eIF1 homologs can be found in other eukayotes, archaea, and some bacteria <ref name="flet"/>. Yeast eIF1 contains a   
eIF1 is a small protein (12 kDa) that is encode by ''sui1'' which is one of the component of multifactor complex (MFC) that plays an important role in regulating translation initiation <ref name="asano"/><ref name="eIF1"/>. eIF1 is a universal translation factor across organisms which make eIF1 homologs can be found in other eukayotes, archaea, and some bacteria <ref name="flet"/>. Yeast eIF1 contains a   
<scene name='Sandbox_Reserved_327/Ribbon_structure/1'>β-sheet with α helices</scene>
<scene name='Sandbox_Reserved_327/Ribbon_structure/1'>β-sheet with α helices</scene>
on one side with N-terminal tail (aa 1-23) or NTT <ref name="eIF1"/>. It is homolog to human eIF1 since the structure is similar to human eIF1 (87%) with 63% matched DNA composition (identity) <ref name="flet"/> <ref name="eIF1"/>. However, yeast eIF1 has two different conformations with two clear sets of backbone resonances for 13 of the 20 residues that lead to 20 different possible solution structure of yeast eIF1 <ref name="eIF1"/>.   
on one side with N-terminal tail (aa 1-23) or NTT <ref name="eIF1"/>. It is homolog to
<scene name='Sandbox_Reserved_327/Human_eif1/1'>human eIF1</scene>
since the structure is similar to human eIF1 (87%) with 63% matched DNA composition (identity) <ref name="flet"/> <ref name="eIF1"/>. However, yeast eIF1 has two different conformations with two clear sets of backbone resonances for 13 of the 20 residues that lead to 20 different possible solution structure of yeast eIF1 <ref name="eIF1"/>.   




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OCA, Edith Nurima Laban