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1
Intrinsically disordered gamma-subunit of cGMP phosphodiesterase encodes functionally relevant transient secondary and tertiary structure.环磷酸鸟苷磷酸二酯酶的内在无序γ亚基编码功能相关的瞬时二级和三级结构。
Proc Natl Acad Sci U S A. 2008 Feb 5;105(5):1505-10. doi: 10.1073/pnas.0709558105. Epub 2008 Jan 29.
2
Regulation of Escherichia coli SOS mutagenesis by dimeric intrinsically disordered umuD gene products.二聚体内在无序的umuD基因产物对大肠杆菌SOS诱变的调控
Proc Natl Acad Sci U S A. 2008 Jan 29;105(4):1152-7. doi: 10.1073/pnas.0706067105. Epub 2008 Jan 23.
3
Application of the random coil index to studying protein flexibility.随机卷曲指数在研究蛋白质柔韧性中的应用。
J Biomol NMR. 2008 Jan;40(1):31-48. doi: 10.1007/s10858-007-9208-0. Epub 2007 Nov 6.
4
Detection of initiation sites in protein folding of the four helix bundle ACBP by chemical shift analysis.通过化学位移分析检测四螺旋束ACBP蛋白质折叠中的起始位点。
FEBS Lett. 2007 Oct 16;581(25):4965-71. doi: 10.1016/j.febslet.2007.09.027. Epub 2007 Sep 24.
5
The RCI server: rapid and accurate calculation of protein flexibility using chemical shifts.RCI服务器:利用化学位移快速准确地计算蛋白质柔韧性。
Nucleic Acids Res. 2007 Jul;35(Web Server issue):W531-7. doi: 10.1093/nar/gkm328. Epub 2007 May 7.
6
Sensitivity of secondary structure propensities to sequence differences between alpha- and gamma-synuclein: implications for fibrillation.α-突触核蛋白和γ-突触核蛋白二级结构倾向对序列差异的敏感性:对纤维化的影响。
Protein Sci. 2006 Dec;15(12):2795-804. doi: 10.1110/ps.062465306. Epub 2006 Nov 6.
7
Photochemical surface mapping of C14S-Sml1p for constrained computational modeling of protein structure.用于蛋白质结构受限计算建模的C14S-Sml1p光化学表面图谱分析。
Anal Biochem. 2005 May 15;340(2):201-12. doi: 10.1016/j.ab.2005.02.005.
8
The conserved Mec1/Rad53 nuclear checkpoint pathway regulates mitochondrial DNA copy number in Saccharomyces cerevisiae.保守的Mec1/Rad53核检查点途径调节酿酒酵母中的线粒体DNA拷贝数。
Mol Biol Cell. 2005 Jun;16(6):3010-8. doi: 10.1091/mbc.e05-01-0053. Epub 2005 Apr 13.
9
A glimpse at the organization of the protein universe.蛋白质世界的组织一瞥。
Proc Natl Acad Sci U S A. 2005 Apr 19;102(16):5641-2. doi: 10.1073/pnas.0500274102. Epub 2005 Apr 12.
10
Intrinsically unstructured proteins and their functions.内在无序蛋白质及其功能。
Nat Rev Mol Cell Biol. 2005 Mar;6(3):197-208. doi: 10.1038/nrm1589.

内在无序的核糖核苷酸还原酶抑制剂Sml1是一种动态二聚体。

The intrinsically disordered RNR inhibitor Sml1 is a dynamic dimer.

作者信息

Danielsson Jens, Liljedahl Leena, Bárány-Wallje Elsa, Sønderby Pernille, Kristensen Line Hyltoft, Martinez-Yamout Maria A, Dyson H Jane, Wright Peter E, Poulsen Flemming M, Mäler Lena, Gräslund Astrid, Kragelund Birthe B

机构信息

Department of Biochemistry and Biophysics, Stockholm University, S-106 91 Stockholm, Sweden.

出版信息

Biochemistry. 2008 Dec 16;47(50):13428-37. doi: 10.1021/bi801040b.

DOI:10.1021/bi801040b
PMID:19086274
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2747730/
Abstract

Sml1 is a small ribonucleotide reductase (RNR) regulatory protein in Saccharomyces cerevisiae that binds to and inhibits RNR activation. NMR studies of 15N-labeled Sml1 (104 residues), as well as of a truncated variant (residues 50-104), have allowed characterization of their molecular properties. Sml1 belongs to the class of intrinsically disordered proteins with a high degree of dynamics and very little stable structure. Earlier suggestions for a dimeric structure of Sml1 were confirmed, and from translation diffusion NMR measurements, a dimerization dissociation constant of 0.1 mM at 4 degreesC could be determined. The hydrodynamic radius for the monomeric form of Sml1 was determined to be 23.4 A, corresponding to a protein size between those of a globular protein and a coil. Formation of a dimer results in a hydrodynamic radius of 34.4 A. The observed chemical shifts showed in agreement with previous studies two segments with transient helical structure, residues 4-20 and 60-86, and relaxation studies clearly showed restricted motion in these segments. A spin-label attached to C14 showed long-range interactions with residues 60-70 and 85-95, suggesting that the N-terminal domain folds onto the C-terminal domain. Importantly, protease degradation studies combined with mass spectrometry indicated that the N-terminal domain is degraded before the C-terminal region and thus may serve as a protection against proteolysis of the functionally important C-terminal region. Dimer formation was not associated with significant induction of structure but was found to provide further protection against proteolysis. We propose that this molecular shielding and protection of vital functional structures from degradation by functionally unimportant sites may be a general attribute of other natively disordered proteins.

摘要

Sml1是酿酒酵母中的一种小核糖核苷酸还原酶(RNR)调节蛋白,它能结合并抑制RNR的激活。对15N标记的Sml1(104个残基)以及截短变体(残基50 - 104)进行的核磁共振研究,使得对它们的分子特性得以表征。Sml1属于内在无序蛋白类别,具有高度的动态性且几乎没有稳定结构。早期关于Sml1二聚体结构的推测得到了证实,通过平移扩散核磁共振测量,可确定在4℃时二聚化解离常数为0.1 mM。Sml1单体形式的流体动力学半径被确定为23.4 Å,这对应于介于球状蛋白和卷曲蛋白之间的蛋白质大小。形成二聚体导致流体动力学半径为34.4 Å。观察到的化学位移与先前研究一致,显示有两个具有短暂螺旋结构的片段,即残基4 - 20和60 - 86,并且弛豫研究清楚地表明这些片段中的运动受限。连接到C14的自旋标记显示与残基60 - 70和85 - 95有长程相互作用,这表明N端结构域折叠到C端结构域上。重要的是,蛋白酶降解研究与质谱分析相结合表明,N端结构域在C端区域之前被降解,因此可能起到保护功能上重要的C端区域不被蛋白水解的作用。二聚体形成与结构的显著诱导无关,但被发现能进一步提供抗蛋白水解的保护。我们提出,这种对重要功能结构的分子屏蔽以及使其免受功能不重要位点降解的保护作用,可能是其他天然无序蛋白的一个普遍特性。