User:Katie Huff/Smaug Protein.

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==About this Structure==
==About this Structure==
Smaug protein is relatively large, weighing in at 999 amino acids. However, only about 180 amino acids within the structure are responsible for its RNA-binding activity. This domain is known as the SAM domain, which is mentioned above. The SAM domain is found in conjunction with a pseudo-HEAT repeat analogous topology (PHAT) domain. Studies show that the SAM domain is the primary interactive portion of the protein that interacts specifically with the binding region (TCE) of maternal nanos mRNA. Thus, SAM domains are pivotal in RNA binding.
Smaug protein is relatively large, weighing in at 999 amino acids. However, only about 180 amino acids within the structure are responsible for its RNA-binding activity. This domain is known as the SAM domain, which is mentioned above. The SAM domain is found in conjunction with a pseudo-HEAT repeat analogous topology (PHAT) domain. Studies show that the SAM domain is the primary interactive portion of the protein that interacts specifically with the binding region (TCE) of maternal nanos mRNA. Thus, SAM domains are pivotal in RNA binding.
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Smaug protein’s secondary structure consists primarily of alpha helices and turns. The ribosome binding bdomain (RBD) has an <scene name='58/582460/Sam/1'>upper</scene> (SAM; helices α1-α4 and h2, residues 596–657) and lower (PHAT; helices α7-α13, residues 658–764). The two are associated through helices α5 and α6, respectively.
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Smaug protein’s secondary structure consists primarily of alpha helices and turns. The ribosome binding bdomain (RBD) has an <scene name='58/582460/Sam/1'>upper</scene> (SAM; helices α1-α4 and h2, residues 596–657) and <scene name='58/582460/Phat/1'>lower</scene> (PHAT; helices α7-α13, residues 658–764). The two are associated through helices α5 and α6, respectively.
the globular Smg SAM domain houses seven lysines and two arginines, several of which are condensed over one face of the domain. This makes up a <scene name='58/582460/Electropositive/1'>patch</scene> of [http://en.wikipedia.org/wiki/Electropositive#Electropositivity electropositive] potential. The patch is seen over helices α1, h2, and α5, and expanses the PHAT domain interface to the N-terminus of α5. The electropositive nature of the Smaug SAM domain makes it unique among other proteins studied thus far. The PHAT domain is made up of of three layered parallel helices (α6, α9, and α13) in conjunction with two layered antiparallel helices (α7 and α11) into five-helix cylinder. This contrasts classical four-helix bundles in that it does not contain the usual alternating parallel and antiparallel helices. Unlike the SAM domain, most of the PHAT surface domain is electronegative.
the globular Smg SAM domain houses seven lysines and two arginines, several of which are condensed over one face of the domain. This makes up a <scene name='58/582460/Electropositive/1'>patch</scene> of [http://en.wikipedia.org/wiki/Electropositive#Electropositivity electropositive] potential. The patch is seen over helices α1, h2, and α5, and expanses the PHAT domain interface to the N-terminus of α5. The electropositive nature of the Smaug SAM domain makes it unique among other proteins studied thus far. The PHAT domain is made up of of three layered parallel helices (α6, α9, and α13) in conjunction with two layered antiparallel helices (α7 and α11) into five-helix cylinder. This contrasts classical four-helix bundles in that it does not contain the usual alternating parallel and antiparallel helices. Unlike the SAM domain, most of the PHAT surface domain is electronegative.
[http://www.sciencedirect.com.proxy.lib.utk.edu:90/science/article/pii/S1097276503001783 4]
[http://www.sciencedirect.com.proxy.lib.utk.edu:90/science/article/pii/S1097276503001783 4]

Revision as of 18:34, 17 April 2014

Smaug Protein

Smaug 3D strcture

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Proteopedia Page Contributors and Editors (what is this?)

Katie Huff, Ann Taylor

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