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Biomedical subjects

J J Lin

Publications and source records attributed to J J Lin.

At least 163 records · Page 9Linked to original sources

Caldesmon-binding sites on tropomyosin.

The interaction of chicken gizzard caldesmon with fragments of tropomyosin, generated by chemical, enzymatic, and mutational means, was studied to determine the caldesmon-binding site(s) on tropomyosin. Binding was examined by fluorescence spectroscopy and affinity chromatography. Removal of residues 1-141 and 228-284, respectively, from the NH2 and COOH ends of tropomyosin did not affect its binding to caldesmon significantly, indicating that the major, caldesmon-binding region lies between residues 142-227. The Escherichia coli produced chicken gizzard beta-tropomyosin mutant, CSM-beta (1/8/12-227), bound caldesmon about 2-fold stronger than a similar mutant of residues 8-200. This further focused the primary caldesmon-binding site to residues 201-227. Cleavage of tropomyosin at CYS-190 weakened markedly the binding of the two resulting fragments, residues 1-189 and 190-284, to caldesmon suggesting the requirement for the integrity of the caldesmon-binding region between residues 142227 of tropomyosin for strong interaction with caldesmon. Based on data from this study and others, we have proposed models for the interaction of tropomyosin with caldesmon in vitro, as well as the possible arrangement of the smooth muscle thin filament proteins in vivo.

Animals↗

The regulation of resistance to Schistosoma mansoni by auto-anti-idiotypic immunity. III. An analysis of effects on epitopic recognition, idiotypic expression, and anti-idiotypic reactivity at the clonal level.

Auto-anti-idiotypic mechanisms can regulate the protective immune response against Schistosoma mansoni. Anti-idiotypic responses were stimulated by immunization of mice either with nonspecifically induced lymphoblasts, produced with Con A, or with Ag-induced lymphoblasts bearing specific idiotypic receptors. The effect of the induced anti-idiotypic response upon clonotypic cellular reactivity was assessed in vitro through the suppression of antigen-mediated blast transformation by cloned T cells and in vivo by suppression of resistance to S. mansoni and delayed-type hypersensitivity responses against specific Ag. Differential regulation of humoral immune responses was studied at the levels of specific epitopic recognition, the expression of specific Id, and the production of anti-idiotypic responses directed against mAb bearing specific Id. Anti-idiotypic sensitization resulted in variable (10 to 90%) suppression of the immune response to discrete antigenic epitopes, the expression of specific idiotypic phenotypes, and anti-idiotypic, antiparatopic responses against T cell clonotypes and antibody idiotypic phenotypes. In vitro admixture and in vivo challenge studies resulted in consonant differential suppression. Thus idiotypic regulation can mold the fine specificities of the protective immune response to S. mansoni at the clonal level and may provide an approach to optimize the expression and assessment of resistance.

Animals↗

Specificity of the induction of ferritin synthesis by hemin.

We have previously reported that hemin derepresses ferritin mRNA translation in vitro. As noted earlier, pre-incubation of a 90 kDa ferritin repressor protein (FRP) with hemin prevented subsequent repression of ferritin synthesis in a wheat germ extract. The significance of this observation has been investigated further. Evidence is presented here that this inactivation of FRP is temperature dependent. Neither FeCl3, Fe3+ chelated with EDTA, nor protoporphyrin IX caused significant inactivation of FRP under comparable conditions, whereas Zn2(+)-protoporphyrin IX produced an intermediate degree of inhibition. The presence of a glutathione redox buffer (GSB), which was previously shown to minimize non-specific side-effects of hemin, was not necessary for the derepression reaction. Inclusion of mannitol, a free radical scavenger, did not alter the inactivation caused by hemin. Calculation of the expected ratio of hemin monomers to dimers suggests that the active species is the monomer.

Animals↗

The regulation of resistance to Schistosoma mansoni by auto-anti-idiotypic immunity. II. Global qualitative and quantitative regulation.

These studies explore the suppression of resistance to schistosomiasis mansoni through interactions of autologous immune functions derived from an induced anti-idiotypic response. This anti-clonotypic response is induced by immunization with syngeneic L3T4+ receptor-bearing lymphoblasts and for the sake of description is termed "auto-anti-idiotypic". It is antigenically restricted and cannot be induced by allogeneic cells. Anti-idiotypic immunization profoundly suppressed the development of protective immunity after exposure to irradiated cercariae and altered a wide variety of functional humoral and cellular immune responses to the parasite. In addition to quantitative suppressive effects, the anti-idiotypic network also regulated qualitative aspects of the immune response by increasing the heterogeneity and reducing the functional binding avidity of antibody for Ag. These effects also were reflected in analogous alterations in cellular reactivity, using the criteria of the Ag mediated blast transformation and delayed type hypersensitivity. Thus idiotypic regulation can mold the specificity and sensitivity of the immune response to Schistosoma mansoni by affecting quantitative and qualitative responses. Manipulation of idiotypic recognition provides an approach to optimize the expression of protective resistance to schistosomiasis.

Animals↗

Derepression of ferritin messenger RNA translation by hemin in vitro.

Incubation of a 90-kilodalton ferritin repressor protein (FRP), either free or complexed with an L-ferritin transcript, with hemin or Co3+-protoporphyrin IX prevented subsequent repression of ferritin synthesis in a wheat germ extract. Neither FeCl3 in combinations with H2O2, nor Fe3+ or Fe2+ chelated with EDTA, nor Zn2+-protoporphyrin IX, nor protoporphyrin IX caused significant inactivation of FRP. FRP that had been inactivated by hemin remained chemically intact, as revealed by SDS-polyacrylamide gel electrophoresis. Inclusion of chelators of iron or free radical scavengers did not alter the inactivation produced by hemin. These and other results indicate that hemin derepresses ferritin synthesis in vitro.

Binding Sites↗

Absence of growth-hormone receptor in hepatocellular carcinoma and cirrhotic liver.

Hepatocellular carcinoma is a hormone-sensitive tumor. It has been reported that thyroxine and prolactin significantly stimulated hepatoma growth, whereas growth hormone failed to do so. To learn whether the growth hormone receptor is present in human hepatocellular carcinoma, we used radioreceptor assays in samples of human hepatocellular carcinoma. The liver tissues adjacent to hepatocellular carcinoma (mostly cirrhotic) and control liver tissues (taken during various surgical procedures) were also studied. The study results showed that the affinity constant and capacity of high-affinity growth hormone receptor in normal liver tissues were 6.6 +/- 2.0 x 10(10) mol/L-1 (mean +/- SE, n = 7) and 20.7 +/- 11.5 fmol/mg protein, respectively. The affinity constant and capacity of low-affinity growth hormone receptor in normal liver tissues were 8.9 +/- 3.3 x 10(9) mol/L-1 and 64.7 +/- 32.1 fmol/mg protein, respectively. The absence of growth hormone receptor in human hepatocellular carcinoma and cirrhotic liver samples may explain the absence of growth hormone in the stimulation of hepatoma growth and the decrease of somatomedin levels in cirrhosis.

Adult↗

Immunoelectron microscopic observations on tropomyosin localization in striated muscle.

Tropomyosin localization in striated muscle was studied by means of immunoelectron microscopy. Polyclonal and monoclonal antibodies to tropomyosin were allowed to diffuse into mechanically skinned single fibres dissected from frog semitendinosus muscle. Antibodies produced transverse I-band stripes with the expected periodicity of 38 nm. However, some differences were revealed among the various antibodies. While polyclonal antibodies generally showed 23 stripes, monoclonal antibodies showed an extra 24th stripe immediately adjacent to the Z-line, implying some structural/functional uniqueness of this terminal tropomyosin. Furthermore, the stripes did not always lie parallel to the Z-line. When the Z-line was straight or slightly skewed, the stripes generally were parallel to it. However, when Z-line skew was more severe, the stripes remained perpendicular to the fibre axis, indifferent to the Z-line skew. This may implay that the coupling of tropomyosin to the thin filament is not tight. Finally, the monoclonal antibodies themselves exerted an anomalous effect on the Z-line, apparently extracting or shifting some of its mass.

Animals↗

Striated muscle tropomyosin-enriched microfilaments of developing muscles of chicken embryos.

The striated muscle tropomyosin-enriched microfilaments were isolated from developing muscles in ovo by the previously described method with a monoclonal antibody against striated muscle isoforms of tropomyosin (Lin & Lin, 1986). Two-dimensional gel analysis of the isolated microfilaments from developing heart, thigh and breast muscles revealed the coexistence of non-muscle isoforms of tropomyosin and actin throughout all stages of embryogenesis. A small but significant amount of skeletal muscle isoforms (alpha, beta) of tropomyosins and their phosphorylated forms was detected in the microfilaments isolated from hearts of 6-15-day-old embryos. These skeletal isoforms of tropomyosins disappeared after this stage of embryogenesis. In addition, we also detected both embryonic and adult isoforms of troponin T in early developing hearts. In developing thigh and breast muscles, the presence of non-muscle tropomyosin isoforms 2, 3a and 3b in the isolated microfilaments was apparent. The contents of tropomyosin isoform 2 were decreased with development and this non-muscle isoform completely disappeared at the 15th day of embryogenesis. On the other hand, the non-muscle tropomyosin isoforms 3a and 3b were present throughout all stages of development. Double-label immunofluorescence microscopy with monoclonal CH1 (anti-striated muscle isoforms of tropomyosin) and CG beta 6 (anti-non-muscle isoforms of tropomyosin) on the isolated, glycerinated skeletal and cardiac muscle cells of 10-day-old or 13-day-old embryos confirmed the colocalization of muscle and non-muscle isoforms of tropomyosins within the same cells. These results suggest that different isoforms of actin and tropomyosin can assemble into a class of microfilaments (i.e. striated muscle tropomyosin-enriched microfilaments) in ovo, which may transform into the thin filaments of mature muscle cells.

Actin Cytoskeleton↗

Monoclonal antibodies against cardiac myosin heavy chain.

Three mouse IgG1 monoclonal antibodies (MAbs), named FA1, FA2, and FA3, against cardiac myosin heavy chain (MHC) with high specificity have been obtained. The immunogen used to generate these MAbs was the high-salt- and detergent-insoluble fraction of adult rat myocardial tissue. Western blots showed that these MAbs reacted with a 200 kD protein band, which comigrated with the heavy chain of purified rat cardiac myosin in SDS-PAGE. Immunofluorescence microscopy revealed that the antigen recognized by these MAbs was localized at the A-band of isolated myofibrils. The tissue-, species-, and isoform-specificities of these MAbs were examined by Western blots on various muscle samples. FA2 recognized fish, frog, chicken, rabbit, bovine, mouse and rat cardiac MHC, as well as rabbit skeletal and rat aorta smooth muscle MHC. This antibody reacted equally well with both alpha- and beta-isoforms of MHC. FA1 did not crossreact with any MHC tested so far but with rat cardiac MHC. It appeared to react only with alpha-isoform of MHC. FA3 recognized only rat, bovine and rabbit cardiac MHC with the specificity to bovine and rabbit atrial MHC. Elisa competition assay revealed that different epitopes on the antigen molecules were recognized by these three MAbs, although there was a partial overlap between the epitopes for FA1 and FA2. These anti-MHC MAbs will be most useful in investigating the expression of MHC during myocardial development.

Animals↗

Activities of the pentose phosphate pathway and enzymes of proline metabolism in legume root nodules.

Based on localization and high activities of pyrroline-5-carboxylate reductase and proline dehydrogenase activities in soybean nodules, we previously suggested two major roles for pyrroline-5-carboxylate reductase in addition to the production of the considerable quantity of proline needed for biosynthesis; namely, transfer of energy to the location of biological N(2) fixation, and production of NADP(+) to drive the pentose phosphate pathway. The latter produces ribose-5-phosphate which can be used in de novo purine synthesis required for synthesis of ureides, the major form in which biologically fixed N(2) is transported from soybean root nodules to the plant shoot. In this paper, we report rapid induction (in soybean nodules) and exceptionally high activities (in nodules of eight species of N(2)-fixing plants) of pentose phosphate pathway and pyrroline-5-carboxylate reductase. There was a marked increase in proline dehydrogenase activity during soybean (Glycine max) ontogeny. The magnitude of proline dehydrogenase activity in bacteroids of soybean nodules was sufficiently high during most of the time course to supply a significant fraction of the energy requirement for N(2) fixation. Proline dehydrogenase activity in bacteroids from nodules of other species was also high. These observations support the above hypothesis. However, comparison of pentose phosphate pathway and pyrroline-5-carboxylate reductase activities of ureide versus amide-exporting nodules offers no support. The hypothesis predicts that pyrroline-5-carboxylate and pentose phosphate pathway activities should be higher in ureide-exporting nodules than in amide-exporting nodules. This predicted distinction was not observed in the results of in vitro assays of these activities.

Journal Article↗

Induction of ferritin synthesis in vitro: problems of specificity inherent in the use of iron compounds.

The potential importance of heme as a translational regulator has been recognized for nearly 30 years. However, the ability to distinguish the specific regulatory effects of heme from the nonspecific effects has been hampered by its high reactivity and its tendency to generate reactive by-products in most systems. In this article we discuss some of the technical difficulties in studying the effects of iron salts and compounds, notably heme, in biochemical systems in vitro. Data are presented which show that the nonspecific inhibitory effects of heme on two restriction endonucleases can be eliminated by (a) including a redox buffer in the reaction mixture, and (b) maintaining a sufficiently high total protein concentration. Under these conditions, the specific effects of hemin on the ferritin repressor protein are still observed. A possible relationship between these observations and the status of 'free' heme in vivo is considered.

Deoxyribonuclease BamHI↗

Analysis of the promoter region of the melanin locus from Streptomyces antibioticus.

Several approaches were used to study the transcriptional control region of the melanin-production locus (melC) of Streptomyces antibioticus. Filter-binding in combination with exonuclease III protection localized the 3' boundary of a Streptomyces RNA polymerase-binding site predominantly about 39 nucleotides (nt) upstream from the start codon of melC1, the first open reading frame in the melC locus. Deletion of nt 112-197 upstream from the melC1 start codon reduced melC expression to less than 10%, and deletion of nt 28-107 or 28-120 upstream from melC1 totally inactivated melC. High-resolution nuclease S1 mapping identified the in vitro transcriptional start point (tsp) at 33-34 nt upstream from the start codon of melC1. No sequence resembling the E. coli consensus promoter sequence was found in this region, and site-directed mutagenesis of such a sequence located 101-132 nt upstream from melC1 did not influence melC expression. These studies suggest that transcription of melC is principally from a single tsp and is positively regulated by a mechanism that involves sequences 87-163 nt upstream from the tsp.

Base Sequence↗

A new mechanism for repairing oxidative damage to DNA: (A)BC excinuclease removes AP sites and thymine glycols from DNA.

Escherichia coli (A)BC excinuclease is the major enzyme responsible for removing bulky adducts, such as pyrimidine dimers and 6-4 photoproducts, from DNA. Mutants deficient in this enzyme are extremely sensitive to UV and UV-mimetic agents, but not to oxidizing agents, or ionizing radiation which damages DNA in part by generating active oxygen species. DNA glycosylases and AP1 endonucleases play major roles in repairing oxidative DNA damage, and thus it has been assumed that nucleotide excision repair has no role in cellular defense against damage by ionizing radiation and oxidative damage. In this study we show that the E. coli nucleotide excision repair enzyme (A)BC excinuclease removes from DNA the two major products of oxidative damage, thymine glycol and the baseless sugar (AP site). We conclude that nucleotide excision repair is an important cellular defense mechanism against oxidizing agents.

DNA Damage↗

Isolation and characterization of cDNA clones encoding embryonic and adult isoforms of rat cardiac troponin T.

We have previously reported that troponin T (TnT), a regulatory protein in muscle contraction, undergoes a switch from the larger, acidic embryonic form to the smaller, basic adult form during rat heart development (Jin, J.-P., and Lin, J.J.-C. (1988) J. Biol. Chem. 263, 7309-7315). To investigate the significance and the molecular mechanism of this isoform switching, cDNA clones encoding rat cardiac TnT were obtained by screening a cDNA library constructed from young rat cardiac poly(A)+ RNAs using the expression vector lambda gt11. Clone RCT10 proved to be a full length clone containing 50 base pairs (bp) of 5'-untranslated sequence, 870 bp of coding sequence, and 196 bp plus poly(A) tail at the 3'-untranslated region. In the other cDNA clone (RCT11), the entire 3'-untranslated sequence and most of the coding sequence were identical with that of RCT10, but an additional 30-bp insert was present in the coding region from residues 18 to 27. This insertion sequence appeared to code for a fragment (EDWSEEEEDE) highly enriched in acidic amino acid residues. Thus, RCT11 might represent a clone encoding the embryonic isoform of rat cardiac TnT. S1 nuclease RNA mapping analysis using end-labeled RCT11 cDNA probes confirmed that this region of the sequence is different in embryonic and adult isoform mRNAs. These results suggest that both embryonic and adult isoforms of rat cardiac TnT are generated from the same primary transcript by developmentally regulated alternative splicing. The amino acid sequence deduced from RCT10 cDNA exhibits 87%, 85%, and 72% homology with bovine, rabbit, and chicken cardiac TnTs, respectively, but less homology (57-59%) with the known skeletal TnTs from human, rat, rabbit, and chicken. Moreover, both the 5'- and the 3'-untranslated sequences of rat cardiac TnT mRNA are completely different from those reported for rat skeletal TnT mRNA, suggesting that rat cardiac TnT is coded from a gene distinct from the rat skeletal TnT gene.

Aging↗

Expression of nuclear lamin A and muscle-specific proteins in differentiating muscle cells in ovo and in vitro.

Primary cultures and tissue samples of chicken embryonic muscle were immunologically probed for the expression of muscle-specific proteins, such as myosin heavy chain and the tropomyosins, as well as for the nuclear lamina protein, lamin A. As determined by quantitative immunoblotting, the expression of lamin A and the muscle-specific proteins were at low levels or absent in predifferentiation myoblasts both in vitro and in ovo. During differentiation, an increase of lamin A expression preceded the induction to high levels of expression of muscle-specific proteins. Immunofluorescence staining of chicken embryonic muscle cells in culture also indicates an accumulation of lamin A before the induction of muscle-specific proteins expression. Furthermore, the accumulation of lamin A reached a plateau before the muscle-specific proteins during muscle development. In two dimensional NEPHGE gel analysis of immunoprecipitated lamin A, no detectable change in the ratio of the acidic/basic isoelectric variants of lamin A was observed during myogenesis. A potential role for lamin A in the mechanisms which underlie the differential and coordinate expression of muscle-specific genes is proposed.

Animals↗

Probing the role of nonmuscle tropomyosin isoforms in intracellular granule movement by microinjection of monoclonal antibodies.

Chicken embryo fibroblast (CEF) cells were microinjected with several different monoclonal antibodies that recognize certain nonmuscle isoforms of tropomyosin. Immediately after injection, cells were recorded with a time-lapse video imaging system; later analysis of the tapes revealed that particles in cells injected with one of these antibodies (CG1, specific for CEF tropomyosin isoforms 1 and 3) showed a dramatic decrease in instantaneous speed while moving, distance moved per saltation, and proportion of time spent in motion. Injection of Fab fragments of CG1 resulted in similar changes in the pattern of granule movement. This inhibition of granule movement by CG1 antibody was reversible; at 2.5 h after injection, granules in injected cells had already reached three-fourths of normal speed. The speed of granule movement in cells injected either with antibody specific for tropomyosin isoforms not present in CEF cells, or with CG1 antibody preabsorbed with tropomyosin, was not significantly different from the speed of granules in uninjected cells. When cells were injected with CG1 or Fab fragments of CG1, fixed, and counter-stained with rabbit antibodies to reveal the microtubule, microfilament, and intermediate filament systems, no obvious differences from the patterns normally seen in uninjected cells were observed. Examination of the ultrastructure of injected cells by EM confirmed the presence of apparently intact and normal microtubule, actin, and intermediate filament networks. These experiments suggest that tropomyosin may play an important role in the movement of vesicles and organelles in the cell cytoplasm. Also, we have shown previously that the CG1 determinant can undergo a motility-dependent change in reactivity, that may be important for the regulatory function of nonmuscle tropomyosin (Hegmann, T. E., J. L.-C. Lin, and J. J.-C. Lin. 1988. J. Cell Biol. 106:385-393). Therefore, in addition to postulated microtubule-based motors, microfilaments may play a critical role in regulating granule movement in nonmuscle cells.

Actin Cytoskeleton↗

[Studies on ecology of Fasciolopsis buski and control strategy of fasciolopsiasis].

The development of eggs of Fasciolopsis buski requires oxygen and the eggs cannot survive anaerobic conditions. The eggs have some resistance to low temperature and can be maintained at 4 degrees C for 3 to 4 months; however, the eggs are killed at 50 degrees C in four hours. The presence of salts can influence the development time of the eggs and reduce their hatching rate. Encysted cercariae exist not only on aquatic plants, but also on the surface of the water. The number of encysted cercariae floating on the water surface is about 3.6% of that of the total encysted cercariae. By inquiring into the case history we found that 10.3-12.8% of the patients and 35.1-40% of the infested pigs were possibly infected by drinking water contaminated with encysted cercariae. The authors suggest the use of fermented silage to feed pigs instead of fresh aquatic green fodders to prevent infection in the animals. In addition, aquatic plants such as water chestnut should be boiled for 1 to 2 minutes before eating to kill the encysted cercariae on the plants.

Animals↗