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991.
Gregory A. Jicha Audrey O' Donnell† Charles Weaver‡ Ruth Angeletti† & Peter Davies‡ 《Journal of neurochemistry》1999,72(1):214-224
Abstract : Immunoaffinity-purified paired helical filaments (PHFs) from Alzheimer's disease (AD) brain homogenates contain an associated protein kinase activity that is able to induce the phosphorylation of PHF proteins on addition of exogenous MgCl2 and ATP. PHF kinase activity is shown to be present in immunoaffinity-purified PHFs from both sporadic and familial AD, Down's syndrome, and Pick's disease but not from normal brain homogenates. Although initial studies failed to show that the kinase was able to induce the phosphorylation of tau, additional studies presented in this article show that only cyclic AMP-dependent protein kinase-pretreated recombinant tau is a substrate for the PHF kinase activity. Deletional mutagenesis, phosphopeptide mapping, and site-directed mutagenesis have identified the PHF kinase phosphorylation sites as amino acids Thr361 and Ser412 in htau40. In addition, the cyclic AMP-dependent protein kinase phosphorylation sites that direct the PHF kinase have been mapped to amino acids Ser356 and Ser409 in htau40. Additional data demonstrate that these hierarchical phosphorylations in the extreme C terminus of tau allow for the incorporation of recombinant tau into exogenously added AD-derived PHFs, providing evidence that certain unique phosphorylations of tau may play a role in the pathogenesis of neurofibrillary pathology in AD. 相似文献
992.
993.
Telomeric DNA-binding proteins (TBPs) are crucial components that regulate the structure and function of eukaryotic telomeres and are evolutionarily conserved. We have identified two homologues of AtTBP1 (for Arabidopsis thaliana telomeric DNA binding protein 1), designated as AtTBP2 and AtTRP2, which encode proteins that specifically bind to the telomeric DNA of this plant. These proteins show extensive homology with other known plant TBPs. The isolated C-terminal segments of these proteins were capable of sequence-specific binding to duplex telomeric plant DNA in vitro. DNA bending assays using the Arabidopsis TBPs revealed that AtTBP1 and AtTBP2 have DNA-bending abilities comparable to that of the human homologue hTRF1, and higher than those of AtTRP1 and AtTRP2. 相似文献
994.
Wahlroos Tony Susi Petri Solovyev Andrej Dorokhov Yurii Morozov Sergeyi Atabekov Josif Korpela Timo 《Molecular breeding : new strategies in plant improvement》2005,14(4):455-462
An approach that enables the increase of the quantity of a specific amino acid in crop plants is reported. Oleosin gene from Arabidopsis thaliana or 30K movement protein gene of Tobacco mosaic virus (TMV; genus Tobamovirus) were cloned under the control of napin or hybrid promoters, and in fusion to synthetic poly-histidine (poly-His) sequences for transformation into spring turnip rape (Brassica rapa subsp. oleifera; synonym to B. campestris). The most stable expression cassettes for the poly-His production prior to the plant transformation were selected by analyzing the protein expression in in vitro translation and in transient plant expression systems using GFP as marker. Expression of the poly-His-constructs in transgenic Brassica rapa plants was analyzed using dot and western blotting and PCR. The constructs were stably expressed in the third generation of the transgenic plant lines. Histidine content was measured from the seeds of the transgenic plants, and some plant lines had more than 20% increase in histidine content compared to wild type. The methodology may be widely applicable to increase the content of any amino acid in crop plants including those encoded by rare codons. 相似文献
995.
996.
The issue of amino acid depth in proteins gives important insights to our understanding of protein’s three-dimensional structure.
There has already been much research done in mathematical and statistical sciences regarding the general definitions, properties
and algorithms describing the particle depth of spatially extended systems. We constructed a method of calculating the amino
acids depths and applied it to a set of 527 protein structures. We propose the introduction of amino acid depth tendency factors
for three-dimensional structures of proteins. The depth tendency factors relate not only to the hydrophobicity indices but
also to the electrostatic charge. We found a relationship between the protein size and the number of residues using the distance
between the deepest residue and surface residues. We made a prediction regarding the number of residues on the surface of
a protein, the deepest amino acid, and the average depth, all of which are fitted well to a linear functional relationship
with the length of the protein. Finally, we have predicted the depths of multiple peptides in protein’s three-dimension structure.
Electronic supplementary material The online version of this article () contains supplementary material, which is available to authorized users. 相似文献
997.
目的探讨进展期胃癌生长过程中p53基因表达与微血管密度和生物学行为之间的关系。方法搜集有随访资料的胃癌标本107例,用免疫组化对突变型p53和CD34作了标记,用原位杂交对野生型p53作了检测。结果突变型p53在肿瘤不同侵犯深度、不同生长方式、不同淋巴结转移状态以及预后方面,存在显著差异(P<0.05),突变型p53与微血管密度显著相关(P<0.05),而野生型p53则与突变型p53相反。结论突变型和野生型p53在肿瘤生长过程中的表达不同,说明p53的不同功能状态在肿瘤的发展过程中发挥重要作用。 相似文献
998.
The explosion in gene sequence data and technological breakthroughs in protein structure determination inspired the launch of structural genomics (SG) initiatives. An often stated goal of structural genomics is the high-throughput structural characterisation of all protein sequence families, with the long-term hope of significantly impacting on the life sciences, biotechnology and drug discovery. Here, we present a comprehensive analysis of solved SG targets to assess progress of these initiatives. Eleven consortia have contributed 316 non-redundant entries and 323 protein chains to the Protein Data Bank (PDB), and 459 and 393 domains to the CATH and SCOP structure classifications, respectively. The quality and size of these proteins are comparable to those solved in traditional structural biology and, despite huge scope for duplicated efforts, only 14% of targets have a close homologue (>/=30% sequence identity) solved by another consortium. Analysis of CATH and SCOP revealed the significant contribution that structural genomics is making to the coverage of superfamilies and folds. A total of 67% of SG domains in CATH are unique, lacking an already characterised close homologue in the PDB, whereas only 21% of non-SG domains are unique. For 29% of domains, structure determination revealed a remote evolutionary relationship not apparent from sequence, and 19% and 11% contributed new superfamilies and folds. The secondary structure class, fold and superfamily distributions of this dataset reflect those of the genomes. The domains fall into 172 different folds and 259 superfamilies in CATH but the distribution is highly skewed. The most populous of these are those that recur most frequently in the genomes. Whilst 11% of superfamilies are bacteria-specific, most are common to all three superkingdoms of life and together the 316 PDB entries have provided new and reliable homology models for 9287 non-redundant gene sequences in 206 completely sequenced genomes. From the perspective of this analysis, it appears that structural genomics is on track to be a success, and it is hoped that this work will inform future directions of the field. 相似文献
999.
Virtually nothing is known about the interaction of co-translationally active chaperones with nascent polypeptides and the resulting effects on peptide conformation and folding. We have explored this issue by NMR analysis of apomyoglobin N-terminal fragments of increasing length, taken as models for different stages of protein biosynthesis, in the absence and presence of the substrate binding domain of Escherichia coli Hsp70, DnaK-beta. The incomplete polypeptides misfold and self-associate under refolding conditions. In the presence of DnaK-beta, however, formation of the original self-associated species is completely or partially prevented. Chaperone interaction with incomplete protein chains promotes a globally unfolded dynamic DnaK-beta-bound state, which becomes folding-competent only upon incorporation of the residues corresponding to the C-terminal H helix. The chaperone does not bind the full-length protein at equilibrium. However, its presence strongly disfavors the kinetic accessibility of misfolding side-routes available to the full-length chain. This work supports the role of DnaK as a "holder" for incomplete N-terminal polypeptides. However, as the chain approaches its full-length status, the tendency to intramolecularly bury non-polar surface efficiently outcompetes chaperone binding. Under these conditions, DnaK serves as a "folding enhancer" by supporting folding of a population of otherwise folding-incompetent full-length protein chains. 相似文献
1000.
麻疯树脂酶全长基因克隆、表达及其蛋白质结构预测 总被引:3,自引:1,他引:3
脂酶(Lipase,EC3.1.1.3)是普遍应用于皮革、饲料及生物柴油工业的工业酶制剂,具有广泛的应用价值。目前对植物来源的脂酶研究较少。本研究用在生物柴油中具有应用前景的油料植物——麻疯树(Jatrophacurcas)作为研究对象,克隆了该物种的脂酶基因(JcLIP)。通过多序列比对并结合物种的亲缘关系设计了具有较高特异性的简并引物,通过使用RT-PCR和RACE技术,最终获得了麻疯树脂酶基因的全长序列并成功地在大肠杆菌中表达,酶活测定结果表明,麻疯树脂酶在大肠杆菌中表达在包涵体中,但是能产生具有活力的蛋白质,酶活约为0.8U.mL-1。结构预测和比较表明,JcLIP蛋白质具有脂酶的结构核心和催化活性中心,而在非核心区具有较毛霉脂酶更多的插入和随机卷曲,这可能是决定二者之间酶活差异的重要原因。 相似文献