首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Complex flexibility of the transforming growth factor beta superfamily.
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Complex flexibility of the transforming growth factor beta superfamily.

机译:转化生长因子β超家族的复杂灵活性。

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The transforming growth factors beta (TGF-beta s) are important modulators of growth and differentiation. They are intermolecular disulfide-bonded homodimeric molecules. The monomer fold has a conserved cystine knot and lacks a hydrophobic core. The biological specificity of a given member of the family is believed to be determined by the conformational flexibility of the variable loop regions of the monomer. The monomer subunit assembly in the dimer is stabilized mainly by hydrophobic contacts and a few hydrogen bonds. Since these interactions are nondirectional, we examined subunit assemblies of TGF-beta by using conformational analysis. The different subunit assemblies in TGF-beta 2 dimer were characterized in terms of the intersubunit disulfide torsion. Our analyses show that the subunit assemblies fall into two states: the crystallographically observed gauche+conformation and the previously not reported gauche--conformation, both having almost identical interaction energies. Furthermore, there is significant flexibility in the subunit assembly within the gauche+ and the gauche- states of the disulfide bond. The monomer subunit assembly is independent of the variations about the loop regions. The variations in the loop regions, coupled with flexibility in the monomer assembly, lead to a complex flexibility in the dimer of the TGF-beta superfamily. For the TGF-beta superfamily, the cystine knot acts as a scaffold and complex flexibility provides for biological selectivity. Complex flexibility might provide an explanation for the diverse range of biological activities that these important molecules display.
机译:转化生长因子β(TGF-beta s)是生长和分化的重要调节剂。它们是分子间二硫键结合的同二聚体分子。单体褶皱具有保守的胱氨酸结,并且没有疏水核心。认为给定家族成员的生物学特异性是由单体的可变环区的构象柔韧性决定的。二聚体中的单体亚基组装主要通过疏水接触和一些氢键来稳定。由于这些相互作用是非方向性的,因此我们通过构象分析检查了TGF-β的亚基组装。 TGF-β2二聚体中的不同亚基组装体是通过亚基间二硫键扭转来表征的。我们的分析表明,亚基组装体分为两种状态:晶体学上观察到的gauche +构象和先前未报道的gauche-构象,两者具有几乎相同的相互作用能。此外,二硫键的gauche +和gauche-状态内的亚基组装具有显着的灵活性。单体亚单元的组装与环区域的变化无关。环区域的变化,加上单体组装的柔性,导致TGF-β超家族的二聚体具有复杂的柔性。对于TGF-β超家族,胱氨酸结可作为支架,复杂的柔性可提供生物学选择性。复杂的柔韧性可能为这些重要分子所表现出的多种生物活性提供了解释。

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