Mostrando 5,201 - 5,220 Resultados de 5,592 Para Buscar '"Homo"', tiempo de consulta: 0.29s Limitar resultados
  1. 5201
    “…The biological significance of the metal complexes was inferred from the highest occupied molecular orbital–lowest unoccupied molecular orbital (HOMO–LUMO) energy band gap, which was found to be 2.784 and 3.333 eV, respectively for 1 and 2, compared to the ligands, 1,10-phenathroline (4.755 eV) and chrysin (4.403 eV). …”
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  2. 5202
    “…LaPc(2) and LuPc(2) bind stronger to the zigzag nanotube, while for GdPc(2), bonding to the armchair nanotube is the stronger one. The HOMO-LUMO gap energy (Egap) shows a correlation between the nature of lanthanide and the nanotube chirality. …”
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  3. 5203
    “…It results in a reduced overlap between HOMOs and LUMOs, thus realizing fairly a slight singlet–triplet energy gap (ΔE(ST)) and higher photoluminescence quantum yield (Φ). …”
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  4. 5204
    “…The non-human hominoids (e.g., gibbons, orangutans, chimpanzees, and gorillas) are considered specialized brachiators, yet peculiar among the living apes are anatomically modern humans (Homo sapiens), who have forgone this locomotor mode in favor of bipedal striding. …”
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  5. 5205
    “…The quantification of endogenous BRs revealed higher levels of castasterone (CS), 28-norCS, 28-homoCS and brassinolide in F2000 compared to F60 tubers. …”
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  6. 5206
    “…Compared to baseline, dietary LA lowering with or without added omega-3 fatty acids did not alter unesterified n-6 PUFA-derived lipid mediators, although several species derived from LA, di-homo-gamma-linolenic acid, and arachidonic acid were positively associated with headache frequency and intensity, as well as mental health burden. …”
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  7. 5207
    “…To assess the interaction between AraC and p75(NTR), we performed cellular thermal shift and AraTM assays as well as Homo-FRET anisotropy imaging. We show that AraC induces neurite degeneration and programmed cell death of mature cerebellar granule neurons in a p75(NTR)-dependent manner. …”
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  8. 5208
  9. 5209
    “…The cis-Ru[κ(2)-N,N-DAB-X](2)Cl(2) complexes function as catalyst precursors for the acceptorless dehydrogenative coupling of primary alcohols to H(2) and homo- and cross-coupled esters. When 1,4-butanediol and 1,5-pentanediol are employed as substrates, lactones and hydroxyaldehydes are produced as the major dehydrogenation products, while secondary alcohols afforded ketones in excellent yields. …”
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  10. 5210
  11. 5211
    “…There is a little overlap amid the highest occupied molecular orbitals (HOMOs) and lowest un-occupied molecular orbitals (LUMOs) due to the distribution of HOMOs and LUMOs primarily on the DMDHPN donor and the DPS acceptor moieties, respectively. …”
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  12. 5212
    “…Investigation on these 22 unique dysregulated genes using Gene Ontology, BioCarta, KEGG, and Reactome revealed multiple altered molecular pathways, including regulation of amyloid precursor protein catabolic process, ferroptosis, effects on gene expression of Homo sapiens PPAR pathway, and innate immune system R-HSA-168249. …”
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  13. 5213
    por Qiu, Shibin, Adema, Coen M., Lane, Terran
    Publicado 2005
    “…This computational study examined the potential for off-target effects of RNAi, employing the genome and transcriptome sequence data of Homo sapiens, Caenorhabditis elegans and Schizosaccharomyces pombe. …”
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  14. 5214
    “…The spectrin-binding region of PfM18AAP is not found in Homo sapiens, Saccharomyces cerevisiae and otherPlasmodium species homologues. …”
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  15. 5215
    “…Duplicative transposition of the PKD1 gene and further amplification and evolution of the PKD1 pseudogenes may have arisen in a common ancestor of Homo, Pan and Gorilla ~8 MYA. Reticulate evolutionary processes such as gene conversion and non-allelic homologous recombination (NAHR) may have resulted in concerted evolution of PKD1 family members in human and chimpanzee and, thus, simulate an independent evolution of the PKD1 pseudogenes from their master PKD1 genes in human and chimpanzee.…”
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  16. 5216
    por Wayengera, Misaki
    Publicado 2009
    “…METHODS AND PRINCIPAL FINDINGS: Comparative Sequence alignments and phylogeny using the BLAST-P tool at the Swiss Institute of Biotechnology (SIB) revealed homologs of C-termini of TcP0 and TcP2β among related proteins from several eukaryotes including the animals (Homo sapiens, C. elegans, D. melanogaster), plants (Arabidopsis thaliana, Zea mays, Glycina Max, Oryza sativa, Rhizopus oryzae) and protozoa (P. falciparum, T. gondii, Leishmania spp).The chemical formulae of the two T.cruzi ribosomal protein C-terminal peptides were found to be C(61)H(83)N(13)O(26)S(1)and C(64)H(87)N(13)O(28)S(1) respectively by Protparam. …”
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  17. 5217
    por Craxton, Molly
    Publicado 2010
    “…The species in this collection are Trichoplax, Nematostella, Capitella, Helobdella, Lottia, Ciona, Strongylocentrotus, Branchiostoma, Ixodes, Daphnia, Acyrthosiphon, Tribolium, Nasonia, Apis, Anopheles, Drosophila, Caenorhabditis, Takifugu, Tetraodon, Gasterosteus, Oryzias, Danio, Xenopus, Anolis, Gallus, Taeniopygia,Ornithorhynchus, Monodelphis, Mus and Homo. All of the data described in this paper is available as additional files. …”
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  18. 5218
    por Metzger, Kelsey J, Thomas, Michael A
    Publicado 2010
    “…CONCLUSIONS: These results suggest that amino acid residues present in intracellular and membrane-bound domains are more selectively constrained for functional signal transduction and homo- or heterodimerization, whereas amino acid residues in extracellular domains of these receptor proteins evolve more quickly, perhaps due to heightened selective pressure resulting from ligand-binding and pathogen interactions of extracellular domains.…”
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  19. 5219
  20. 5220
    “…Recently, genome annotations have been used to reconstruct genome scale metabolic reaction networks for numerous species, including Homo sapiens, which allow simulations that provide valuable insights into topics, including predictions of gene essentiality of pathogens, interpretation of genetic polymorphism in metabolic disease syndromes and suggestions for novel approaches to microbial metabolic engineering. …”
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