Molecular Playground/CLOCK:BMAL1 heterodimer complex

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<StructureSection load='4F3L' size='340' side='right' caption='mouse CLOCK:BMAL1 heterodimer complex' scene='60/609802/Clock_bmal1/1'>
<StructureSection load='4F3L' size='340' side='right' caption='mouse CLOCK:BMAL1 heterodimer complex' scene='60/609802/Clock_bmal1/1'>
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The <scene name='60/609802/Clock_bmal1/1'>CLOCK:BMAL1 heterodimer complex</scene> is a vital regulatory component of the circadian rhythm protein regulation system. CLOCK (''Circadian Locomotor Output Cycles Kaput'') and BMAL1 (''Brain and muscle Arnt-like protein-1'') are <scene name='60/609802/Bhlh_ex/1'>the basic helix-loop-helix</scene> PER-ARNT-SIM (bHLH-PAS) proteins. The structure highlighted in yellow is a portion of bHLH structure in CLOCK. They are the main transcriptional activators in the mammalian circadian mechanism.<ref>DOI: 10.1126/science.280.5369.1564</ref> The binding between CLOCK and BMAL1 involves the N-terminal bHLH, PAS-A and PAS-B domains of both proteins. Each domain binds to its corresponding equivalent domain in the other protein. Though both proteins contain the same types of domains with similar primary amino acid sequences in each, the overall heterodimer is surprisingly asymmetrical due to differences in the spatial orientation of the domains in each protein. Since this heterodimer complex involves the binding of all of the major domains in both participating proteins, the overall binding affinity is very high.
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The <scene name='60/609802/Clock_bmal1/1'>CLOCK:BMAL1 heterodimer complex</scene> is a vital regulatory component of the circadian rhythm protein regulation system. CLOCK (''Circadian Locomotor Output Cycles Kaput'') and BMAL1 (''Brain and muscle Arnt-like protein-1'') are <scene name='60/609802/Bhlh_ex/1'>the basic helix-loop-helix</scene> PER-ARNT-SIM (bHLH-PAS) proteins. The structure highlighted in yellow is a portion of bHLH structure in CLOCK. The CLOCK:BMAL1 heterodimer is the main transcriptional activator in the mammalian circadian mechanism.<ref>DOI: 10.1126/science.280.5369.1564</ref> The binding between CLOCK and BMAL1 involves the N-terminal bHLH, PAS-A and PAS-B domains of both proteins. Each domain binds to its corresponding equivalent domain in the other protein. Though both proteins contain the same types of domains with similar primary amino acid sequences in each, the overall heterodimer is surprisingly asymmetrical due to differences in the spatial orientation of the domains in each protein. Since this heterodimer complex involves the binding of all of the major domains in both participating proteins, the overall binding affinity is very high.
== Role in Circadian Rhythm ==
== Role in Circadian Rhythm ==

Revision as of 00:04, 3 December 2014

CLOCK:BMAL1 heterodimer complex

mouse CLOCK:BMAL1 heterodimer complex

Drag the structure with the mouse to rotate

References

  1. doi: https://dx.doi.org/10.1126/science.280.5369.1564
  2. Silver R, Kriegsfeld LJ. Circadian rhythms have broad implications for understanding brain and behavior. Eur J Neurosci. 2014 Jun;39(11):1866-80. doi: 10.1111/ejn.12593. Epub 2014 May 5. PMID:24799154 doi:http://dx.doi.org/10.1111/ejn.12593
  3. Huang N, Chelliah Y, Shan Y, Taylor CA, Yoo SH, Partch C, Green CB, Zhang H, Takahashi JS. Crystal structure of the heterodimeric CLOCK:BMAL1 transcriptional activator complex. Science. 2012 Jul 13;337(6091):189-94. Epub 2012 May 31. PMID:22653727 doi:10.1126/science.1222804
  4. Lowrey PL, Takahashi JS. Genetics of circadian rhythms in Mammalian model organisms. Adv Genet. 2011;74:175-230. doi: 10.1016/B978-0-12-387690-4.00006-4. PMID:21924978 doi:http://dx.doi.org/10.1016/B978-0-12-387690-4.00006-4
  5. Stevens RG. Circadian disruption and breast cancer: from melatonin to clock genes. Epidemiology. 2005 Mar;16(2):254-8. doi: 10.1097/01.ede.0000152525.21924.54. PMID:15703542 doi:http://dx.doi.org/10.1097/01.ede.0000152525.21924.54
  6. Ramsey KM, Yoshino J, Brace CS, Abrassart D, Kobayashi Y, Marcheva B, Hong HK, Chong JL, Buhr ED, Lee C, Takahashi JS, Imai S, Bass J. Circadian clock feedback cycle through NAMPT-mediated NAD+ biosynthesis. Science. 2009 May 1;324(5927):651-4. doi: 10.1126/science.1171641. Epub 2009 Mar , 19. PMID:19299583 doi:http://dx.doi.org/10.1126/science.1171641

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