Search PubMed⌕ Search

Biomedical subjects

Z Hu

Publications and source records attributed to Z Hu.

At least 289 records · Page 16Linked to original sources

Coexpression of stem cell factor and c-kit in embryonic and adult liver.

Stem cell factor and its receptor c-kit constitute an important signal transduction system implicated in survival, proliferation, and differentiation of stem cells in hematopoiesis, gametogenesis, and melanogenesis. In the present study we used both immunocytochemical methods and Western analysis to demonstrate the presence of this cytokine/receptor system in both embryonic and adult rat liver. Stem cell factor was present in the ductular cells around the portal vein during the late embryonic stage of the liver. In the adult liver both bile ducts and bile ductules were positive for stem cell factor and c-kit. When the activation of the liver stem cell compartment was induced by combining administration of acetylaminofluorene and partial hepatectomy, both stem cell factor and c-kit were expressed in the infiltrating oval cell population, but absent in the newly formed basophilic hepatocytes. Activation of oval cell proliferation following administration Of D-galactosamine also produced a similar but less prominent increase in the level of the stem cell factor. Our data suggest that the stem cell factor/c-kit signal transduction system is involved in the development of bile ducts and that it may also be an important member of the growth factor/receptor systems associated with the biology of liver stem cells.

Age Factors↗

Multiple and tissue-specific promoter control of gonadal and non-gonadal prolactin receptor gene expression.

Prolactin receptors (PRLRs) are widely expressed, and multiple mRNA transcripts encoding PRLRs are present in prolactin target tissues. The molecular basis for the control of the PRLR gene expression is currently unknown. Analyses of the 5'-untranslated regions of PRLR mRNAs expressed in gonadal and non-gonadal tissues and their genomic organization revealed three alternative first exons designated as E11, E12, and E13. Each of these exons is alternatively spliced to a common noncoding exon (exon 2, nucleotides -115 to -56) that precedes the third exon containing the translation initiation codon. Alternative utilization of exons E11, E12, and E13, as well as alternative splicing of exon 2, generates multiple 5'-untranslated regions in PRLR transcripts. These alternative first exons (E11, E12, and E13) were found to be utilized in a tissue-specific manner in vivo. E11 is predominantly expressed in the ovary, E12 is specifically expressed in the liver, and E13 is expressed as a predominant form in the Leydig cell and as a minor form in the ovary and liver. Genomic 5'-flanking regions containing the three putative PRLR gene promoters (PI, PII, and PIII) that initiate the transcription of E11, E12, and E13, respectively, were identified. E11 was found to initiate from a single site at -549, E12 from multiple sites at -405, -461, and -506, and E13 from two major sites at -340 and -351. These findings indicate that multiple promoters control transcription of the PRLR gene and provide a molecular basis for the differential regulation of PRLR expression in diverse tissues.

Alternative Splicing↗

Skin antifreeze protein genes of the winter flounder, Pleuronectes americanus, encode distinct and active polypeptides without the secretory signal and prosequences.

Distinct antifreeze polypeptides (AFP) were isolated from the skin of the winter flounder, Pleuronectes americanus, by gel filtration and reverse phase high performance liquid chromatography. In parallel, several cDNA clones were isolated from a skin cDNA library using a liver AFP cDNA probe. Both protein and DNA sequence analyses indicate that flounder skin contains several distinct but homologous alanine-rich AFPs. Although the skin type AFPs contain 11 similar amino acid repeats found in the secretory liver type AFPs, the skin type AFPs are mature polypeptides lacking both the signal and prosequences, indicating that they may function intracellularly. The skin type AFP is significantly less active in thermal hysteretic activity than the liver type AFP. Genomic Southern analysis indicates that like the liver type AFP genes, there are multiple copies (30-40 copies) of skin type AFP. Although the liver type AFP genes are specifically expressed in the liver and to a lesser extent in intestine, the skin type AFP genes are expressed in all tissues examined including the liver and abundantly in exterior tissues, i.e. skin, scales, fin, and gills, suggesting an important protecting role in these exterior tissues.

Alanine↗

Further evidence for the structure of the subtilisin propeptide and for its interactions with mature subtilisin.

Evidence is presented for some secondary structure, very likely alpha-helical, of the propeptide of subtilisin E in aqueous salt solution, as well as for strong intermolecular interactions between the propeptide and the mature sequence both in the processed and unprocessed states (i.e. in prosubtilisin). Prosubtilisin is shown to exist as a dimer according to size exclusion high performance liquid chromatography under nondenaturing conditions; that dimer may be on the autoprocessing pathway. According to such a model, the prosequence of one prosubtilisin molecule is the template for the refolding of the mature sequence of the second, and, in turn, the hydrolytic process is intermolecular as well. Support for such an intermolecular folding model also includes potent slow binding inhibition of subtilisin by the propeptide, specific proteolysis of the propeptide by subtilisin, and evidence for intermolecular processing under a variety of conditions.

Chromatography, High Pressure Liquid↗

Exposure of postnatal rats to glucocorticoids suppresses the development of choline acetyltransferase-immunoreactive neurons: role of adrenal steroids in the development of forebrain cholinergic neurons.

Rat forebrain cholinergic neurons undergo dynamic developmental changes, showing a continuous increase in choline acetyl-transferase (ChAT) activity, during the early postnatal period. In adult rats, increases in circulating glucocorticoids result in decreases in activity of forebrain neuronal ChAT, thus raising the possibility that postnatal development of forebrain cholinergic neurons results from low levels of these hormones. In the rat, the first 2 weeks postnatally are characterized by very low levels of adrenal steroids. To understand the role of endogenous glucocorticoids in the development of forebrain cholinergic neurons, we studied the changes in ChAT immunoreactivity in forebrain cholinergic neurons of postnatal rats which had received daily subcutaneous injection of the synthetic glucocorticoid dexamethasone for 8 days. Immunohistochemical analysis of the rat pup forebrain revealed nearly complete obliteration of ChAT-immunoreactive neurons in the caudate-putamen, especially in the dorsolateral region of the rostral part. At the same stage, treatment with dexamethasone induced significant decreases in both number and length of dendritic branches of ChAT-immunoreactive neurons in the substantia innominata and the diagonal band. Despite the marked alterations in the caudate-putamen and diagonal band, the ChAT-immunoreactive neurons in other forebrain structures such as globus pallidus and medial septal nucleus showed little change. In the caudate-putamen, Nissl staining and specific labeling for nuclear DNA fragmentation exhibited no increase in number of dying cells following dexamethasone treatment, therefore indicating that the loss of ChAT immunoreactivity is not due to glucocorticoid-induced cholinergic cell death. These observations demonstrated that the development of cholinergic neurons in rat pups was inhibited by prolonged glucocorticoid exposure, suggesting that low levels of adrenal steroids may promote the postnatal development of these neurons.

Adrenal Cortex Hormones↗

Precursor-product relationship between oval cells and hepatocytes: comparison between tritiated thymidine and bromodeoxyuridine as tracers.

The expansion and differentiation of oval cells in the acetylaminofluorene (AAF)/partial hepatectomy (PH) model was studied utilizing pulse-chase labeling with both tritiated thymidine ([3H]TdR) and bromodeoxyuridine (BUdR). Animals in which a significant decrease in serum albumin and increase in alanine aminotransferase and bilirubin were observed demonstrated the most prominent differentiation of oval cells into hepatocytes. Administration of [3H]TdR or BUdR, either individually or together, to the animals on day 6 after partial hepatectomy resulted in labeling of the majority of the oval cells by days 7 and 9 after PH. A striking difference in the distribution of [3H]TdR- and BUdR-labeled cells in the double labeling experiments was observed on day 11, at which time the number of [3H]TdR-labeled cells increased 6-fold and that of double labeled cells decreased 2-fold. Furthermore, on day 11 the basophilic foci were weakly positive for BUdR and negative at later time points in animals receiving BUdR alone or together with [3H]TdR. In contrast, the cells in basophilic foci as well as transitional cells were positive for [3H]TdR. Cells heavily labeled with both [3H]TdR and BUdR were present at all time points, indicating an inhibition of the proliferative activity. Pulse labeling of rat liver epithelial cells with BUdR in vitro demonstrated that immunodetection of BUdR was lost after three or more cell divisions. We conclude that the BUdR tagging method is particularly sensitive to label dilution during cell cycling and may not be suitable for establishment of a precursor-product relationship between cell lineages when the progenitor population proliferates more than three times.

2-Acetylaminofluorene↗

Expression of transforming growth factor alpha/epidermal growth factor receptor, hepatocyte growth factor/c-met and acidic fibroblast growth factor/fibroblast growth factor receptors during hepatocarcinogenesis.

It is widely believed that abnormal production of polypeptide growth factors, together with other molecular alterations, play an important role in neoplastic development. Transforming growth factor alpha (TGFalpha), hepatocyte growth factor (HGF) and acidic fibroblast growth factor (aFGF) are the three major growth factors that contribute to liver regeneration occurring via both hepatocyte replication and oval cell proliferation. It is not clear, however, whether and to what extent these growth factors are also involved in hepatocarcinogenesis. In the present study, the gene expression of TGFalpha, HGF and aFGF and their corresponding receptors was examined by Northern blotting and in situ hybridization during hepatocarcinogenesis induced by the Solt-Farber protocol. All three growth factor/receptor systems, TGFalpha/epidermal growth factor receptor (EGFR), HGF/c-met and aFGF/FGF receptors (flg and bek) were significantly elevated at early time points when oval cells were proliferating. Their respective expression decreased after 1 month and remained at a low level until the development of liver tumors. In all hepatocellular carcinomas (HCC) examined, the transcripts of TGFalpha and aFGF were highly expressed, while those of HGF were low. With regard to the receptor expression in the tumors, EGFR was present at varying levels, c-met was expressed at higher levels and flg increased significantly, whereas bek remained at low levels. These data suggest that TGFalpha and aFGF are the major growth factors involved in the progression of HCC, and that the signal of aFGF is mainly transduced by the receptor flg in HCC. Furthermore, HCC cells were phenotypically very similar to oval cells with regard to the gene expression of growth factor/receptor systems. These results, along with the finding that all the HCC cells are positive for the oval cell antigen OV6, and that cytokeratin 19 is heavily expressed in both tumor and oval cells, strongly suggest that at least some of the HCC induced by the Solt-Farber protocol may be derived from oval cells.

Animals↗

Regulation of type 1 angiotensin II receptor and its subtype gene expression in kidney by sodium loading and angiotensin II infusion.

OBJECTIVE: To test the hypothesis that a high salt intake decreases gene expression of both type 1 angiotensin receptor subtypes 1A and 1B (AT1A and AT1B) and diminishes AT1 receptor density in the kidney through an angiotensin II (Ang II)-independent mechanism. METHODS: Wistar rats were divided into four groups and fed a normal-sodium diet (0.5%, NSD), NSD + 25 ng/kg per min Ang II infusion, a high-sodium diet (4%, HSD), or HSD + Ang II infusion for 2 weeks. Quantitative reverse transcriptase-polymerase chain reaction was used for analysis of changes in renal AT1A and AT1B messenger RNA (mRNA) levels. Radioligand binding assays were used for measurement of Ang II receptor density. RESULTS: Body weight and mean arterial pressure did not differ among the four groups. Renal AT1A and AT1B mRNA levels were decreased significantly in NSD + Ang II and HSD + Ang II groups compared with those in the NSD group. Renal AT1B mRNA was also decreased significantly in HSD versus NSD. The renal AT1 receptor density was decreased significantly in NSD + Ang II and HSD + Ang II, but was not changed in HSD compared with NSD. CONCLUSION: A high salt intake downregulates the AT1B mRNA expression but does not change the AT1A mRNA expression and AT1 receptor density in the kidney, suggesting that differential regulation occurs in the kidney. Infusion of a nonpressor dose of Ang II, either alone or in conjunction with a high salt intake, downregulates the AT1 receptor and its subtype gene expression in the kidney, suggesting that Ang II regulates these responses through a negative feedback mechanism.

Angiotensin II↗

A comprehensive map of the porcine genome.

We report the highest density genetic linkage map for a livestock species produced to date. Three published maps for Sus scrofa were merged by genotyping virtually every publicly available microsatellite across a single reference population to yield 1042 linked loci, 536 of which are novel assignments, spanning 2286.2 cM (average interval 2.23 cM) in 19 linkage groups (18 autosomal and X chromosomes, n = 19). Linkage groups were constructed de novo and mapped by locus content to avoid propagation of errors in older genotypes. The physical and genetic maps were integrated with 123 informative loci assigned previously by fluorescence in situ hybridization (FISH). Fourteen linkage groups span the entire length of each chromosome. Coverage of chromosomes 11, 12, 15, and 18 will be evaluated as more markers are physically assigned. Marker-deficient regions were identified only on 11q1.7-qter and 14 cen-q1.2. Recombination rates (cM/Mbp) varied between and within chromosomes. Short chromosomal arms recombined at higher rates than long arms, and recombination was more frequent in telomeric regions than in pericentric regions. The high-resolution comprehensive map has the marker density needed to identify quantitative trait loci (QTL), implement marker-assisted selection or introgression and YAC contig construction or chromosomal microdissection.

Animals↗

[Clinical observation of the pathological changes of axial length, corneal curvature and posterior segment wall of eyeball in eyes with high myopia].

PURPOSE: To study the correlation between the characteristics of the morphologic changes in the wall of eyeball with high myopia and the visual function. METHODS: The axial length, corneal curvature, etc., of 280 eyes in 140 cases (the diopter was from -6.25D to approximately -30.00D) were examined and the data were settled statistically. RESULTS: (1) The corrected visual acuity in the patents with high myopia decreased apparently with the increase of diopter. The difference was significant (P < 0.001). (2) The axial length of anteroposterior diameter in 96.1% eyes increased, with which the diopter also increased. (3) 27.1% exophthalmos were forward. (4) There was no significant difference when compared the anterior surface corneal curvature with emmetropic eyes. (5) Posterior scleral staphyloma occurred in 80.7% eyes. (6) Optic nerve atrophy and optic disk atrophic arc spot occurred in 82.3% eyes. (7) The intraocular pressure increases in 5.3% eyes. CONCLUSION: The severe damage to the visual function because of the pathological changes on the wall of eyeball is the main cause that vision can not be corrected in clinics.

Adolescent↗

[Photocoagulation and scleral cryotherapy for Coat's disease].

PURPOSE: To evaluate the results and significance of Coat's disease with argon laser photocoagulation and cryotherapy. METHODS: 22 patients (23 eyes) were treated by argon laser (German Opton Meditek 40 E, 0.2w power, 100-500 um spot, 0.1-0.2 second exposure and grade II reaction) and or scleral cryotherapy (-60 to approximately -80 degrees C, 5 second duration per time, repeating treatment if necessary until pale edema was seen in retina). RESULTS: 18 eyes in all (78.2%) had good results with visual acuity improvement and the lesion of fundus had been seen decreased in varient degrees. The follow-up ranged from 1 to 3 years. CONCLUSION: Photocoagulation and scleral cryotherapy are effective for those patients with Coat's disease. It is very important to treat them promptly so as to prevent the damage of visual function progressively.

Adolescent↗

Expression of leukemia inhibitory factor and its receptor during liver regeneration in the adult rat.

Leukemia inhibitory factor (LIF) is a polyfunctional cytokine that was discovered in the conditioned medium from Buffalo rat liver cells. In the liver, LIF is known to induce acute phase proteins in the hepatocytes. No comprehensive study has yet been performed on the physiological role of this cytokine during liver regeneration. Thus, we studied the level of expression and cellular distribution of transcripts for LIF, its receptor (LIFR), and signal transducing subunit gp13O during rat liver regeneration after both simple partial hepatectomy (PH) and the oval cell activation induced by the combination of 2-acetylaminofluorene and PH. In addition, the expression of an acute phase protein alpha1-acidglycoprotein was examined. The level of transcripts for LIF and its receptor subunits increased and remained elevated during oval cell expansion. In contrast, after PH, the transcripts were induced only transiently, showing a peak 24 hours after the operation. LIF and receptor subunits were expressed in both parenchymal and nonparenchymal fractions in the 2-acetylaminofluorene/PH model, but the level of expression was most pronounced in the nonparenchymal fraction. In situ hybridization clearly revealed a strong expression of LIF, LIFR, and gp13O in the oval cells and demonstrated only a weak expression in the parenchyma. Interestingly, transcripts of alpha1-acidglycoprotein were exclusively detected in the parenchyma. These results suggest a phenotypic difference between oval cells and hepatocytes in their signaling through gp130. We hypothesize that the LIF/LIFR gp130 system may be involved in the expansion and differentiation of the liver stem cell compartment.

Acute-Phase Proteins↗

Regulation of tissue-type plasminogen activator and plasminogen activator inhibitor type-1 in cultured rat Sertoli and Leydig cells.

New data are provided to show that (i) rat Sertoli cells produce two types of plasminogen activators, tissue type (tPA) and urokinase type (uPA), and a plasminogen activator inhibitor type-1 (PAI-1); (ii) both tPA (but not uPA) and PAI-1 secretion in the culture are modified by FSH, forskolin, dbcAMP, GnRH, PMA and growth factors (EGF and FGF), but not by hCG and androstenedione (delta 4); (iii) in vitro secretion of tPA and PA-PAI-1 complexes of Sertoli cells are greatly enhanced by presence of Leydig cells which produce negligible tPA but measurable PAI-1 activity; (iv) combination culture of Sertoli and Leydig cells remarkably increases FSH-induced PAI-1 activity and decreases hCG- and forskolin-induced inhibitor activity as compared with that of two cell types cultured alone. These data suggest that rat Sertoli cells, similar to ovarian granulosa cells, are capable of secreting both tPA and uPA, as well as PAI-1. The interaction of Sertoli cells and Leydig cells is essential for the cells to response to hormone stimulation for tPA and PAI-1 secretion.

Animals↗

Narrowing of the Hailey-Hailey disease gene region on chromosome 3q and identification of one kindred with a deletion in this region.

Hailey-Hailey disease is a cutaneous abnormality transmitted as an autosomal dominant trait in which impaired interkeratinocyte adhesion produces recurrent blisters in characteristic skin sites. We report here a confirmation of the initial mapping of the mutant gene to chromosome 3q in an additional seven kindreds, narrowing of the candidate region to the sequences flanked by D3S1589 and D3S1541, and the finding in one family of a genomic DNA deletion whose centromeric end is located between these two flanking markers.

Centromere↗

Functional analysis of the propeptide of subtilisin E as an intramolecular chaperone for protein folding. Refolding and inhibitory abilities of propeptide mutants.

The amino-terminal propeptide, consisting of 77 amino acid residues, is known to be required as an intramolecular chaperone to guide the folding of mature subtilisin E, a serine protease, into active mature enzyme. Many mutations within the pro-sequence have been shown to abolish the production of active subtilisin E (Kobayashi, T., and Inouye, M. (1992) J. Mol. Biol. 226, 931-933). Here we report characterization, refolding, and inhibitory abilities of six single amino acid substitution mutations (Ile-67-->Val, Ile-48-->Thr, Gly-44-->Asp, Lys-36-->Glu, Ala-30-->Thr, and Pro-15-->Leu) and a nonsense mutation (N59-mer) at the codon for Lys-18. These mutant propeptides were expressed in Escherichia coli using a T7 expression system and were purified to homogeneity. Surprisingly, Lys-36-->Glu, Ala-30-->Thr and Pro-15-->Leu were found to still function as a chaperone for in vitro refolding of denatured subtilisin BPN' with 60, 80, and 54% efficiency compared to the wild-type propeptide, respectively. The Ki values against subtilisin BPN' were 1.6 x 10(-9) M, and 2.1 x 10(-9) M, respectively. The Ki values against subtilisin BPN' were 1.6 x 10(-9) M, and 2.1 x 10(-9) M, respectively, almost identical to the Ki value exhibited by the wild-type propeptide (1.4 x 10(-9) M). In contrast, Ile-67-->Val and Gly-44-->Asp were able to refold denatured subtilisin BPN' with only 18 and13% efficiencies and had Ki values of 10 and 11 x 10(-9) M, respectively. The Ile-48-->Thr mutant propeptide was unable to refold denatured subtilisin BPN' and gave a 100-fold higher Ki (118 x 10(-9) M) than the wild-type propeptide. The N59-mer propeptide extending from Leu-19 to Met-78 was unable to function as a chaperone. Like the wild-type propeptide, none of the mutant propeptides had secondary structures as judged by their circular dichroism spectra. The present results demonstrate that the ability of the propeptide as a chaperone to refold the denatured protein is well correlated with its ability as a competitive inhibitor for the active enzyme. This supports the notion that the secondary and tertiary structures of the propeptide are identical or highly homologous between the renatured propeptide-subtilisin complex and the inhibitory complex formed between the propeptide and the active enzyme.

Amino Acid Sequence↗