Sandbox Reserved 194: Difference between revisions
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<Structure load='1RTA' size='450' frame='true' align='right' caption='Thymidylic acid tetramer and ApTpApApG complexed with ribonuclease A showing pi stacking and hydrogen bonding ' scene='Sandbox_Reserved_194/1rta_just_dt/1' /> | <Structure load='1RTA' size='450' frame='true' align='right' caption='Thymidylic acid tetramer and ApTpApApG complexed with ribonuclease A showing pi stacking and hydrogen bonding ' scene='Sandbox_Reserved_194/1rta_just_dt/1' /> | ||
RNA degradation and formation is essential in protein regulation within the body. RNase A is an endonuclease that cleaves and breaks down RNA through attack at its 2’OH. It has served as a model providing insight into the stability, folding and chemistry of proteins. ‘<ref>PMID:11848924</ref>’ ‘<ref>[http://web.virginia.edu/Heidi/chapter5/prostru/NAC/ribonuclease/ribonuclease.html | RNA degradation and formation is essential in protein regulation within the body. RNase A is an endonuclease that cleaves and breaks down RNA through attack at its 2’OH. It has served as a model providing insight into the stability, folding and chemistry of proteins. ‘<ref>PMID:11848924</ref>’ ‘<ref>[http://web.virginia.edu/Heidi/chapter5/prostru/NAC/ribonuclease/ribonuclease.html Leonidas, Demetres. "Ribonuclease A." 1997.]</ref>’ | ||
[[Image:1RTA_zoom.png|thumb|left|275px|Thymidylic acid tetramer complexed with ribonuclease A]] | [[Image:1RTA_zoom.png|thumb|left|275px|Thymidylic acid tetramer complexed with ribonuclease A]] | ||