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Biomedical subjects

X Lin

Publications and source records attributed to X Lin.

At least 235 records · Page 13Linked to original sources

Control of cytoskeletal architecture by the src-suppressed C kinase substrate, SSeCKS.

Activation of protein kinase C (PKC) in many cell types results in cytoskeletal reorganization associated with cell proliferation. We previously described a new cell cycle-regulated myristylated PKC substrate, SSeCKS (pronounced essex), that interacts with the actin cytoskeleton [Lin et al., 1995, 1996]. SSeCKS shares significant homology with Gravin, which encodes kinase scaffolding functions for PKC and PKA [Nauert et al., 1997]. This article describes the cellular effects of ectopically expressing SSeCKS in untransformed NIH3T3 fibroblasts. Because the constitutive overexpression of SSeCKS is toxic [Lin et al., 1995], we developed cell lines with tetracycline (tet)-regulated SSeCKS expression. The induction of SSeCKS (removal of tet) caused significant cell flattening and the elaboration of an SSeCKS-associated cortical cytoskeletal matrix resistant to Triton X-100 extraction. Flattened cells were growth-arrested and marked by the formation of cellular projections and the temporary loss of actin stress fibers and vinculin-associated adhesion plaques. SSeCKS overexpression did not affect steady-state levels of actin, vinculin, or focal adhesion kinase (FAK) but did increase integrin-independent FAK tyrosine phosphorylation. Stress fiber loss was coincident with induced SSeCKS expression, strongly suggesting a direct effect. Cytochalasin, and to a lesser extent nocodazole, inhibited SSeCKS-induced cell flattening, however, only cytochalasin affected the shape of pre-flattened cells, suggesting a greater dependence on microfilaments, rather than microtubules. By contrast, only nocodazole caused retraction of the filopodia-like processes. These data indicate a role for SSeCKS in modulating both cytoskeletal and signaling pathways. Thus, we propose to expand SSeCKS scaffolding functions to include the ability to control actin-based cytoskeletal architecture, as well as mitogenic signal pathways.

3T3 Cells↗

Use of generalized linear mixed models in analyzing mutant frequency data from the transgenic mouse assay.

The transgenic mouse assay is now widely used for the study of mutagenesis in diverse rodent tissues and to test chemicals for genotoxic potential. This kind of assay generally involves nested observations at several levels of sampling, e.g., animals, packaging reactions, and plates. Due to the common origin, the mutant frequency (MF) in tissues from the same animal are likely to be positively correlated, inducing extra variation relative to the common binomial variation. In this article, a generalized linear mixed model is used to analyze the overdispersed binomial data on mutant frequency from the transgenic mouse assay, with a random effect for each level of the sampling hierarchy. This is a comprehensive framework within which different sources of variation in the data can be evaluated in nested factorial experiments and treatment effects can be assessed simultaneously. It avoids the current practice of repeated testing for excess binomial variability at each level of the sampling hierarchy and aggregating data up the levels, but fits the data with one single model. Parameters associated with the fixed effects, particularly dose, and the variance components for the random effects (e.g., animals, packages, and plates) can be estimated and tested for significance. Data previously reported in the literature involving the lacl gene from the Big Blue mouse are used to illustrate the proposed method.

Animals↗

Expression of functional domain of chicken gizzard calponin.

A full-length cDNA of the function domain of wild-type chicken gizzard calponin was cloned into expression vector pAED4 and the recombinant function domain of wild-type calponin was expressed in an Escherichia coli expression system. The actin domain of calponin (CaP-B) can bind with actin and it is a requisite for its inhibition of ATPase and vasoconstriction of smooth muscle. In this study, the cDNA of CaP-B was inserted into vector pAED4 by direction-cloning method. The cDNA of CaP-B was obtained with PCR cloning technique. The recombinant DNA pAED4-Cap-B was transformed into E. coli BL21 (DE3) and identified with the restriction analysis. The bacterial clones containing transformants were induced to be highly expressed in E. coli BL21 (DE3). The target protein was detected and identified by Western Blot analysis. The content of target protein was as high as 10% of the whole protein after overnight (16 h) culture. The results confirmed that Cap-B was relatively highly expressed in E. coli.

Animals↗

Effects of temperature and deltaGo on electron transfer from cytochrome c2 to the photosynthetic reaction center of the purple bacterium Rhodobacter sphaeroides.

The kinetics of electron transfer from cytochrome c2 to the primary donor (P) of the reaction center from the photosynthetic purple bacterium Rhodobacter sphaeroides have been investigated by time-resolved absorption spectroscopy. Rereduction of P+ induced by a laser pulse has been measured at temperatures from 300 K to 220 K in a series of specifically mutated reaction centers characterized by altered midpoint redox potentials of P+/P varying from 410 mV to 765 mV (as compared to 505 mV for wild type). Rate constants for first-order electron donation within preformed reaction center-cytochrome c2 complexes and for the bimolecular oxidation of free cytochrome c2 have been obtained by multiexponential deconvolution of the kinetics. At all temperatures the rate of the fastest intracomplex electron transfer increases by more than two orders of magnitude as the driving force -deltaGo is varied over a range of 350 meV. The temperature and deltaGo dependences of the rate constant fit the Marcus equation well. Global analysis yields a reorganization energy lambda = 0.96 +/- 0.07 eV and a set of electronic matrix elements, specific for each mutant, ranging from 1.2 10(-4) eV to 2.5 10(-4) eV. Analysis in terms of the Jortner equation indicates that the best fit is obtained in the classical limit and restricts the range of coupled vibrational modes to frequencies lower than approximately 200 cm(-1). An additional slower kinetic component of P+ reduction, attributed to electron transfer from cyt c2 docked in a nonoptimal configuration of the complex, displays a Marcus type dependence of the rate constant upon deltaGo, characterized by a similar value of lambda (0.8 +/- 0.1 eV) and by an average electronic matrix element smaller by more than one order of magnitude. In all of the mutants, as the temperature is decreased below 260 K, both intracomplex reactions are abruptly inhibited, their rate being negligible at 220 K. The free energy dependence of the second-order rate constant for oxidation of cyt c2 in solution suggests that the collisional reaction is partially diffusion controlled, reaching the diffusion limit at exothermicities between 150 and 250 meV over the temperature range investigated.

Cytochrome c Group↗

Differential expression of insulin receptor tyrosine kinase inhibitor (fetuin) gene in a model of diet-induced obesity.

The Differential Display technique has been used to identify differences in mRNA expression in adipose tissue after the introduction of a high fat diet to two strains of rat (OM and S5B/PI) that differ in their susceptibility to develop obesity on this diet. The insulin receptor tyrosine kinase inhibitor protein (fetuin) was shown to be differentially expressed in OM but not S5B/PI rats. This circulating protein may play a role in the development of peripheral insulin resistance associated with high fat diets.

Animals↗

Effect of berbamine on T-cell mediated immunity and the prevention of rejection on skin transplants in mice.

Berbamine, an ingredient of Berberis, which itself is widely utilized in Chinese folk-medicine has been used as a source of leukogenics, anti-arrhythmics and anti-hypertensives. In recent years, the immunosuppressive effects of berbamine has been demonstrated. In order to further investigate the value of berbamine as an immunosuppressive agent, the delayed type hypersensitivity reaction (DTH) response with sheep red blood cells (SRBC), the mixed lymphocyte reaction (MLR) and a skin model of allograft rejection on mice were studied. Berbamine showed suppressive effects on DTH and MLR and significantly prolonged allograft survival compared with untreated transplanted mice. The results indicate that berbamine may be a potential agent in clinical transplantation.

Alkaloids↗

WOFIE augments the immunosuppressive potency of FK-506. Window of opportunity for immunological engagement.

UNLABELLED: Bidirectional recognition of donor- and recipient-derived immunocompetent cells has been proven to play a pivotal role for the induction of long-term unresponsiveness to allogeneic grafts. This study investigated the fate of heterotopic heart grafts with respect to the timing of subtherapeutic doses of FK-506 and with respect to the time point and type of donor antigen application, leaving space for mutual adaptation of alloreactive lymphocytes, designated as the 'WOFIE-concept' (window of opportunity for immunological engagement), originally described by R Calne. METHODS: Heterotropic heart transplantation was performed using male DA (RT1.a) donor and LEW (RT1.1) recipient rats in the following groups (n = 6). FK-506 was applied intramuscularly (i.m.) using doses of 2 mg/kg x body weight per day. Donor antigen application was performed either by DA blood transfusion, 2 ml intravenously (i.v.), or by i.v. transfusion of 5 x 10(7) DA splenocytes. (i) LEW --> LEW, untreated; (ii) DA --> LEW, untreated; (iii) DA --> LEW, FK-506 days 0, 4-7; (iv) DA --> LEW, FK-506 as group (iii) plus 2 ml of DA blood 6 h post-Tx; (v) same as group (iv) but DA blood transfusion 24 h post-Tx; (vi) DA --> LEW, FK-506 as group (iii) plus DA splenocytes 6 h post-Tx; (vii) same as group (vi) but DA splenocyte transfusion 24 h post-Tx; (viii) DA --> LEW, FK-506 days 0-4 and (ix) DA --> LEW, FK-506 as group (viii) plus DA blood 6 h post-Tx. Immunohistochemical stainings (APAAP-method) of the allografts and flow cytometric analysis of recipient spleens were performed electively 3, 7 and 14 days after organ reperfusion. RESULTS: The mean graft survival differed significantly between groups and comprised (mean +/- SD days): (i) >100, (ii) 6.5 +/- 1.0, (iii) 31.6 +/- 12.1, (iv) 44.8 +/- 10.1, (v) 29.8 +/- 14.2, (vi) 27.2 +/- 4.7, (vii) 14.6 +/- 4.2, 17.5 +/- 4.2, (viii) 17.5 +/- 4.2 and (ix) 18.8 +/- 2.8 days. Prolongation of graft survival and long-term unresponsiveness (group iv) revealed a substantially different pattern of graft infiltration. CONCLUSIONS: Effective treatment with unspecific immunosuppressants like FK-506 can be substantially improved if (i) mutual antigen recognition between donor and recipient immunocompetent cells is warranted, (ii) donor-derived blood-borne antigens are given immediately after graft reperfusion, and (iii) the type of inoculated donor antigen has a strong impact on graft survival as splenocytes which contain a large population of professional antigen-presenting cells failed to prolong graft survival after interrupted FK-506 treatment.

Animals↗

Large-scale sequencing of plant genomes.

The large number of ESTs generated for Arabidopsis and rice in recent years now act as an important complement to whole genome sequencing projects. The Arabidopsis Genome Initiative has begun a coordinated effort to sequence the entire genome and, as a result, increasing numbers of large sequence entries can be found in the public databases. In addition, the mitochondrial genome of Arabidopsis has been completely sequenced. Genome sequencing studies and the public sequence databases have begun to influence the direction of diverse areas of research from physiology to evolution.

Base Sequence↗

Nucleotide and predicted amino acid sequences of all genes encoded by the 3' genomic portion (9.5 kb) of respiratory bovine coronaviruses and comparisons among respiratory and enteric coronaviruses.

The 3'-ends of the genomes (9538 bp) of two wild-type respiratory bovine coronavirus (RBCV) isolates LSU and OK were obtained by cDNA sequencing. In addition, the 3'-end of the genome (9545) of the wild-type enteric bovine coronavirus (EBCV) strain LY-138 was assembled from available sequences and by cDNA sequencing of unknown genomic regions. Comparative analyses of RBCV and EBCV nucleotide and deduced amino acid sequences revealed that RBCV-specific nucleotide and amino acid differences were disproportionally concentrated within the S gene and the genomic region between the S and E genes. Comparisons among virulent and avirulent BCV strains revealed that virulence-specific nucleotide and amino acid changes were located within the S and E genes, and the 32 kDa open reading frame.

Amino Acid Sequence↗

Impaired postprandial gastric slow waves in patients with functional dyspepsia.

The aim of this study was to investigate gastric myoelectrical activity in patients with functional dyspepsia. Thirteen healthy subjects and 14 patients with functional dyspepsia participated in the study. The electrogastrogram (EGG) recording was made in each subject for 30 min in the fasting state and 120 min after a standard test meal of 475 calories. Spectral analysis methods were applied to derive quantitative EGG parameters. There was no difference in the EGG between the patients and controls in the fasting state. However, abnormalities in the postprandial EGG were found in the patients. The percentage of 2-4 cpm waves was significantly lower (74.4+/-4.0% vs 85.7+/-1.6%, P < 0.03) and the postprandial increase in EGG dominant power was significantly less (-0.52+/-0.92 dB vs 2.24+/-0.88 dB, P < 0.03) in patients than in controls. It was also found that the percentage of postprandial 2-4 cpm waves could be used to differentiate the patients with functional dyspepsia from the healthy controls with a specificity of 100% and a sensitivity of 43%. It was concluded that a subset of patients with functional dyspepsia have impaired gastric myoelectrical activity in the fed state.

Adult↗

Gastric myoelectrical activity in healthy children and children with functional dyspepsia.

The aim of this study was to investigate abnormalities in pediatric patients with functional dyspepsia. Fifteen symptomatic pediatric patients diagnosed with functional dyspepsia and 17 aged-matched healthy controls were studied. Gastric myoelectrical activity was recorded using surface electrogastrography for 1 hr in the fasting state and 1 hr after a test meal. It was found that, in comparison with the controls, the children with functional dyspepsia had a lower percentage of 2- to 4-cpm slow waves in both fasting state (66.0+/-4.7% vs 79.7+/-3.1%, P < 0.07) and fed state (72.4+/-5.4% vs 85.0+/-2.9%, P < 0.04), and a significantly higher instability of the dominant frequency in both fasting state (0.50+/-0.05 vs 0.31+/-0.04, P < 0.01) and fed state (0.39+/-0.05 vs 0.25+/-0.03, P < 0.05). It was also found the postprandial increase in EGG dominant power in the patients was inversely correlated with the total symptom score (r = 0.63, P = 0.03). It was concluded that abnormal gastric myoelectrical activity may play a role in the pathogenesis of pediatric functional dyspepsia.

Adolescent↗

Construction of new retroviral producer cells from adenoviral and retroviral vectors.

A combination of adenoviral and retroviral vectors was used to construct second generation packaging cells that deliver marker genes to target cells. A vector based upon Moloney murine leukemia virus (MoMLV) was used to deliver marker genes, and an adenovirus-based delivery system was used to deliver MoMLV structural genes (gag pol and env) to cultured cells. The procedure transformed the cells into new retroviral producer cells, which generate replication-incompetent retroviral particles in the culture supernatant for transferring marker genes to target cells. The titer of the retroviral-containing supernatant generated from the second generation producer cells reached above 10(5) c.f.u./ml, which is comparable to the MoMLV-based producer cell lines currently used in human gene therapy trials. These observations suggest that this new gene transfer scheme is technically feasible. The vector and procedures may be adapted for experimental human gene therapy in which the new producer cells are transplanted into patients for continuous gene transfer.

3T3 Cells↗