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Biomedical subjects

Y Kang

Publications and source records attributed to Y Kang.

At least 19 recordsLinked to original sources

Production of gamma-linolenic acid by disrupted mycelia of Mortierella isabellina.

AIMS: To optimize the production of linolenic acid by disrupted mycelia of Mortierella isabellina. METHODS AND RESULTS: Effects of incubation conditions such as incubation time, pH of reaction mixture, concentration of Mg2+ or malate and incubation temperature on production of linolenic acid were studied. The production of gamma-linolenic acid reached 224 mg g-1 dry cells when the reaction mixture was composed of 1.0 g (dry mycelial mass) of disrupted mycelia of M. isabellina, 50 ml (50 mmol l(-1)) potassium phosphate buffer supplemented with 0.312 mmol l(-1) of Mg2+ and 10 mmol l(-1) of malate, pH 7.0 and incubated at 5 degrees C for 1 day. CONCLUSIONS: Incubation temperature, concentration of Mg2+ and malate showed major effects on the increased linolenic acid production. SIGNIFICANCE AND IMPACT OF THE STUDY: This study highlights conditions for increasing gamma-linolenic acid production by cell-free mycelia of M. isabellina and an insight into rapidly gaining high production of polyunsaturated fatty acids.

Culture Media↗

Application of endoscopy for a midbrain tumor.

OBJECTIVE AND IMPORTANCE: It has been difficult to obtain a biopsy of a midbrain lesion. In addition, proper cerebrospinal fluid diversion should be secured because progressing tumor in the midbrain causes obstructive hydrocephalus. We report on the superiority of flexible neuroendoscopy to treat progressing midbrain tumor. CLINICAL PRESENTATION: A 64-year-old man presented with an occasional double vision. A magnetic resonance imaging scan disclosed an enhancing lesion in the midbrain. INTERVENTION: We performed a neuroendoscopic biopsy of the tumor and third ventriculostomy. Neuroendoscopy confirmed a bulging of the posterior commissure, which caused stenosis of the entrance of the aqueduct. Histological examination of the specimen obtained disclosed a diffuse astrocytoma. No permanent postoperative complications occurred although the patient felt slight double vision for 2 days after the operation. Conventional radiation therapy was supplemented. CONCLUSION: Flexible neuroendoscopic biopsy with third ventriculostomy was a less-invasive and safer alternative for the progressing midbrain tumor bulging into the ventricles.

Astrocytoma↗

Syntaxin-3 and syntaxin-1A inhibit L-type calcium channel activity, insulin biosynthesis and exocytosis in beta-cell lines.

AIMS/HYPOTHESIS: Syntaxin-1A (Syn-1A) is known to play a negative regulatory role in insulin secretion but the precise mechanisms for its action are not clear. Syn-2, -3 and -4 are also present in islet beta cells but their functions are not known. Here, we investigated the role of these syntaxins in the insulin secretory process. METHODS: We examined the following effects of Syn-1, -2, -3 and -4 expression in insulinoma beta-cell lines. Endogenous insulin secretion was measured by batch radioimmunoassay (RIA) and single cell patch clamp capacitance measurements. The L-type Ca(2+) channel activity was studied by patch clamp electrophysiology. Insulin gene transcription was examined by Northern blotting and measurement of insulin gene promoter activity by the co-expression of cyan fluorescent protein-labelled rat insulin promoter. RESULTS: Syn-1A or -3, but not Syn-2 or -4 overexpression, inhibited K(+)-induced insulin release as determined by RIA (49.7 +/- 5.5 % and 49.1 +/- 6.2 %, respectively) and electrophysiologic membrane capacitance measurements (68.0 +/- 21.0 % and 58.0 +/- 13.2 %, respectively). Overexpressed Syn-1A and -3, but not Syn-2, inhibited Ca(2+) channel current amplitude by 39.5 +/- 11.6 % and 52.7 +/- 6.0 %, respectively. Of note, overexpression of Syn-1A and -3 also reduced single cell (by confocal microscopy) and total cellular endogenous insulin content (by RIA) by 24.8 +/- 4.2 % and 31.8 +/- 3.9 %, respectively. This correlated to a reduction in endogenous insulin mRNA by 24.5 +/- 4.2 % and 25.7 +/- 4.2 %, respectively. This inhibition of insulin biosynthesis is mainly at the level of insulin gene transcription as demonstrated by an inhibition of insulin gene promoter activity (53.3 +/- 9.15 % and 39.0 +/- 6.8 %, respectively). CONCLUSIONS/INTERPRETATION: These results demonstrate that Syn-1A and -3 possess strong inhibitory actions on both insulin exocytosis and insulin biosynthesis whereas Syn-2 and -4 do not inhibit the insulin secretory process.

Animals↗

Influence of tooth-loss and concomitant masticatory alterations on cholinergic neurons in rats: immunohistochemical and biochemical studies.

The influence of tooth loss on the viability of cholinergic neurons was examined in rats. At 25th postnatal week, rats were divided into the three groups; a control group fed a solid diet, a soft diet group fed a powder diet and a molar crown-less group in which all molar crowns were removed and the powder diet was given. At 15 and 35 weeks post-treatment, the number of choline acetyltransferase (ChAT)-positive neurons in the nucleus of the diagonal band/medial septal nucleus (NDB/MS) was significantly smaller in the molar crown-less group than in the control group (P < 0.01). This was not the case in the pedunculopontine tegmental nucleus or (PPT) or in the trigeminal motor nucleus. Biochemical assay showed no statistically significant differences in choline concentrations in the hippocampus between the control and the molar crown-less group both at 15 and at 35 weeks post-treatment. Nevertheless, acetylcholine (ACh) concentration in the hippocampus of the molar crown-less group was significantly lower than that of the control group at 15 weeks post-treatment (P < 0.05). Taken together, a decrease of oral sensory information may have caused a reduction in the number of ChAT-positive neurons selectively in NDB/MS, which in turn caused a decline of ACh concentrations in the hippocampus.

Acetylcholine↗

The role of Ca2+-dependent cationic current in generating gamma frequency rhythmic bursts: modeling study.

Fast rhythmic bursting pyramidal neuron or chattering neuron is a promising candidate for the pacemaker of coherent gamma-band (25-70 Hz) cortical oscillation. It, however, still remains to be clarified how the neuron generates such high-frequency bursts. Here, we demonstrate in a single-compartment model neuron that the fast rhythmic bursts (FRBs) can be achieved through Ca2+-activated channels in the entire gamma frequency range. In a previous in vitro study, a subset of rat cortical pyramidal cells displayed a long-lasting depolarizing afterpotential (DAP) following a plateau-type action potential when K+ conductances were suppressed with Cs+, and this DAP was found to be mediated by a Ca2+-dependent cationic current. This current appeared also suitable for producing a hump-like DAP, a characteristic of the chattering neurons, because of its reversal potential being approximately -40 mV. In the present theoretical study, we show that the enhancement of such a DAP leads to generation of doublet/triplet spikes seen during FRBs. The firing pattern during FRBs is primarily determined by a Ca2+-dependent cationic current and a small-conductance Ca2+-dependent potassium current, which are differentially activated by a biphasically decaying Ca2+ transient produced by fast buffering and a slow pump extrusion after each spike. With varying intensities of injected current pulses, the interburst frequencies of the FRBs range over the entire gamma frequency band (25-70 Hz) in our model, while the intraburst frequencies remain higher than 300 Hz. Our model suggests that FRBs are essentially generated in the soma, unlike the model based on a persistent sodium current, and that the alteration of Ca2+ sensitivity of Ca2+-dependent cationic current plays an essential role in controlling the FRB pattern.

Action Potentials↗

Sex-specific finger-length patterns linked to behavioral variables: consistency across various human populations.

In humans, as in nonhuman primates, the digits of the hands are similar in length during early fetal development. Subsequently, differentiation leads to a patter of unequal finger lengths, described by George as the finger-length pattern. Recent work by Manning and colleagues suggested that digit length patterns are due to early influences of sex hormones. Most importantly for psychology, such patterns might also relate to cognitive activities that are influenced by early organizing actions of sex hormones. The exciting possibility of having an easily measurable indicator of early action of sex hormones that relates to behavior led us to examine the universality of digit length patterns. With samples from Brazil, Canada, India, Turkey, and Korea, we showed that patterns of distal extent of finger tips are similar across different human populations. Consistent sex differences were found across the samples, showing that the index finger in males extends less far distally relative to the middle finger than is the case for females and that the difference in distal extent between index and ring fingers, relative to the middle finger, is smaller in females than in males.

Adult↗

Self-assembly of one-dimensional coordination polymers from AgX (X = CF(3)SO(3)(-), ClO(4)(-), and NO(3)(-)) and 2-aminomethylpyridinedipropionitrile (2-AMPDPN).

Three novel supramolecules whose topologies depend on the counteranion, [Ag(2-AMPDPN)X] (X = CF(3)SO(3)(-) (1), ClO(4)(-) (2), and NO(3)(-) (3)), have been prepared by the self-assembly of AgX (X = CF(3)SO(3)(-), ClO(4)(-), and NO(3)(-)) with 2-aminomethylpyridinedipropionitrile (2-AMPDPN). The crystal structures reveal different packing arrangements of the one-dimensional infinite coordination polymers. Compound 1 is made up of ladder chains that are interlocked by cyano groups, while the polymeric chain of 2 is isomorphous to 1 except for the Ag-Ag interaction. Compound 3 consists of helical chains that are surrounded by nitrate. The adjacent helical chains are racemic. The structures of 1, 2, and 3 suggest the role that the counterions may play in the network construction.

Journal Article↗

Activation of mouse macrophage by soluble endogenous murine leukemia virus (MuLV) envelope protein.

We identified recently an endogenous murine leukemia virus (MuLV) envelope protein as a new autoantigen reactive with autoimmune diabetic mouse sera and observed immunosuppressive activity of this envelope protein. In the present study, to elucidate the mechanism involved, we treated macrophages with the envelope protein and investigated activation of macrophage. We found enhancements of iNOS mRNA and nitrite in envelope protein-treated RAW264.7 cells and peritoneal macrophages. The stimulation was highly envelope protein-specific, and also time- and dose-dependent. The activation pattern was similar to that elicited by lipopolysaccharide (LPS) since the envelope protein showed a synergistic effect on macrophage activation in conjunction with interferon gamma (IFN-gamma). Furthermore, deacylated LPS as a competitive inhibitor of LPS showed inhibition of envelope protein-mediated macrophage activation. These data show that MuLV envelope protein can be a new macrophage activator and suggest that the retroviral envelope protein may elicit immunosuppressive activity through macrophage activation.

Animals↗

Structural basis for pterin antagonism in nitric-oxide synthase. Development of novel 4-oxo-pteridine antagonists of (6R)-5,6,7,8-tetrahydrobiopterin.

Pathological nitric oxide (NO) generation in sepsis, inflammation, and stroke may be therapeutically controlled by inhibiting NO synthases (NOS). Here we targeted the (6R)-5,6,7,8-tetrahydro-l-biopterin (H(4)Bip)-binding site of NOS, which, upon cofactor binding, maximally increases enzyme activity and NO production from substrate l-arginine. The first generation of H(4)Bip-based NOS inhibitors employed a 4-amino pharmacophore of H(4)Bip analogous to antifolates such as methotrexate. We developed a novel series of 4-oxo-pteridine derivatives that were screened for inhibition against neuronal NOS (NOS-I) and a structure-activity relationship was determined. To understand the structural basis for pterin antagonism, selected derivatives were docked into the NOS pterin binding cavity. Using a reduced 4-oxo-pteridine scaffold, derivatives with certain modifications such as electron-rich aromatic phenyl or benzoyl groups at the 5- and 6-positions, were discovered to markedly inhibit NOS-I, possibly due to hydrophobic and electrostatic interactions with Phe(462) and Ser(104), respectively, within the pterin binding pocket. One of the most effective 4-oxo compounds and, for comparisons an active 4-amino derivative, were then co-crystallized with the endothelial NOS (NOS-III) oxygenase domain and this structure solved to confirm the hypothetical binding modes. Collectively, these findings suggest (i) that, unlike the antifolate principle, the 4-amino substituent is not essential for developing pterin-based NOS inhibitors and (ii), provide a steric and electrostatic basis for their rational design.

Animals↗

Heterozygous inactivation of TGF-beta1 increases the susceptibility to chemically induced mouse lung tumorigenesis independently of mutational activation of K-ras.

Mice heterozygous for deletion of the transforming growth factor beta1 (TGF-beta1) gene show an enhanced rate of lung tumorigenesis following carcinogen treatment. Since the growth inhibitory activity of TGF-beta1 in epithelial cells is associated with K-ras p21, and K-ras mutations commonly occur in chemically-induced mouse lung tumors, we postulated that tumors in heterozygous TGF-beta1 mice might be more likely to have K-ras mutations compared with tumors in wildtype TGF-beta1 mice. Urethane-induced lung tumors in AJBL6 TGF-beta1 +/- and +/+ mice were examined for K-ras mutations by polymerase chain reaction/single strand conformation polymorphism analysis and sequencing. Mutation frequencies were similar in both genotypes: 12/18 +/- tumors (67%) and 10/16 +/+ tumors (62%). Mutations occurred in 80% +/- and 75% +/+ carcinomas, but in only 50% of the adenomas of both TGF-beta1 genotypes. Codon 61 A-->G transition mutations were predominant, occurring in 61% +/- and 44% +/+ tumors. Three +/- (17%) and three +/+ (19%) tumors showed codon 12 mutations, mostly G-->A transitions. Two +/- tumors had both codon 61 and codon 12 mutations. Interestingly, carcinomas with mutations in codon 61 were larger than those with codon 12 changes. It appears that the mechanism of enhanced susceptibility of TGF-beta1+/- mice to urethane-induced lung carcinogenesis does not involve selective development of tumors with K-ras mutations.

Adenoma↗

Four PSM/SH2-B alternative splice variants and their differential roles in mitogenesis.

An SH2 domain originally termed SH2-B had been identified as a direct cellular binding target of a number of mostly mitogenic receptors. The complete cellular protein, termed PSM, and respective sequence variants share additional Pro-rich and PH regions, as well as similarities with APS and Lnk. A role of these mediators has been implicated in signaling pathways found downstream of growth hormone receptor and receptor tyrosine kinases, including the insulin, insulin-like growth factor-I (IGF-I), platelet-derived growth factor (PDGF), nerve growth factor, hepatocyte growth factor, and fibroblast growth factor receptors. As a result of this report a total of four PSM/SH2-B sequence variants termed alpha, beta, gamma, and delta have now been identified in the mouse and have been compared with the available rat and human sequences. Variant differences are based on alternative splicing and define distinct last exons 7, 8, and 9 that result in reading frameshifts and unique carboxyl-terminal amino acid sequences. Variant sequences have been identified from cDNA libraries and directly by reverse transcription-polymerase chain reaction. Sequence analysis predicts four distinctly sized protein products that have been demonstrated after cDNA expression. All were found phosphorylated on tyrosine specifically in response to IGF-I and PDGF stimulation. cDNA expression of the four variants caused variant-dependent levels of stimulation of IGF-I- and PDGF-induced mitogenesis. The most pronounced increase in mitogenesis was consistently observed for the gamma variant followed by delta, alpha, and beta with decreasing responses. In contrast, the mitogenic response to epidermal growth factor consistently remained unaffected. The variants are expressed in most mouse tissues, typically, most strongly in pairs of alpha and delta or beta and gamma. Our findings implicate differential roles of the PSM/SH2-B splice variants in specific mitogenic signaling pathways.

Adaptor Proteins, Signal Transducing↗

Activation of mouse B lymphocyte by proteins containing hexahistidine.

Many recombinant proteins are produced as a fusion protein tagging hexahistidine, which has been used for studying their biological function both in vitro and in vivo. Unexpectedly, we observed activation of BALB/c mouse splenocytes when treated with hexahistidine-tagged recombinant proteins. This activation was hexahistidine-specific since the anti-pentahistidine antibody completely neutralized the effect, and the bovine serum albumin conjugated with the hexahistidine peptides also showed a similar activation effect. The B cells seemed to be the activated splenocytes, since the cell population stained with the anti-immunoglobulin antibody and anti-CD80 antibody was increased after the treatment. However, the activation signal by hexahistidine was insufficient to fully differentiate the B lymphocytes. This result suggests that caution must be taken in the use of hexahistidine-tagged recombinant proteins, due to their nonspecific activation of B lymphocyte.

Animals↗

Using viral species specificity to define a critical protein/RNA interaction surface.

The Tap protein mediates the sequence-specific nuclear export of mRNAs bearing the retroviral constitutive transport element (CTE) and also plays a critical role in the sequence nonspecific export of cellular mRNAs. Previously, we have demonstrated that CTE function displays species specificity, that is, the CTE functions in human but not quail cells. Here, we demonstrate that quail Tap fails to support CTE function because it cannot bind the CTE. However, changing a single residue in quail Tap, glutamine 246, to arginine, the residue found in human Tap, rescues both CTE function and CTE binding. This residue, which is located on the exterior of a recently reported molecular structure of Tap, defines a surface on Tap that is critical for CTE binding. These data emphasize the potential importance of cross-species genetic complementation in the identification and characterization of cellular factors that are critical for different aspects of viral replication.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

A compulsive collecting behavior following an A-com aneurysmal rupture.

Hoarding behavior associated with focal brain injury is rarely reported. The authors report a 46-year-old man with pathologic collecting behavior after a left orbitofrontal and caudate injury from an aneurysmal rupture of anterior communicating artery. His hoarding, an impulse control disorder or an ego-syntonic compulsion, was restricted to one specific item (toy bullet). Treatments with sertraline or fluoxetine were not effective for the hoarding.

Brain↗

Defective repression of c-myc in breast cancer cells: A loss at the core of the transforming growth factor beta growth arrest program.

Loss of growth inhibitory responses to the cytokine transforming growth factor beta (TGF-beta) in cancer cells may result from mutational inactivation of TGF-beta receptors or their signal transducers, the Smad transcription factors. In breast cancer, however, loss of TGF-beta growth inhibition often occurs without a loss of these signaling components. A genome-wide analysis of rapid TGF-beta gene responses in MCF-10A human mammary epithelial cells and MDA-MB-231 breast cancer cells shows that c-myc repression, a response that is key to the TGF-beta program of cell cycle arrest, is selectively lost in the cancer cell line. Transformation of MCF-10A cells with c-Ha-ras and c-erbB2 oncogenes also led to a selective loss of c-myc repression and cell cycle arrest response. TGF-beta stimulation of epithelial cells rapidly induces the formation of a Smad complex that specifically recognizes a TGF-beta inhibitory element in the c-myc promoter. Formation of this complex is deficient in the oncogenically transformed breast cells. These results suggest that a Smad complex that specifically mediates c-myc repression is a target of oncogenic signals in breast cancer.

Base Sequence↗

In vivo treatment of hemophilia A and mucopolysaccharidosis type VII using nonprimate lentiviral vectors.

Gene therapy holds great promise for the treatment of a variety of inherited diseases, including hemophilia A and mucopolysaccharidosis type VII (MPS VII). In both these disorders, subnormal levels of replacement protein have therapeutic effects. Thus we hypothesized that transduction of a small proportion of cells by feline immunodeficiency virus (FIV)-based lentiviral vectors might provide sufficient levels of transgene expression for phenotypic correction. We intravenously injected replication-deficient FIV-based vectors encoding either human factor VIII or human beta-glucuronidase into factor VIII-deficient or beta-glucuronidase-deficient mice, respectively. This route of delivery targeted multiple organs, with the liver as the primary transduction site. In the hemophilia A mice, factor VIII expression persisted for the duration of the experiments (approximately 5 months), and recipient mice survived an otherwise lethal bleeding episode (tail-clipping). In mucopolysaccharidosis type VII mice, substantial beta-glucuronidase activity was detected in several tissues and corresponded with marked reduction of lysosomal storage in liver and spleen. These findings indicate that gene transfer with FIV-based lentiviral vectors can permanently introduce transgenes into a sufficient number of hepatocytes for long-term therapeutic effect and suggest potential clinical value of FIV-based lentiviral vectors for treatment of hemophilia A and MPS VII.

Animals↗

Line quadrisection errors in normal subjects.

Many studies have investigated line bisection behaviors in normal individuals and patients with hemispatial neglect. However, little is known about what happens when subjects attempt to fractionate line into more than two equal components (e.g., line quadrisection). Thirty right handed normal subjects were asked to place a mark either 25% (left quadrisection) or 75% (right quadrisection) of the distance along on a 240 mm line. On average, they placed the left quadrisection mark significantly to the left (- 4.2+/-6.7 mm) from the true quadrisection point but they were relatively accurate on the right quadrisection task (1.0+/-6.7 mm). However, comparison of actual quadrisection performances with those of expected performance based on subjective midpoint disclosed that both right and left quadrisection marks deviate toward each end of the line. Individual data analysis also support this trend because majority of subjects showed the lateral deviation in either or both quadrisection tasks. Therefore, in the left quadrisection task the pseudoneglect (leftward bias) in bisection and the lateral bias are additive, resulting in a robust left lateral deviation, whereas in the right quadrisection, these two biases nullify each other, resulting in accurate performance.

Adolescent↗

Immunohistochemical localization of voltage-gated calcium channels in substantia nigra dopamine neurons.

The rhythmic firing of dopaminergic (DA) neurons in the substantia nigra pars compacta (SNc) is thought to be mediated by nifedipine-sensitive Ca(2+) channels, although an involvement of omega-conotoxin-sensitive Ca(2+) channels is also suggested. In an attempt to localize such Ca(2+) channels at both the regional and cellular levels, their expression and distribution patterns were immunohistochemically investigated in the rat SNc. The three distinct subtypes of voltage-gated Ca(2+) channels were tested: the class B N-type alpha 1 subunit (CNB1), the class C L-type alpha 1 subunit (CNC1) and the class D L-type alpha 1 subunit (CND1). A large number of SNc neurons showed intense immunoreactivity against CND1 and they were distributed throughout the entire extent. By contrast, many fewer neurons displayed less intense CNC1 immunoreactivity and many of them were located in the lateral aspect of the SNc. No immunoreactivity against CNB1 was detected in the SNc. Moreover, double immunofluorescence analysis in combination with tyrosine hydroxylase staining revealed that virtually all DA neurons were CND1-immunoreactive whereas many DA neurons especially in the medial SNc exhibited only faint or no immunoreactivity against CNC1. Both CNC1 and CND1 were expressed in cell bodies and proximal dendrites of SNc DA neurons, whilst their distal dendrites that penetrated into the substantia nigra pars reticulata expressed CND1 alone. Thus, the ubiquitously and intensely expressed class D alpha 1 subunit of L-type Ca(2+) channels that is sensitive to both nifedipine and omega-conotoxin may be responsible for the pacemaker activity of SNc DA neurons.

Action Potentials↗