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991.
Triosephosphate isomerase: a highly evolved biocatalyst 总被引:1,自引:0,他引:1
R. K. Wierenga E. G. Kapetaniou R. Venkatesan 《Cellular and molecular life sciences : CMLS》2010,67(23):3961-3982
Triosephosphate isomerase (TIM) is a perfectly evolved enzyme which very fast interconverts dihydroxyacetone phosphate and d-glyceraldehyde-3-phosphate. Its catalytic site is at the dimer interface, but the four catalytic residues, Asn11, Lys13, His95 and Glu167, are from the same subunit. Glu167 is the catalytic base. An important feature of the TIM active site is the concerted closure of loop-6 and loop-7 on ligand binding, shielding the catalytic site from bulk solvent. The buried active site stabilises the enediolate intermediate. The catalytic residue Glu167 is at the beginning of loop-6. On closure of loop-6, the Glu167 carboxylate moiety moves approximately 2 Å to the substrate. The dynamic properties of the Glu167 side chain in the enzyme substrate complex are a key feature of the proton shuttling mechanism. Two proton shuttling mechanisms, the classical and the criss-cross mechanism, are responsible for the interconversion of the substrates of this enolising enzyme. 相似文献
992.
Sebastian Vogel Thorsten Trapp Verena Börger Corinna Peters Dalila Lakbir Dagmar Dilloo Rüdiger V. Sorg 《Cellular and molecular life sciences : CMLS》2010,67(2):295-303
Human bone marrow-derived mesenchymal stem cells (MSC) home to injured tissues and have regenerative capacity. In this study,
we have investigated in vitro the influence of apoptotic and necrotic cell death, thus distinct types of tissue damage, on
MSC migration. Concordant with an increased overall motility, MSC migrated towards apoptotic, but not vital or necrotic neuronal
and cardiac cells. Hepatocyte growth factor (HGF) was expressed by the apoptotic cells only. MSC, in contrast, revealed expression
of the HGF-receptor, c-Met. Blocking HGF bioactivity resulted in significant reduction of MSC migration. Moreover, recombinant
HGF attracted MSC in a dose-dependent manner. Thus, apoptosis initiates chemoattraction of MSC via the HGF/c-Met axis, thereby
linking tissue damage to the recruitment of cells with regenerative potential. 相似文献
993.
G. E. Callander R. A. D. Bathgate 《Cellular and molecular life sciences : CMLS》2010,67(14):2327-2341
Since its discovery in the 1920s, relaxin has enjoyed a reputation as a peptide hormone of pregnancy. However, relaxin and
other relaxin family peptides are now associated with numerous non-reproductive physiologies and disease states. The new millennium
bought with it the sequence of the human genome and subsequently new directions for relaxin research. In 2002, the ancestral
relaxin gene RLN3 was identified from genome databases. The relaxin-3 peptide is highly expressed in a small region of the brain and in species
from teleost to primates and has both conserved sequence and sites of expression. Combined with the discovery of the relaxin
family peptide receptors, interest in the role of the relaxin family peptides in the central nervous system has been reignited.
This review explores the relaxin family peptides that are expressed in or act upon the brain, the receptors that mediate their
actions, and what is currently known of their functions. 相似文献
994.
This study examined the individual and simultaneous adsorption of SOx(SO2)and NOx(NO-NO2)on activated carbon prepared from waste palm shell.The adsorption process was examined in a fixed bed reactor at low temperatures(100 300°C).For individual adsorption without any catalytic activation,SOx showed good adsorption whereas NOx was very much poor.In the simultaneous adsorption of SOx and NOx,SOx showed greater adsorption affinity than NOx.For palm shell activated carbon(PSAC)impregnated with metal catalyst(Ni and Ce)the concentration adsorbed profile showed that the amount of SOx adsorbed decreased regularly,while the amount of the adsorbed NOx increased irregularly.The properties of the pure and impregnated PSAC were analyzed by BET,SEM and EDX.These investigations indicated that PSAC impregnated with metal catalyst is the determining factor in the adsorption of SOx and NOx simultaneously. 相似文献
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