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Biomedical subjects

F Tian

Publications and source records attributed to F Tian.

At least 37 records · Page 2Linked to original sources

Rapid determination of protein folds using residual dipolar couplings.

Over the next few years, various genome projects will sequence many new genes and yield many new gene products. Many of these products will have no known function and little, if any, sequence homology to existing proteins. There is reason to believe that a rapid determination of a protein fold, even at low resolution, can aid in the identification of function and expedite the determination of structure at higher resolution. Recently devised NMR methods of measuring residual dipolar couplings provide one route to the determination of a fold. They do this by allowing the alignment of previously identified secondary structural elements with respect to each other. When combined with constraints involving loops connecting elements or other short-range experimental distance information, a fold is produced. We illustrate this approach to protein fold determination on (15)N-labeled Eschericia coli acyl carrier protein using a limited set of (15)N-(1)H and (1)H-(1)H dipolar couplings. We also illustrate an approach using a more extended set of heteronuclear couplings on a related protein, (13)C, (15)N-labeled NodF protein from Rhizobium leguminosarum.

Acyl Carrier Protein↗

Nuclear magnetic resonance studies of the N-terminal fragment of adenosine diphosphate ribosylation factor 1 in micelles and bicelles: influence of N-myristoylation.

The N-terminal fragment of adenosine diphosphate (ADP) ribosylation factor 1 (ARF1) is proposed to be involved in the guanosine triphosphate- (GTP-) dependent, reversible association of the protein with membranes through the interaction of not only the N-linked myristoyl chain but also its highly conserved N-terminal hydrophobic residues. Based on the N-terminal sequence of this protein, specifically (13)C- and (15)N-labeled peptides were synthesized with and without an N-myristoyl anchor. The behavior, including structure, dynamics, and orientation, of these peptides in a lipid environment was then studied through a combination of solution (1)H nuclear magnetic resonance (NMR) techniques in micelles and heteronuclear solid-state NMR experiments in magnetically aligned bicelles. The work presented is an extension of the previously reported characterization of the myristoylated N-terminal fragment of ARF1 [Losonczi and Prestegard (1998) Biochemistry 37, 706-716] to include a comparison to a nonmyristoylated analogue. Results indicate that both myristoylated and nonmyristoylated peptides are alpha-helical in a lipid environment and that N-myristoylation does not greatly influence the structure of the peptides. Evidence is presented suggesting association of the peptides with bilayer disks through a combination of edge and surface interactions.

ADP-Ribosylation Factor 1↗

Rate Constant for the Ring Opening of the 2,2-Difluorocyclopropylcarbinyl Radical.

The rate constant for the unimolecular ring opening of the 2,2-difluorocyclopropylcarbinyl radical was determined via its competitive bimolecular trapping by TEMPO. The value of this rate constant (3.4 x 10(11) s(-)(1) at 99.3 degrees C) is about 500 times larger than that of the parent, unfluorinated radical and about 5 times smaller than that of the trans-2-phenylcyclopropylcarbinyl radical.

Journal Article↗

A novel and highly efficient synthesis of gem-difluorocyclopropanes

[reaction: see text] A new and highly versatile source of difluorocarbene is reported. Trimethylsilyl fluorosulfonyldifluoroacetate (TFDA) undergoes decomposition in the presence of catalytic fluoride to form difluorocarbene under conditions that allow its addition to relatively electron deficient alkenes in high yield. For example, unprecedented CF2: addition to n-butyl acrylate proceeded in 73% yield.

Journal Article↗

Receptor reserve analysis of the human CCR3 receptor in eosinophils and CCR3-transfected cells.

A novel pharmacological study of CCR3 receptor reserve in a CCR3-transfected cell (CREM3) and human eosinophils was done; functional responses measured were increases in intracellular calcium and chemotaxis. Eotaxin, eotaxin-2, monocyte chemoattractant protein-4 (MCP-4), RANTES, and MCP-3 induced similar maximal eosinophil chemotaxis, whereas MCP-3 and RANTES induced submaximal calcium responses in eosinophils compared to eotaxin, MCP-4, and eotaxin-2. This suggested a receptor reserve in the chemotaxis response. Receptor reserve was quantitated for eotaxin. Occupancy of all CCR3 receptors was required for a maximal calcium response in both CREM3 and eosinophils (reserve = 1.0 or 0.17, respectively); the stimulus-calcium response relationship was linear, indicating no receptor reserve. In contrast, in eosinophils a large receptor reserve (6.5) was found for chemotaxis, where occupancy of 15% receptors drove half-maximal responses. These studies indicate that CCR3 interacts with G-proteins that are poorly coupled to the calcium response, whereas coupling efficiency and/or amplification to the chemotaxis apparatus in human eosinophils is significantly greater.

Animals↗

Asitrocin, (2,4)-cis- and trans-asitrocinones: novel bioactive mono-tetrahydrofuran acetogenins from Asimina triloba seeds.

Asitrocin (1) and the mixture of (2,4)-cis- and trans-asitrocinones (2 and 3), new bioactive Annonaceous acetogenins, were isolated from the seeds of Asimina triloba by activity-directed fractionation using the brine shrimp lethality test. Asitrocin and the mixture of (2,4)-cis- and trans-asitrocinones have a configuration of erythro/trans/threo from C-15 to C-20, the mono-THF moiety with two flanking hydroxyl groups. The structures were determined by spectroscopic methods. These acetogenins showed potent bioactivities in the brine shrimp lethality test (BST) and among six human solid tumor cell lines with notable selectivity for the prostate (PC-3) and the pancreatic (MIA PaCa-2) cell lines at 10-100 times the potency of adriamycin.

Animals↗

Direct measurement of 1H-1H dipolar couplings in proteins: a complement to traditional NOE measurements.

An intensity-based constant-time COSY (CT-COSY) method is described for measuring 1H-1H residual dipolar couplings of proteins in weakly aligned media. For small proteins, the overall sensitivity of this experiment is comparable to the NOESY experiment. In cases where the 1H-1H distances are defined by secondary structure, such as 1H(alpha)-1H(N) and 1H(N)-1H(N) sequential distances in alpha-helices and beta-sheets, these measurements provide useful orientational constraints for protein structure determination. This experiment can also be used to provide distance information similar to that obtained from NOE connectivities once the angular dependence is removed. Because the measurements are direct and non-coherent processes, such as spin diffusion, do not enter, the measurements can be more reliable. The 1/r3 distance dependence of directly observed dipolar couplings, as compared with the 1/r6 distance dependence of NOEs, also can provide longer range distance information at favorable angles. A simple 3D, 15N resolved version of the pulse sequence extends the method to provide the improved resolution required for application to larger biomolecules.

Acyl Carrier Protein↗

[Fibronectin induces matrix metalloproteinase-2 expression in ovarian cancer cells].

OBJECTIVE: To investigate the effects of extracelluar matrix proteins on matrix metalloproteinases (MMPs) expression by cancer cells, and the underlying mechanisms. METHODS: Following stimulation of SKOV3 ovarian cancer cells by fibronectin, MMPs secretion and cellular mRNA contents were assayed by gelatin-zymography and RT-PCR, respectively. The activity of MMP-2 promoter was monitored by cellular luciferase activity after the cells were transfected with MMP-2 promoter-luciferase construct. Cellular p53 contents were determined by Western blot analysis. RESULTS: Fibronectin (5 micrograms/ml) was found to stimulate the secretion of MMP-2 but not MMP-9 by SKOV3 cells. The stimulation was enhanced with the increase in fibronectin concentration. When SKOV3 cells were treated with 10 micrograms/ml fibronectin for 1 hr, the cellular MMP-2 mRNA dramatically increased. However, with increase in stimulation time, MMP-2 mRNA content decreased. Fibronectin induced an increase in luciferase activity in cells transfected with MMP-2 promoter construct, whilst curcumin (50 mumol/L), a potent transcription factor AP-1 inhibitor, could not block the fibronectin-induced increase in MMP-2 promoter activity. Fibronectin also induced an increase in p53 content of SKOV3 cells. CONCLUSION: Fibronectin stimulates ovarian cancer cells to secret MMP-2 via its enhancing effect on MMP-2 promoter activity with resultant increase in MMP-2 transcription. The effect might involve a pathway associated with p53 but independent of AP-1.

Female↗

[The selection of taxol resistance associated genes in ovarian cancer cell line by mRNA DD].

OBJECTIVE: One of the main reasons of the treatment failure for ovarian cancer is the emergence of drug resistance in which several genes involved. The purpose of the study was to select the genes related to Taxol resistance in ovarian cancer. METHODS: Resistant ovarian cancer cell line, Skov3/Taxol-25, was established by interval exposure Skov3 to Taxol. mRNA was compared between Skov3 and Skov3/Taxol-25 by mRNA DD. RESULTS: Skov3/Taxol-25 showed 44 times increase resistance to Taxol after 12 months of induction. There were 22 new differential bands obtained from Skov3/Taxol-25 as compared with Skov3. 18 bands were special by repeated PCR. In the 5 sub-clones, three clones were homologous to the known gene. 105/106 base pair of clone 1 were homologous to tPA (tissue plasminogen activator), 261/268 of clone 3 to Kiaa 0372, and 406/409 of clone 18 to LDLC. The other 2 ESTs were new gene segments, which were banked to Genbank with the number of AF120327 and AF120328. The identification by RT-PCR revealed that both tPA and Kiaa0372 were special genes from Skov3/Taxol-25, while LDLC was pseudopositive. CONCLUSION: Several genes were involved in the resistance to Taxol in ovarian cancer. The enhanced expression of tPA indicated the increased ability of metastasis after the acquisition of resistance to taxol.

Antineoplastic Agents, Phytogenic↗

[The effects of the receptor antagonist of glutamic acid on the brain tissue of severely scalded rats].

OBJECTIVE: To explore the influence of glutamic acid on burned rat brain tissue and the effects of the receptor antagonist of glutamic acid. METHODS: Rats inflicted with 30% TBSA III degree scalding injury were taken as the model. The water content, K(+), Na(+), Ca(2+), Mg(2+), nitric oxide metabolites (NO(2)(-)/NO(3)(minus sign))concentrations of scalded rat brain were determined at 2, 6, 12 and 24 postburn hours (PBH). Morphological and histochemical studies of the brain tissue were carried out with LM and EM. RESULTS: The water content, Na(+), Ca(2+)and NO(2)(minus sign)/NO(3)(minus sign) concentrations of the brain tissue after scalding injury were higher than those in control group. But intracerebral ATP enzyme decreased postburn. It was found by EM examination that there existed swelling of capillary endothelium, nerve cells and some intracytoplasmic mitochondria. There appeared pinosome on capillary wall. After the administration of receptor antagonist of glutamic acid, D-2-amino-group-7-phosphoenanthate (D-AP7), the brain water content, Na(+), Ca(2+)and NO(2)(-)/NO(3)(-) concentrations in brain tissue, and the capillary wall pinosome decreased, and the swelling of nerve cells ameliorated. CONCLUSION: There might be postburn increased cerebral microvascular permeability, ischemic injury of cerebral tissue cells and the development of brain edema. The postburn alterations in the morphology and metabolism of brain tissue were correlated with the over secretion of glutamic acid. And the excitatory toxic effects of glutamic acid were mediated by its receptor. The receptor antagonist of glutamic acid D-AP7 might ameliorate postburn cerebral injury.

Adenosine Triphosphatases↗

[Precise map of allelic loss on chromosome 3p14 in nasopharyngeal carcinoma].

OBJECTIVE: To determine the precise allelic loss on chromosome 3p14 and discuss the possible relations between loss of heterozygosity (LOH) and EBV infection, clinical stage and clinic-pathology of nasopharyngeal carcinoma (NPC). METHODS: Six high dense microsatellite marker on chromosome 3p14 were selected to examine LOH in 32 cases of NPC. RESULTS: 23 of 32 (71.9%) tumors were deleted for at least one locus of six loci. High frequencies of LOH (> 40%) were observed at loci D3S1300(50.0%), D3S1313(46.4%) and D3S1312(44.4%). 12 cases showed LOH in one contiguous and nonrandom region. The smallest common deletion region seems likely to lie between D3S1313 and D3S1312. Relations between LOH on 3p14 and clinical stage and EBV infection were observed. The frequency of LOH was 70.0% in 30 cases of poor-differentiated squamous cell carcinoma. 2 cases of vesicular nucleus cell carcinoma had LOH at two loci. CONCLUSION: The high deletion rate on 3p14 in NPC indicates that there might be a putative tumor suppressor gene related to the development and progression of NPC.

Alleles↗

Cation transport: an example of structural based selectivity.

Through the high-resolution structure of the gramicidin A channel in lamellar phase lipids and the characterization of specific ion peptide interactions, fundamental principles for ion channel selectivity and conductance efficiency are illustrated with atomic resolution detail. Delocalized cation binding in the first turn of the helix reduces the unfavorable entropy contribution upon binding. Stepwise dehydration minimizes the energy barrier for cation entry and provides valence selectivity in this channel. Three or more water molecules in the monovalent cation binding site result in flexibility in the cation solvation environment causing weak cation size selectivity. Lack of cation induced structural modification avoids the formation of a significant energy barrier, thus permitting efficient cation transport.

Amino Acid Sequence↗

The assignment of chemokine-chemokine receptor pairs: TARC and MIP-1 beta are not ligands for human CC-chemokine receptor 8.

Identification of chemokine receptors and their associated ligands is crucial to the understanding of most immune reactions. Three human chemokines [I-309, thymus and activation-regulated chemokine (TARC) and macrophage inflammatory protein-1beta (MIP-1beta)] have been reported to be ligands for CC-chemokine receptor 8 (CCR8). In this report, we present evidence that TARC and MIP-1beta did not bind to or induce chemotaxis through CCR8 on a stable transfected cell line (1D-21) and did not bind to CCR8 on in vitro differentiated human CD4(+) Th(2) cell cultures. Also, I-309-dependent calcium mobilization in 1D-21 cells and in Th(2) cells was desensitized by I-309 but not by MIP-1beta or TARC. These results provide strong evidence that, at physiologically relevant concentrations, I-309 is the only known human ligand for CCR8. These data also provide a framework for suggesting minimum requirements for the assignment of chemokine receptor-ligand pairs.

CD4 Antigens↗

13C selective polarization and spin diffusion in a lipid bilayer-bound polypeptide by solid-state NMR.

While (15)N solid-state NMR has proven to be very advantageous for the development of structural biological methods, (13)C spectroscopy has increased sensitivity and spectral dispersion. However, large natural abundance signals and homonuclear dipolar interactions pose significant problems. Here we have used a pair of (13)C-labeled sites in a lipid-solubilized polypeptide to show the selective polarization can be used in combination with spin diffusion to achieve simplified spectra. Both unoriented and oriented samples have been used, with the latter providing a well-resolved homonuclear dipolar splitting.

Carbon Isotopes↗

Cyclic GMP-dependent protein kinase-I in the guinea pig cochlea.

Recent studies have begun to characterize the nitric oxide/cyclic GMP/protein kinase G pathway in the mammalian cochlea by demonstrating the presence of both the enzyme that produces nitric oxide (NO), nitric oxide synthase, and the NO receptor, soluble guanylate cyclase. The present study investigated protein kinase G (cyclic GMP-dependent protein kinase-I, cGK-I), the downstream enzyme of this pathway that frequently mediates its physiological effects. A commercial antibody to a human cGK-I sequence recognized a protein of appropriate molecular weight in Western blots of guinea pig aorta. Immunostaining of guinea pig aorta was consistent with the expected distribution of cGK-I. In lateral wall tissues of the cochlea, pericytes lining the blood vessels of the spiral ligament were strongly immunoreactive. In the organ of Corti, cGK-I was detected in Hensen's, Deiters', and pillar cells, but not in inner and outer hair cells. This distribution coincides with the localization of soluble guanylate cyclase activity and suggests that cGK-I mediates the effects of the NO/cyclic GMP pathway in the cochlea. It reinforces the hypothesis that the NO/cyclic GMP/cGK-I pathway is involved in regulation of cochlear blood flow and supporting cell physiology.

Animals↗

Sign determination of dipolar couplings in field-oriented bicelles by variable angle sample spinning (VASS).

Residual dipolar couplings are being increasingly used as structural constraints for NMR studies of biomolecules. A problem arises when dipolar coupling contributions are larger than scalar contributions for a given spin pair, as is commonly observed in solid state NMR studies, in that signs of dipolar couplings cannot easily be determined. Here the sign ambiguities of dipolar couplings in field-oriented bicelles are resolved by variable angle sample spinning (VASS) techniques. The director behavior of field-oriented bicelles (DMPC/DHPC, DMPC/CHAPSO) in VASS is studied by 31P NMR. A stable configuration occurs when the spinning angle is smaller than the magic angle, 54.7 degrees, and the director (or bicelle normal) of the disks is mainly distributed in a plane perpendicular to the rotation axis. Since the dipolar couplings depend on how the bicelles are oriented with respect to the magnetic field, it is shown that the dipolar interaction can be scaled to the same order as the J-coupling by moving the spinning axis from 0 degree toward 54.7 degrees. Thus the relative sign of dipolar and scalar couplings can be determined.

Anisotropy↗