Enzyme-linked receptor

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'''Under development!!!'''
'''Under development!!!'''
=[[Receptor protein serine/threonine kinases]]=
=[[Receptor protein serine/threonine kinases]]=
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==TGF-beta receptor==
==TGF-beta receptor==
*[[TGF-beta receptor]]
*[[TGF-beta receptor]]
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<span style="color:green">"Cys232 variant"</span> <scene name='Sandbox_Reserved_429/Chrondrogenesisinhibition/1'>inhibits chrondogenesis</scene> (formation of cartilage of developing limbs) but <span style="color:red">Pro35Arg</span> weakly inhibits chondrogenesis. <span style="color:tan">Glu48Lys</span>, <span style="color:red">Ile218Glu</span>, <span style="color:purple">Leu46Asp</span> Noggin <scene name='Sandbox_Reserved_429/3sitesnotinhibiting/1'>did not produce any changes</scene>. These variants also inhibits interdigital apoptosis in the same way. In this process, purified noggins was added to beads and exposed to developing chick limbs.
<span style="color:green">"Cys232 variant"</span> <scene name='Sandbox_Reserved_429/Chrondrogenesisinhibition/1'>inhibits chrondogenesis</scene> (formation of cartilage of developing limbs) but <span style="color:red">Pro35Arg</span> weakly inhibits chondrogenesis. <span style="color:tan">Glu48Lys</span>, <span style="color:red">Ile218Glu</span>, <span style="color:purple">Leu46Asp</span> Noggin <scene name='Sandbox_Reserved_429/3sitesnotinhibiting/1'>did not produce any changes</scene>. These variants also inhibits interdigital apoptosis in the same way. In this process, purified noggins was added to beads and exposed to developing chick limbs.
Mutations in human Noggin gene (NOG) cause changes in joint formation. If there are changes in positions of <span style="color:deepskyblue">Pro35Arg</span>, <span style="color:darkblue">Cys184Tyr</span>, <span style="color:brown">Gly189Cys</span>, <span style="color:green">Ile220Asn</span>, <span style="color:deepskyblue">Tyr222Cys</span>/Tyr222Asn, or <span style="color:red">Pro223Leu</span>, it is <scene name='Sandbox_Reserved_429/Mutations_sites2/3'>related to proximal symphalangism (SYM1)</scene>. Changes in positions of <span style="color:deepskyblue">Pro35Arg</span>, <span style="color:deepskyblue">Arg204Leu</span>, and <span style="color:deepskyblue">Tyr222Cys</span> is associated with tarsal/carpal coalition syndrome (TCC) and changes with <span style="color:orange">Trp217Gly</span> with multiple synostoses (SYNS1). Most of these changes can cause problem with joint formation and folding and stability. One particular mutation of interest is <scene name='Sandbox_Reserved_429/Pro35serp/1'>Pro35Ser mutation</scene> which is similar to Noggin Pro35Arg because it decreased binding affinities and lower inhibition of chrondogenesis. It is due to the structure of the polar hydroxyl group of <span style="color:purple">serine</span> that it is unable to bind to the hydrophobic pocket on the BMP. <ref>PMID: 12478285</ref>
Mutations in human Noggin gene (NOG) cause changes in joint formation. If there are changes in positions of <span style="color:deepskyblue">Pro35Arg</span>, <span style="color:darkblue">Cys184Tyr</span>, <span style="color:brown">Gly189Cys</span>, <span style="color:green">Ile220Asn</span>, <span style="color:deepskyblue">Tyr222Cys</span>/Tyr222Asn, or <span style="color:red">Pro223Leu</span>, it is <scene name='Sandbox_Reserved_429/Mutations_sites2/3'>related to proximal symphalangism (SYM1)</scene>. Changes in positions of <span style="color:deepskyblue">Pro35Arg</span>, <span style="color:deepskyblue">Arg204Leu</span>, and <span style="color:deepskyblue">Tyr222Cys</span> is associated with tarsal/carpal coalition syndrome (TCC) and changes with <span style="color:orange">Trp217Gly</span> with multiple synostoses (SYNS1). Most of these changes can cause problem with joint formation and folding and stability. One particular mutation of interest is <scene name='Sandbox_Reserved_429/Pro35serp/1'>Pro35Ser mutation</scene> which is similar to Noggin Pro35Arg because it decreased binding affinities and lower inhibition of chrondogenesis. It is due to the structure of the polar hydroxyl group of <span style="color:purple">serine</span> that it is unable to bind to the hydrophobic pocket on the BMP. <ref>PMID: 12478285</ref>
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=Histidine kinases=
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*[[Receiver domain of sensor histidine kinase CKI1]]
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=Toll-like Receptors=
=Toll-like Receptors=
*[[Toll-like Receptors]]
*[[Toll-like Receptors]]
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See also:
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=[[Abscisic acid receptor]]=
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The ABA-bound receptor binds to the protein phosphatase and inhibits its activity.
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'''See also:'''
*[[Kinase-linked, enzyme-linked and related receptors]]
*[[Kinase-linked, enzyme-linked and related receptors]]
*[[Receptor]]
*[[Receptor]]

Current revision

Glycosylated mouse toll-like receptor 3 dimer complex with double-stranded RNA 3ciy

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References and Notes

  1. Mohedas AH, Wang Y, Sanvitale CE, Canning P, Choi S, Xing X, Bullock AN, Cuny GD, Yu PB. Structure-activity relationship of 3,5-diaryl-2-aminopyridine ALK2 inhibitors reveals unaltered binding affinity for fibrodysplasia ossificans progressiva causing mutants. J Med Chem. 2014 Oct 9;57(19):7900-15. doi: 10.1021/jm501177w. Epub 2014 Sep 4. PMID:25101911 doi:http://dx.doi.org/10.1021/jm501177w
  2. Chen H, Kong Y, Chen J, Li L, Li X, Yu F, Ming Z. Crystal structure of the extracellular domain of the receptor-like kinase TMK3 from Arabidopsis thaliana. Acta Crystallogr F Struct Biol Commun. 2020 Aug 1;76(Pt 8):384-390. doi:, 10.1107/S2053230X20010122. Epub 2020 Jul 29. PMID:32744250 doi:http://dx.doi.org/10.1107/S2053230X20010122
  3. Groppe J, Greenwald J, Wiater E, Rodriguez-Leon J, Economides AN, Kwiatkowski W, Affolter M, Vale WW, Belmonte JC, Choe S. Structural basis of BMP signalling inhibition by the cystine knot protein Noggin. Nature. 2002 Dec 12;420(6916):636-42. PMID:12478285 doi:10.1038/nature01245
  4. Groppe J, Greenwald J, Wiater E, Rodriguez-Leon J, Economides AN, Kwiatkowski W, Affolter M, Vale WW, Belmonte JC, Choe S. Structural basis of BMP signalling inhibition by the cystine knot protein Noggin. Nature. 2002 Dec 12;420(6916):636-42. PMID:12478285 doi:10.1038/nature01245
  5. Sebald W, Mueller TD. The interaction of BMP-7 and ActRII implicates a new mode of receptor assembly. Trends Biochem Sci. 2003 Oct;28(10):518-21. PMID:14559178
  6. Groppe J, Greenwald J, Wiater E, Rodriguez-Leon J, Economides AN, Kwiatkowski W, Affolter M, Vale WW, Belmonte JC, Choe S. Structural basis of BMP signalling inhibition by the cystine knot protein Noggin. Nature. 2002 Dec 12;420(6916):636-42. PMID:12478285 doi:10.1038/nature01245
  7. Groppe J, Greenwald J, Wiater E, Rodriguez-Leon J, Economides AN, Kwiatkowski W, Affolter M, Vale WW, Belmonte JC, Choe S. Structural basis of BMP signalling inhibition by the cystine knot protein Noggin. Nature. 2002 Dec 12;420(6916):636-42. PMID:12478285 doi:10.1038/nature01245
  8. Amthor H, Christ B, Rashid-Doubell F, Kemp CF, Lang E, Patel K. Follistatin regulates bone morphogenetic protein-7 (BMP-7) activity to stimulate embryonic muscle growth. Dev Biol. 2002 Mar 1;243(1):115-27. PMID:11846481 doi:10.1006/dbio.2001.0555
  9. Groppe J, Greenwald J, Wiater E, Rodriguez-Leon J, Economides AN, Kwiatkowski W, Affolter M, Vale WW, Belmonte JC, Choe S. Structural basis of BMP signalling inhibition by the cystine knot protein Noggin. Nature. 2002 Dec 12;420(6916):636-42. PMID:12478285 doi:10.1038/nature01245

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Alexander Berchansky

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