User:Ricardo Alberto Chiong Zevallos/Sandbox 1

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== Structure ==
== Structure ==
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BMI1 is a 37 kDa protein composed of three distinct regions: an N-terminal RING domain, a central domain and a C-terminal proline-serine rich domain involved in the regulation of protein stability <ref>DOI: 10.1038/ncomms13343</ref> . In the PRC1 complex, BMI1 and RING1b heterodimerize via their N-terminal RING domains, forming an active E3 ubiquitin ligase. The heterodimerization occurs by the wrapping of the N-terminal arm of Ring1b around a groove on the surface of Bmi1 <ref>DOI: 10.1038/sj.emboj.7601144</ref> , which stabilizes the structure of Ring1b and greatly stimulates ligase activity <ref>DOI: 10.1038/nature02985</ref> . Is worth noting that RING-domains, such as the found in BMI1 and RING1b, are structurally stabilized through the binding of two zinc atoms, hence the <scene name='78/787701/Zn_highlighted_bmi1-ring1b/2'>BMI1/RING1b complex</scene> interacts with 4 Zinc atoms to the correct folding (Zn highlighted in magenta). X-ray crystallography shows prominent salt bridges being formed by the Bmi1/Ring1b pairs of Asp72/Arg70, Glu11/Lys112, Lys81/Glu48, and Thr41/Arg26 <ref>doi: 10.1038/emboj.2011.243</ref>
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BMI1 is a 37 kDa protein composed of three distinct regions: an N-terminal RING domain, a central domain and a C-terminal proline-serine rich domain involved in the regulation of protein stability <ref>DOI: 10.1038/ncomms13343</ref> . In the PRC1 complex, BMI1 and RING1b heterodimerize via their N-terminal RING domains, forming an active E3 ubiquitin ligase. The heterodimerization occurs by the wrapping of the N-terminal arm of Ring1b around a groove on the surface of Bmi1, which stabilizes the structure of Ring1b and greatly stimulates ligase activity. Is worth noting that RING-domains, such as the found in BMI1 and RING1b, are structurally stabilized through the binding of two zinc atoms, hence the <scene name='78/787701/Zn_highlighted_bmi1-ring1b/2'>BMI1/RING1b complex</scene> interacts with 4 Zinc atoms to the correct folding (Zn highlighted in magenta). X-ray crystallography shows prominent salt bridges being formed by the Bmi1/Ring1b pairs of Asp72/Arg70, Glu11/Lys112, Lys81/Glu48, and Thr41/Arg26 <ref>doi: 10.1038/emboj.2011.243</ref>
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[[Image:proposed architecture of the PRC1 complex oligomer.png|300px|]]
[[Image:proposed architecture of the PRC1 complex oligomer.png|300px|]]
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Proposed architecture of the PRC1 complex oligomer.<ref >DOI: 10.1038/ncomms13343</ref>
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Proposed architecture of the PRC1 complex oligomer.
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== Conservation ==
== Conservation ==
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== Disease ==
== Disease ==
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The bmi1 gene was first associated with lymphoma, in cooperation with the oncogene myc. BMI1-deficient fibroblasts and lymphocytes show high expression of the tumour suppressors p16 and p19Arf, which are encoded by ink4a locus. Conversely, overexpression of bmi1 allows fibroblast immortalization, downregulates expression of p16 and p19Arf and, leading to neoplastic transformation <ref>DOI: 10.1038/16476</ref> . The modulation of the ink4a expression probably is due to the ubiquitination of a H2A in the region, compacting the chromatin and downregulating the expression of p16 and p19Arf. The B- and T-cell lymphomas are highly dose-dependent phenotypes regarding bmi1 gene expression. The overexpression can lead to B- and T-cell lymphomas and partial reduction of Bmi1 leads to significant reduction in lymphoma formation <ref>DOI: 10.1038/16476</ref> and brain tumour formation.
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The bmi1 gene was first associated with lymphoma, in cooperation with the oncogene myc. BMI1-deficient fibroblasts and lymphocytes show high expression of the tumour suppressors p16 and p19Arf, which are encoded by ink4a locus. Conversely, overexpression of bmi1 allows fibroblast immortalization, downregulates expression of p16 and p19Arf and, leading to neoplastic transformation. The modulation of the ink4a expression probably is due to the ubiquitination of a H2A in the region, compacting the chromatin and downregulating the expression of p16 and p19Arf. The B- and T-cell lymphomas are highly dose-dependent phenotypes regarding bmi1 gene expression. The overexpression can lead to B- and T-cell lymphomas and partial reduction of Bmi1 leads to significant reduction in lymphoma formation and brain tumour formation.
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BMI1 is also associated with colon cancer, in which BMI1 activates WNT signaling mainly through the downregulation of IDAX expression <ref>DOI: 10.1038/16476</ref> . The BMI1 protein binds to the promoter of IDAX, a Wnt antagonist, and decreases it’s transcription. The WNT signaling pathway is very important in cell fate determination and tissue development and stem cell maintenance. Excessive activation of this pathway leads to tumorigenesis in several types of human cancers. According to The Cancer Genome Atlas Network, the WNT pathway is hyper-activated in over 90% of colon cancer.
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BMI1 is also associated with colon cancer, in which BMI1 activates WNT signaling mainly through the downregulation of IDAX expression. The BMI1 protein binds to the promoter of IDAX, a Wnt antagonist, and decreases it’s transcription. The WNT signaling pathway is very important in cell fate determination and tissue development and stem cell maintenance. Excessive activation of this pathway leads to tumorigenesis in several types of human cancers. According to The Cancer Genome Atlas Network, the WNT pathway is hyper-activated in over 90% of colon cancer.
[[Image:BMI1 regulates IDAX transcription.png]]
[[Image:BMI1 regulates IDAX transcription.png]]

Revision as of 14:17, 17 June 2018

Structure of a Bmi1 protein

Drag the structure with the mouse to rotate

References

  1. Jacobs JJ, Kieboom K, Marino S, DePinho RA, van Lohuizen M. The oncogene and Polycomb-group gene bmi-1 regulates cell proliferation and senescence through the ink4a locus. Nature. 1999 Jan 14;397(6715):164-8. doi: 10.1038/16476. PMID:9923679 doi:http://dx.doi.org/10.1038/16476
  2. Wang H, Wang L, Erdjument-Bromage H, Vidal M, Tempst P, Jones RS, Zhang Y. Role of histone H2A ubiquitination in Polycomb silencing. Nature. 2004 Oct 14;431(7010):873-8. Epub 2004 Sep 22. PMID:15386022 doi:10.1038/nature02985
  3. Gray F, Cho HJ, Shukla S, He S, Harris A, Boytsov B, Jaremko L, Jaremko M, Demeler B, Lawlor ER, Grembecka J, Cierpicki T. BMI1 regulates PRC1 architecture and activity through homo- and hetero-oligomerization. Nat Commun. 2016 Nov 9;7:13343. doi: 10.1038/ncomms13343. PMID:27827373 doi:http://dx.doi.org/10.1038/ncomms13343
  4. Bentley ML, Corn JE, Dong KC, Phung Q, Cheung TK, Cochran AG. Recognition of UbcH5c and the nucleosome by the Bmi1/Ring1b ubiquitin ligase complex. EMBO J. 2011 Jul 19. doi: 10.1038/emboj.2011.243. PMID:21772249 doi:10.1038/emboj.2011.243
  5. Taherbhoy AM, Huang OW, Cochran AG. BMI1-RING1B is an autoinhibited RING E3 ubiquitin ligase. Nat Commun. 2015 Jul 7;6:7621. doi: 10.1038/ncomms8621. PMID:26151332 doi:http://dx.doi.org/10.1038/ncomms8621
  6. doi: https://dx.doi.org/10.1038/sj.emboj.7601144
  7. doi: https://dx.doi.org/10.1016/j.bbrc.2018.01.063


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