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71.
Ribonucleotide reductases (RNRs) are uniquely responsible for converting nucleotides to deoxynucleotides in all dividing
cells. The three known classes of RNRs operate through a free radical mechanism but differ in the way in which the protein
radical is generated. Class I enzymes depend on oxygen for radical generation, class II uses adenosylcobalamin, and the anaerobic
class III requires S-adenosylmethionine and an iron–sulfur cluster. Despite their metabolic prominence, the evolutionary origin and relationships
between these enzymes remain elusive. This gap in RNR knowledge can, to a major extent, be attributed to the fact that different
RNR classes exhibit greatly diverged polypeptide chains, rendering homology assessments inconclusive. Evolutionary studies
of RNRs conducted until now have focused on comparison of the amino acid sequence of the proteins, without considering how
they fold into space. The present study is an attempt to understand the evolutionary history of RNRs taking into account their
three-dimensional structure. We first infer the structural alignment by superposing the equivalent stretches of the three-dimensional
structures of representatives of each family. We then use the structural alignment to guide the alignment of all publicly
available RNR sequences. Our results support the hypothesis that the three RNR classes diverged from a common ancestor currently
represented by the anaerobic class III. Also, lateral transfer appears to have played a significant role in the evolution
of this protein family. 相似文献
72.
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74.
Kim SH Shin DH Choi IG Schulze-Gahmen U Chen S Kim R 《Journal of structural and functional genomics》2003,4(2-3):129-135
The dramatically increasing number of new protein sequences arising from genomics 4 proteomics requires the need for methods to rapidly and reliably infer the molecular and cellular functions of these proteins. One such approach, structural genomics, aims to delineate the total repertoire of protein folds in nature, thereby providing three-dimensional folding patterns for all proteins and to infer molecular functions of the proteins based on the combined information of structures and sequences. The goal of obtaining protein structures on a genomic scale has motivated the development of high throughput technologies and protocols for macromolecular structure determination that have begun to produce structures at a greater rate than previously possible. These new structures have revealed many unexpected functional inferences and evolutionary relationships that were hidden at the sequence level. Here, we present samples of structures determined at Berkeley Structural Genomics Center and collaborators laboratories to illustrate how structural information provides and complements sequence information to deduce the functional inferences of proteins with unknown molecular functions.Two of the major premises of structural genomics are to discover a complete repertoire of protein folds in nature and to find molecular functions of the proteins whose functions are not predicted from sequence comparison alone. To achieve these objectives on a genomic scale, new methods, protocols, and technologies need to be developed by multi-institutional collaborations worldwide. As part of this effort, the Protein Structure Initiative has been launched in the United States (PSI; www.nigms.nih.gov/funding/psi.html). Although infrastructure building and technology development are still the main focus of structural genomics programs [1–6], a considerable number of protein structures have already been produced, some of them coming directly out of semi-automated structure determination pipelines [6–10]. The Berkeley Structural Genomics Center (BSGC) has focused on the proteins of Mycoplasma or their homologues from other organisms as its structural genomics targets because of the minimal genome size of the Mycoplasmas as well as their relevance to human and animal pathogenicity (http://www.strgen.org). Here we present several protein examples encompassing a spectrum of functional inferences obtainable from their three-dimensional structures in five situations, where the inferences are new and testable, and are not predictable from protein sequence information alone. 相似文献
75.
Choi IG Shin DH Brandsen J Jancarik J Busso D Yokota H Kim R Kim SH 《Journal of structural and functional genomics》2003,4(1):31-34
Journal of Structural and Functional Genomics - 相似文献
76.
A new naphthylisoquinoline alkaloid, ancistrolikokine D, and the likewise 5,8'-coupled alkaloid ancistroealaine A, as well as two further, biosynthetically related, but nitrogen-free natural products, ancistronaphthoic acid B and cis-isoshinanolone, have been isolated from Ancistrocladus likoko J. LEACUTE;ONARD (Ancistrocladaceae). The 5,8'-coupling of the new alkaloids and of the alkaloids isolated earlier hints at a close phylogenetic relationship of A. likoko to other Central African Ancistrocladus species. The compounds show moderate activities against Leishmania donovani, Trypanosoma cruzi, and Trypanosoma brucei rhodesiense. 相似文献
77.
Evariquinone,isoemericellin, and stromemycin from a sponge derived strain of the fungus Emericella variecolor 总被引:2,自引:0,他引:2
From a strain of the fungus Emericella variecolor derived from the marine sponge Haliclona valliculata, two new natural products, evariquinone and isoemericellin, were isolated after HPLC-UV, -MS, and -NMR studies of the extract and their structures were elucidated by mass spectrometry and NMR experiments. Evariquinone showed antiproliferative activity towards KB and NCI-H460 cells at a concentration of 3.16 microg/ml. Furthermore, the fungus was found to produce the known metabolites stromemycin, shamixanthone, and 7-hydroxyemodin. Chemical degradation, NMR decoupling experiments, and spin-system simulation provided evidence for the double bonds in stromemycin to be all E-configured. ROESY experiments established the monosaccharide moiety to be glucose. 相似文献
78.
The isolation, structural elucidation, and antiprotozoal activities of habropetaline A, a novel naphthylisoquinoline alkaloid from Triphyophyllum peltatum, are described. This alkaloid had previously only been identified on line, by the LC-MS/MS-NMR-CD triad, in the crude extract of the rare and difficult-to-provide related plant species Habropetalum dawei, whose small quantities available had not permitted to isolate the compound. As predicted by quantitative structure-activity relationship (QSAR) investigations, habropetaline A exhibits strong antimalarial activity against Plasmodium falciparum, while it is inactive against other protozoal pathogens (Trypanosoma brucei rhodesience, T. cruzi, and Leishmania donovani). 相似文献
79.
中国株丙型肝炎病毒(HCV)结构区蛋白在昆虫细胞中的表达及加工 总被引:4,自引:1,他引:3
利用杆状病毒表达系统在昆虫细胞中表达了完整的中国河北株丙丙型肝炎病毒结构蛋白。免疫印迹实验结果显示,表达产物中有一系列分子量不同、可以与HCV抗体阳性病人血清反应的蛋白,表明结构蛋白被宿主细胞蛋白酶切割与加工,相应分别为20kD的核心蛋白、32kD糖基化的E1蛋白40kD的未糖化的E2蛋白和70kD糖基化的E2蛋白,另有80kD及100kD的两组前体蛋白。利用表达产物检测慢性HCV感染者血清,发现 相似文献
80.
本文对更一般的结构模型给出了参数的一种常用的仪器变量估计近似分布方差的一种算法.并且给出了未知真值x服从指数分布的例子.此算法对生物科学中统计规律的探讨有一定的应用价值. 相似文献