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首页> 外文期刊>Journal of chemical information and modeling >Multidimensional Drift of Sequence Attributes and Functional Profiles in the Superfamily of the Three-Finger Proteins and Their Structural Homologues
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Multidimensional Drift of Sequence Attributes and Functional Profiles in the Superfamily of the Three-Finger Proteins and Their Structural Homologues

机译:三指蛋白及其结构同源物超家族中序列属性和功能谱的多维漂移

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摘要

Functional diversity of the three-finger-protein domain (TFPD) had been acquired via hypervariability of some sequence positions and extensive insertion/deletion of short AA-segments that caused multidimensional drift of several sequence attributes such as the overall (HI) and local hydrophobicity levels, the isoelectric point (pI), distribution of charges, and local polarizability potentials. In consequence, the pis of various TFPDs vary from 3 to 10, and the HIs span from highly hydrophilic to extreme hydrophobic levels. Our analyses of diverse genomic databases suggest that a primordial TFP-like fold could have been adapted to extracellular N-terminal domain (ECD) of the TGF beta series of receptors that are crucial for morphogenesis of multicellular organisms with elaborated body plans. It seems plausible that from the exons coding for the primordial ECD had radiated some ORFs that gave rise to small monodomain and multidomain TFPs that may be either membrane-bound or soluble entities and whose repertoire expanded in the genomes of vertebrates. We show that the above-mentioned attributes have been restrained within narrow ranges in several functionally related groups of TFPs that are expressed in miscellaneous organisms.
机译:三指蛋白结构域(TFPD)的功能多样性是通过某些序列位置的高度可变性以及短AA段的广泛插入/缺失引起的,从而导致了多个序列属性的多维漂移,例如整体(HI)和局部疏水性能级,等电点(pI),电荷分布和局部极化电位。因此,各种TFPD的pis从3到10不等,并且HI范围从高度亲水到极度疏水。我们对各种基因组数据库的分析表明,原始的TFP样折叠可能已经适应了TGFβ系列受体的细胞外N端结构域(ECD),这对于精心制定的人体计划对多细胞生物的形态发生至关重要。从编码原始ECD的外显子辐射出一些ORF似乎是合理的,这些ORF产生了小的单域和多域TFP,它们可能是膜结合的或可溶的实体,并且其组成成分在脊椎动物的基因组中扩展了。我们表明上述属性已被限制在其他生物中表达的TFP的几个功能相关组中的狭窄范围内。

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