User:Cameron Ball/Sandbox 1: Difference between revisions

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<Structure load='2efw' size='300' frame='true' align='right' caption='RTP dimer bound to TerB site (nRB)' scene='User:Cameron_Ball/Sandbox_1/Single_dimer_nrb/2' />
<Structure load='2efw' size='300' frame='true' align='right' caption='RTP dimer bound to TerB site (nRB)' scene='User:Cameron_Ball/Sandbox_1/Single_dimer_nrb/2' />
<Structure load='1f4k' size='300' frame='true' align='right' caption='RTP bound to symmetric DNA oligonucleotide (sRB)' scene='Insert optional scene name here' />
<Structure load='1f4k' size='300' frame='true' align='right' caption='RTP bound to symmetric DNA oligonucleotide (sRB)' scene='Insert optional scene name here' />
<scene name='User:Cameron_Ball/Sandbox_1/Rtp_dna_complex/1'>RTP binds DNA</scene> through interactions between the <scene name='User:Cameron_Ball/Sandbox_1/Rtp_alpha_helices_and_dna_/1'>alpha helices</scene> and the major groove of DNA.  
<scene name='User:Cameron_Ball/Sandbox_1/Rtp_dna_complex/1'>RTP binds DNA</scene> through interactions between the <scene name='User:Cameron_Ball/Sandbox_1/Rtp_alpha_helices_and_dna_/1'>alpha helices</scene> and the major groove of DNA. The first crystal structure of RTP complexed to the native TerB site (nRB) was solved by vivian ''et al'' in 2007. The induced asymmetry of the RTP dimer results in a <scene name='User:Cameron_Ball/Sandbox_1/Wing_up_turn/2'>wing up</scene> and a <scene name='User:Cameron_Ball/Sandbox_1/Wing_down_turn/2'>wing down</scene> beta loop turn.


==Mechanism==
==Mechanism==