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C T Lin

Publications and source records attributed to C T Lin.

195 records · Page 11Linked to original sources

Localization of calmodulin in rat cerebellum by immunoelectron microscopy.

Calmodulin, a multifunctional Ca(++)-binding protein, is present in all eucaryotic cells. We have investigated the distribution of this protein in the rat cerebellum by immunoelectron microscopy using a Fab-peroxidase conjugate technique. In Purkinje and granular cell bodies, calmodulin reaction product was found localized both on free ribosomes and on those attached to rough endoplasmic reticulum (RER) and the nuclear envelope. No calmoduline was observed in the cisternae of RER or the Golgi apparactus. Calmodulin did not appear to be concentrated in the soluble fraction of the cell under the conditions used. Rather, peroxidase reaction product could be seen associated with membranes of the Golgi apparatus the smooth endoplasmic reticulum (SER), and the plasma membrane of both cell bodies and neuronal processes. In the neuronal dendrites, calmodulin appeared to be concentrated on membranes of the SER, small vesicles, and mitochondria. Also, granular calmodulin was observed in the amorphous material. In the synaptic junction, a large amount of calmodulin was seen attached to the inner surface of the postsynaptic membrane, whereas very little was observed in the presynaptic membrane or vesicles. These observations suggest that calmodulin is synthesized on ribosomes and discharged into the cytosol, and that it then becomes associated with a variety of intracellular membranes. Calmodulin also seems to be transported via neuronal processes to the postsynaptic membrane. Calmodulin localization at the postsynaptic membrane suggests that this protein may mediate calcium effects at the synaptic junction and, thus, may play a role in the regulation of neurotransmission.

Animals↗

Immunoelectron microscopy localization of immunoglobulin G in human placenta.

Immunoelectron microscopy of IgG molecules in human mature placenta has shown that IgG bound to microvillar surfaces and the inner wall of endocytotic vesicles of syncytiotrophoblasts. The endocytotic vesicles, containing both bound and unbound IgG molecules, tended to fuse with each other or with other cellular organelles, particularly with lysosomes. The phagolysosomes were more abundant in the basal regions of the cells. Apparently some IgG molecules were not digested by lysosomal enzymes. Vesicles with residual IgG were found to fuse with the basal and basolateral cell membrane and to discharge their contents into the extracellular space by exocytosis. It is suggested that IgG molecules were transported through the trophoblastic basement membrane and the interstitial space by diffusion to the endothelial basement membrane. The IgG molecules then migrated into the fetal vascular lumen via endothelial gaps and interendothelial spaces.

Female↗

Effects of estrogen on specific protein synthesis in the cockerel liver: an immunocytochemical study on major apoproteins in very low density and high density lipoproteins and albumin.

The effects of estrogen on two major apolipoproteins, apoVLDL-II and apoA-I, and albumin synthesis have been studied morphologically in cockerels using immunocytochemical methods. After the administration of a single dose of diethylstilbesterol (5 mg), the number of apoVLDL-II-containing hepatocytes increased markedly. The reaction product was also detected in the sinusoids. In contrast, the number of apoA-1- and albumin-containing cells did not seem to change significantly after estrogen treatment. The number of albumin-containing hepatocytes was higher than the number of apoVLDL II- or apoA-I-containing cells in the basal state. After estrogen, apoVLDL-II-containing cells were much more abundant than the other two cell types. The morphological changes induced by estrogen are correlated well with changes in the concentration of the three proteins in plasma after estrogen treatment.

Animals↗

Effect of estrogen on ovalbumin gene expression in differentiated nontarget tissues.

By use of cloned DNA fragments as probes, low levels of ovalbumin RNA sequences (structural and intervening sequences) were detected in nuclear RNA extracts of nontarget tissues, such as liver, spleen, brain, and heart of chicks. The expression of the ovalbumin gene sequences was hormone dependent. In estrogen-stimulated chicks, a low level of ovalbumin RNA sequences, ranging from 0.2 to 0.7 molecule per cell, was present in nontarget tissues while less than 0.01 molecule per cell could be found in the same tissues of unstimulated chicks. A significant amount of the ovalbumin mRNA sequences was also found in polysomes of liver and brain. The ovalbumin mRNA sequences could be translated into proteins which were only localized in a few cells among the entire population of liver cells as determined by an immunocytochemical assay. These results suggest that there are some cells in liver, spleen, heart, and brain which can respond to hormone stimulation and produce ovalbumin mRNA and its translational product.

Animals↗

Ultrastructural localization of gamma-chain and immunoglobulin G in human lymphocytes using enzyme-labeled Fab fragment.

By the use of rabbit antibodies against the heavy chain of human immunoglobulin G (IgG), the gamma-chain and IgG molecules were successfully localized at the ultrastructural level in human peripheral lymphocytes. The rabbit Fab fragment was coupled to horseradish peroxidase by means of glutaraldehyde and the resulting conjugate could penetrate the intact plasma membrane. Discernible reaction product was observed in cisternae of the nuclear envelope, rough endoplasmic reticulum and Golgi apparatus as well as on the surface of the lymphocytes. In normal human individuals under no specific antigenic stimulation, only a few peripheral lymphocytes showed a rare positive intractoplasmic reaction. Reaction product may represent either the whole IgG molecule, the half molecule consisting of one heavy and one light chain or nascent gamma-chain.

Animals↗

G protein beta2 subunit antisense oligonucleotides inhibit cell proliferation and disorganize microtubule and mitotic spindle organization.

The association of G protein beta2 subunit (Gbeta2) with mitotic spindles in various mammalian cells has been demonstrated previously. Recently, we have identified the association of Gbeta2 protein with microtubules (Wu et al., [1998] J. Cell. Biochem. 70: 552-562). In the present experiment we have demonstrated the possible functional role of Gbeta2 in microtubule and mitotic spindle organization in mammalian cells. When Gbeta2 antisense phosphorothioate oligonucleotides were transfected into mammalian cells, inhibition of cell proliferation with cell death after a 4-day treatment was observed. If the transfected cells were incubated for two days and their Gbeta2 and microtubules were examined by Western blotting and immunofluorescence localization, marked reduction of the Gbeta2 protein, fragmentation and disassembly of cytoplasmic microtubules, and disorganized mitotic spindles were found. We conclude that the Gbeta2 protein is closely associated with microtubule assembly and may play a potential role in the regulation of cell proliferation and microtubule and mitotic spindle organization in mammalian cells.

Cell Division↗

The association of heterotrimeric GTP-binding protein (Go) with microtubules.

The heterotrimeric GTP-binding regulatory proteins (G proteins) play an important role in the regulation of membrane signal transduction. Recently, we identified the association of Go protein with mitotic spindles. Here we have investigated the relationship between Go protein and microtubules. We used temperature-dependent reversible assembly and taxol methods to purify microtubules from bovine brains. Goalpha and Gbeta proteins were identified in the microtubular fraction by both methods. The Goalpha subunit in the microtubular fraction could be ADP ribosylated by pertussis toxin. Co-immunoprecipitation data also revealed that Go protein can interact with microtubules. Exogenous Go protein could be incorporated into the assembled microtubular fraction, and 5 microg/ml (60 nM) of Go protein inhibited 40% of microtubule assembly. Western blot analysis of Goalpha-1 and Goalpha-2 in microtubular fractions showed that only Goalpha-1 is associated with microtubules. We conclude that the Goalpha-1betagamma proteins are associated with microtubules and may play some role in regulating the assembly and disassembly of microtubules.

Amino Acid Sequence↗

Synthesis of biotinylated glyfoline for immunoelectron microscopic localization.

Antineoplastic glyfoline (1) has potent antitumor efficacy against various murine and human solid tumors. To elucidate the actual mechanism of action, we synthesized biotinylated glyfoline (B-Gly) and used it for the visualization of glyfoline-binding sites in nasopharyngeal carcinoma (NPC) cells. Under the electron microscope (EM), after cells were incubated for 6-36 h, the reaction products of anti-B-Gly were seen on some areas of the external cell surface and on the outer and inner membranes of the mitochondria. Pure EM morphology of NPC cells after glyfoline treatment revealed the similar morphological change of mitochondria. These findings indicate that the binding site of glyfoline in NPC is the inner membrane of the mitochondria, suggesting that B-Gly can be used as a marker for glyfoline localization.

Acridines↗

Modification of the Wang tube to improve in vitro semen manipulation.

The Wang tube was modified to improve in vitro semen manipulation, by adding another two racks to the anterior (posterior) wall of the low component of the Wang tube and supplying another four convex lenses symmetrical to those on the bottom wall. The former provides a slanted position leading to a complete real-time sperm separation image and benefiting low-quality sperm preparation when the modified Wang tube is turned on its side. The latter converses the microscope's light better and gives a clearer objective image.

Fertilization in Vitro↗