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Biomedical subjects

W-H Lee

Publications and source records attributed to W-H Lee.

7 recordsLinked to original sources

The endogenous immune response modulates the course of IgA-immune complex mediated nephropathy.

In animal models of IgA nephropathy, the inevitable endogenous immune response to passively administered antigens alone or in complex with specific IgA mask the exact role each might play in pathogenesis. To delineate the role the immune response might play, we have developed a passive model with exclusive IgA-immune complex-mediated nephropathy in B-cell-deficient (BCD) mice. Glomerular IgA immune deposits were induced by administration of purified IgA antiphosphorylcholine and the specific pneumococcal C-polysaccharide (PnC) antigen daily for 2 weeks into BCD and wild-type (WT) mice. In BCD mice IgA+PnC deposits induced severe glomerular injury and renal dysfunction. In contrast, WT mice developed intense glomerular IgG and IgM and C3 co-deposits of the IgA+PnC with significantly less renal injury. Cytofluorometric analysis revealed that PnC induced in BCD, but not in WT, a rapid and dramatic increase in number of activated CD3(+)/CD69(+) T-cell population. The nuclear factor-kappa B (NF-kappaB) transcription factor was activated early and progressively increased in response to glomerular IgA+PnC deposits. These results suggest that nephritogenic IgA+PnC immune deposits induce glomerular and renal dysfunction through activation of the NF-kappaB. This inflammatory pathway is modulated by the endogenous cellular and antibody response to the antigen affecting the course of IgA nephropathy progression.

Animals↗

Hec1 sequentially recruits Zwint-1 and ZW10 to kinetochores for faithful chromosome segregation and spindle checkpoint control.

Faithful chromosome segregation is essential for maintaining the genomic integrity, which requires coordination among chromosomes, kinetochores, centrosomes and spindles during mitosis. Previously, we discovered a novel coiled-coil protein, highly expressed in cancer 1 (Hec1), which is indispensable for this process. However, the precise underlying mechanism remains unclear. Here, we show that Hec1 directly interacts with human ZW10 interacting protein (Zwint-1), a binding partner of Zeste White 10 (ZW10) that is required for chromosome motility and spindle checkpoint control. In mitotic cells, Hec1 transiently forms complexes with Zwint-1 and ZW10 in a temporal and spatial manner. Although the three proteins have variable cell cycle-dependent expression profiles, they can only be co-immunoprecipitated during M phase. Immunofluorescent study showed that Hec1 and Zwint-1 co-localize at kinetochores beginning at prophase and that ZW10 joins them later at prometaphase. Depletion of Hec1 impairs the recruitment of both Zwint-1 and ZW10 to kinetochores, while depletion of Zwint-1 abrogates the kinetochore localization of ZW10 but not Hec1. The results suggest that the localization of Hec1 at kinetochores is required for the sequential recruitment of Zwint-1 and ZW10. Disrupting this recruitment by inhibiting the expression of Hec1 or Zwint-1 causes chromosome missegregation, spindle checkpoint failure, and eventually cell death upon cytokinesis. Taken together, these results, at least in part, provide a molecular basis to explain how Hec1 plays a crucial role for spindle checkpoint control and faithful chromosome segregation.

Cell Cycle Proteins↗

Increasing EMMPRIN and matriptase expression in hepatocellular carcinoma: tissue microarray analysis of immunohistochemical scores with clinicopathological parameters.

AIMS: To examine the expression of extracellular matrix metalloprotease inducer (EMMPRIN) and matriptase in hepatocellular carcinoma (HCC) and to correlate this with tumour progression. METHODS AND RESULTS: Immunohistochemical analysis of EMMPRIN and matriptase was performed on tissue microarrays of 122 cases of HCC with various histological grades and/or clinical parameters. The expression of EMMPRIN and matriptase was undetectable in normal liver parenchyma of all eight control cases. However, among the 122 HCC cases, EMMPRIN and matriptase immunoreactivity was seen on the cell membrane and in the cytoplasm. The average immunostaining scores of EMMPRIN were 88 for grade I HCC, 195 for grade II HCC and 293 for grade III HCC. Of 85 HCC cases in 122 with detailed clinical TNM stages, the average immunostaining scores of EMMPRIN were 75 for stage T1, 177 for stage T2, 260 for stage T3 and 313 for stage T4 cases of HCC. In addition, the average immunostaining scores of matriptase were 84 for grade I HCC, 187 for grade II HCC, 302 for grade III HCC, and 72 for stage T1, 181 for stage T2, 224 for stage T3 and 284 for stage T4 cases of HCC. More advanced M and N stages of HCC were associated with higher intensity, greater percentages of tumour staining and immunostaining scores of EMMPRIN and matriptase. Higher EMMPRIN and matriptase immunostaining scores in HCCs also correlated significantly with tumour grading and TNM stages. CONCLUSIONS: Our findings demonstrate for the first time that EMMPRIN and matriptase are overexpressed in HCC. These may be novel biomarkers for the diagnosis and treatment of HCC.

Basigin↗

Expression of EMMPRIN and matriptase in esophageal squamous cell carcinoma: correlation with clinicopathological parameters.

Extracellular matrix metalloproteinase inducer (EMMPRIN) and the type II transmembrane serine protease, matriptase, are expressed in several human cancers and play an important role in tumor progression. The aim of the present study was to investigate the immuno-staining patterns of EMMPRIN and matriptase in patients with esophageal squamous cell carcinomas (SCC) and correlate the percentage tumor staining with tumor differentiation and clinical parameters. EMMPRIN and matriptase immunoreactivity was seen on the cell membrane and in the cytoplasm of tumor cells in all 41 cases of esophageal SCC evaluated. The percentage tumor staining of EMMPRIN was 48 +/- 3% for well differentiated, 73 +/- 3% for moderately differentiated, and 92 +/- 3% for poorly differentiated esophageal SCC. Higher percentage tumor staining with EMMPRIN correlated significantly with poorly differentiated esophageal SCC (P < 0.05). The percentage tumor staining with matriptase correlated significantly with tumor differentiation (52 +/- 3% for well differentiated, 85 +/- 2% for moderately differentiated, and 88 +/- 3% for poorly differentiated esophageal SCC). Additionally, higher percentage tumor staining with matriptase was significantly correlated with the advanced N and M stages (P < 0.05). Our results demonstrate that EMMPRIN and matriptase are over-expressed in esophageal SCC and are correlated with advanced clinicopathological stages. Pharmacological agents targeting EMMPRIN and matriptase expressions may be beneficial in the treatment of esophageal SCC.

Adult↗

Chronological alterations of P2X3 receptor expression in the trigeminal ganglion after ischaemic insult in the Mongolian gerbil.

P2X receptors play a role in the transduction of sensory signals like pain. Few studies have been undertaken on altered P2X(3) receptor (P2X3) expression in sensory neurones after peripheral nerve injury. In the present study, we investigated chronological alterations in P2X3 immunoreactivity and its protein content in the trigeminal ganglion after ischaemic insult in the Mongolian gerbil. In the sham-operated group, P2X3-immunoreactive neurones were found abundantly in small- and medium-sized neurones. From 1 day after ischaemic insult, the number of P2X3-immunoreactive neurones decreased significantly. At 5 days after ischaemic insult, P2X3 immunoreactivity was observed in few neurones, but its immunoreactivity was weak. However, the number of cresyl violet-positive neurones was unchanged throughout this period in all groups. These results suggest that transient trigeminal ganglion ischaemia may provoke a decrease of P2X3 expression and its protein content, and that this down-regulation of P2X3 may be related to the altered pain and thermal sensation without being associated with a transient ischaemic insult.

Animals↗

Consortium of fold-catalyzing proteins increases soluble expression of cyclohexanone monooxygenase in recombinant Escherichia coli.

The cyclohexanone monooxygenase ( CHMO) gene of Acinetobacter sp. NCIMB 9871 was simultaneously expressed with the genes encoding molecular chaperones and foldases in Escherichia coli. While the expression of the CHMO gene alone resulted in the formation of inclusion bodies, coexpression of the chaperone or foldase genes remarkably increased the production of soluble CHMO enzyme in recombinant E. coli. Furthermore, it was found that molecular chaperones were more beneficial than foldases for enhancing active CHMO enzyme production. The recombinant E. coli strain simultaneously expressing the genes for CHMO, GroEL/GroES and DnaK/DnaJ/GrpE showed a specific CHMO activity of 111 units g(-1) cell protein, corresponding to a 38-fold enhancement in CHMO activity compared with the control E. coli strain expressing the CHMO gene alone.

Acinetobacter↗

Endogenous retrovirus HC2 pol fragments in the squirrel monkey: expression, evolution, and phylogeny.

Human endogenous retrovirus HC2 is an incomplete provirus containing the entire gag and pol genes and a 3' LTR, whereas the 5' LTR and env gene are missing. We investigated expression of the HC2 pol gene in the squirrel monkey ( Saimiri sciureus) by RT-PCR. The pol gene was expressed in cerebellum, liver, lung, and spleen of the squirrel monkey, but not in six other tissues tested. RT-PCR products were cloned and sequenced resulting in seven sequences that were analyzed. These sequences showed 73.7-89.2% sequence similarity to HC2 pol genes present in the human genome. No frameshifts or termination codons caused by deletion/insertion or point mutation were found in clones SM-HC27-1 and SM-HC27-4 isolated from squirrel monkey lung tissues. Phylogenetic analysis showed that HC2 pol elements from the squirrel monkey were randomly clustered with those in human genome and the genomes of other nonhuman primates, indicating that substantial evolution of the HC2 elements occurred prior to primate speciation with additional evolution of the elements, independent of each other, after speciation.

Amino Acid Sequence↗