User:Linnea Saunders/Sandbox 1

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PAS domains are present in a large variety of proteins, and their function is often to sense different stimuli, such as oxygen tension, redox potential, and light intensity, but they can also serve to facilitate protein-protein interaction, as is the case of CLOCkBMAL1.<sup>5</sup> The amino acid sequence of this domain varies greatly among the proteins it is present in, as well as among different species, but the structure retains similarities. All PAS domains retain a structure similar to <scene name='84/842915/Photoactive_yellow_protein/1'>photoactive yellow protein</scene>. By clicking through the <scene name='84/842915/Pas_domains_of_clock_bmal1/1'>four PAS domains</scene> of CLOCK:BMAL1, <scene name='84/842915/Pas_domain_1/1'>1</scene>, <scene name='84/842915/Pas_domain_2/1'>2</scene>, <scene name='84/842915/Pas_domain_3/1'>3</scene> and <scene name='84/842915/Pas_domain_4/1'>4</scene>, you can observe the general structural trends of the PAS domain. While the amino acids sequences of the PAS domains in the CLOCK:BMAL1 complex varies among species, the general structure and presence of the PAS domain is highly conserved.
PAS domains are present in a large variety of proteins, and their function is often to sense different stimuli, such as oxygen tension, redox potential, and light intensity, but they can also serve to facilitate protein-protein interaction, as is the case of CLOCkBMAL1.<sup>5</sup> The amino acid sequence of this domain varies greatly among the proteins it is present in, as well as among different species, but the structure retains similarities. All PAS domains retain a structure similar to <scene name='84/842915/Photoactive_yellow_protein/1'>photoactive yellow protein</scene>. By clicking through the <scene name='84/842915/Pas_domains_of_clock_bmal1/1'>four PAS domains</scene> of CLOCK:BMAL1, <scene name='84/842915/Pas_domain_1/1'>1</scene>, <scene name='84/842915/Pas_domain_2/1'>2</scene>, <scene name='84/842915/Pas_domain_3/1'>3</scene> and <scene name='84/842915/Pas_domain_4/1'>4</scene>, you can observe the general structural trends of the PAS domain. While the amino acids sequences of the PAS domains in the CLOCK:BMAL1 complex varies among species, the general structure and presence of the PAS domain is highly conserved.
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The bHLH domains of each subunit are crucial to the complex's ability to bind DNA and regulate its transcription.
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The bHLH domains of each subunit are crucial to the complex's ability to bind DNA and regulate its transcription. When <scene name='84/842915/Bhlh_domains_of_clock_bmal1/1'>CLOCK:BMAL1 interacts with DNA</scene>, the strand of DNA is nestled within the two alpha-helices of bHLH domains of the complex, interacting via hydrogen bonds and Van der Waals forces to support the interactions. The alpha-helices interact with the major groove of the DNA. The intention of this interaction is to regulate the transcription of DNA, CLOCK:BMAL1 interacts with the E-box of DNA, promoting transcription of the gene.
== Post Translation Modifications ==
== Post Translation Modifications ==

Revision as of 18:57, 27 April 2020

CLOCK:BMAL1

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References

1. 1. Li S, Wang M, Ao X, et al. CLOCK is a substrate of SUMO and sumoylation of CLOCK upregulates the transcriptional activity of estrogen receptor-α. Oncogene. 2013;32(41):4883-4891. doi:10.1038/onc.2012.518 2. Menet JS, Pescatore S, Rosbash M. CLOCK:BMAL1 is a pioneer-like transcription factor. Genes Dev. 2014;28(1):8–13. doi:10.1101/gad.228536.113

3. Takahashi JS, Hong HK, Ko CH, McDearmon EL. The genetics of mammalian circadian order and disorder: implications for physiology and disease. Nat Rev Genet. 2008;9(10):764–775. doi:10.1038/nrg2430 4. 1. Li S, Wang M, Ao X, et al. CLOCK is a substrate of SUMO and sumoylation of CLOCK upregulates the transcriptional activity of estrogen receptor-α. Oncogene. 2013;32(41):4883-4891. doi:10.1038/onc.2012.518 5. 1. Vreede J, Van der Horst MA, Hellingwerf KJ, Crielaard W, Van Aalten DMF. PAS domains. Common structure and common flexibility. J Biol Chem. 2003;278(20):18434-18439. doi:10.1074/jbc.M301701200

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Linnea Saunders

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