Search PubMed⌕ Search

Biomedical subjects

K Yang

Publications and source records attributed to K Yang.

At least 181 records · Page 10Linked to original sources

Epithelial cell hyperproliferation induced in the exocrine pancreas of mice by a western-style diet.

BACKGROUND: Pancreatic cancer is a common cause of mortality in the United States, with an estimated 27,800 people dying of the disease in this country in 1996. Epidemiologic studies have suggested that Western diets containing high fat, high protein, and low calcium contents are associated with increased incidence of pancreatic cancer. PURPOSE: We investigated whether a Western-style diet containing increased fat content and decreased calcium and vitamin D contents would induce epithelial cell hyperproliferation (excess cell duplication) or hyperplasia (excess cell accumulation) in the pancreas, as was previously demonstrated in the colon and mammary gland. METHODS: C57BL/6J mice at 4 weeks of age were randomly assigned to one of two groups of 14 mice each. One group received the control diet ad libitum, and the other group was given the Western-style diet ad libitum. After 6, 9, and 15 weeks on the diet, four or five mice per group were infused with 5-bromo-2'-deoxyuridine (BrdU) for 72 hours by use of subcutaneously implanted Alzet osmotic pumps. The mice were then killed, and the pancreas of each mouse was removed. In the exocrine pancreas with ductal secretion, the duct system (including interlobular and intralobular ducts and centroacinar [i.e., centroductular] cells) and acini were measured both histopathologically and immunohistochemically (BrdU) and were analyzed without knowledge of the source of the specimens. Two-way analysis of variance was carried out. All P values were generated from two-sided tests for statistical significance. RESULTS: The number of pancreatic ducts (interlobular, intralobular, and centro-acinar-cancer-prone regions in certain rodent models and in humans) and acini per mouse in the Western-style diet group was similar to that in the control diet group during the entire feeding period (P = .76, .32, .93, and .42, respectively). Statistically significant higher BrdU-labeling indices of the ductal interlobular and intralobular epithelial cells were seen in mice fed the Western-style diet than in mice fed the control diet during the entire observation period (P = .014 and .016, respectively). There was no statistically significant difference (P = .098) between both diet groups in the BrdU-labeling indices of the centroacinar epithelial cells. CONCLUSIONS: A Western-style diet induced pancreatic epithelial cell hyperproliferation in mice, further suggesting that increased fat content and decreased calcium and vitamin D contribute to the development of pancreatic neoplasms.

Animals↗

Requirement of rigid-body motion of transmembrane helices for light activation of rhodopsin.

Conformational changes are thought to underlie the activation of heterotrimeric GTP-binding protein (G protein)-coupled receptors. Such changes in rhodopsin were explored by construction of double cysteine mutants, each containing one cysteine at the cytoplasmic end of helix C and one cysteine at various positions in the cytoplasmic end of helix F. Magnetic dipolar interactions between spin labels attached to these residues revealed their proximity, and changes in their interaction upon rhodopsin light activation suggested a rigid body movement of helices relative to one another. Disulfide cross-linking of the helices prevented activation of transducin, which suggests the importance of this movement for activation of rhodopsin.

Amino Acid Sequence↗

Apoptosis, cell replication, and Western-style diet-induced tumorigenesis in mouse colon.

In this study, feeding Western-style diets (WDs) to mice for a duration of two years without any chemical carcinogen led to the development of gross colonic lesions that were histologically classified as dysplastic crypts and focal hyperplasias with or without atypical nuclei. To better understand early biological events contributing to the development of colonic neoplasia, grossly normal colonic mucosa was investigated; mitotic and apoptotic colonic epithelial cells, atypical mitosis, and atypical nuclei were studied. A significant and transient increase of mitotic activity in the basal and intermediate portions of the colonic crypts was seen in young mice after feeding them the WDs. This was accompanied by diffuse activation of apoptosis of the colonic epithelial cells. In the middle of the rodents' life span, after administration of both the WDs and control diet, the rodents developed a marked depletion of apoptotic epithelial cells in the mid-region of the colonic crypts; this was followed by the expansion of an epithelial cell population containing atypical nuclei, and the emergence of the gross lesions noted above. With this sequence of events, prolonged feeding of WDs to mice produced single-crypt dysplastic lesions and focal hyperplasias indicative of tumorigenesis.

Animals↗

Cytokeratin, lectin, and acidic mucin modulation in differentiating colonic epithelial cells of mice after feeding Western-style diets.

Several studies have recently reported the development of colonic epithelial cell hyperproliferation in rodents following the ingestion of Western-style diets. In this study, additional measurements related to differentiation and maturation of the colonic epithelial cells were made after feeding this type of diet. Two Western-style diets high in fat and phosphate content and low in calcium and vitamin D were fed to C57BL/6J mice for 12, 24, and 52 weeks. Diet A contained American Blend fat as a source of lipids, diet B contained corn oil, and control diet C was a standard AIN-76A semisynthetic diet which is lower in fat content and higher in calcium and vitamin D. Colonic epithelial cells were studied for three biomarkers: cytokeratin catalogue no. 18 (clone LE64) expression, soybean agglutinin carbohydrate lectin binding, and acidic mucins including sialo- and sulfomucins. Feeding of diets A and B revealed that colonic epithelial cells had increased expression of cytokeratin catalogue 18 and SBA carbohydrate lectin binding compared to controls (P = 0.0001 for diet A versus C and diet B versus C). Significant differences were found between diets B and C (P = 0.0001) and diets A and C (P = 0.0001) in total acidic mucins and in the ratio of sialomucin:sulfomucin (P = 0.0001). These findings demonstrate that both functional and structural modifications occurred in colonic epithelial cells under these dietary conditions, and further defined this rodent model for preclinical evaluation of nutritional and chemopreventive interventions.

Animals↗

Structural and physiologic characterization of the mid-region secretory species of parathyroid hormone-related protein.

Parathyroid hormone-related protein (PTHrP) is initially translated as a preprohormone which is posttranslationally processed to yield a family of mature secretory forms. Most attention has focused on the amino-terminal portion of the molecule which is homologous to parathyroid hormone. It is clear, however, that a mid-region species of PTHrP is posttranslationally cleaved from the highly conserved mid-region of PTHrP, and that the amino terminus of this peptide is Ala38. The purposes of the current study were three: 1) to confirm that Arg37 immediately preceding Ala38 serves as a posttranslational processing site in the PTHrP precursor, 2) to determine the carboxyl terminus of the mid-region secretory species of PTHrP, and 3) to synthesize this authentic mid-region secretory form of PTHrP and determine whether it is biologically active. The results indicate that: 1) Arg37 is indeed a processing site in the PTHrP precursor; 2) three distinct mid-region PTHrP species are generated by posttranslational processing, PTHrP(38-94)amide, PTHrP(38-95), and most likely, PTHrP(38-101); and 3) synthetic mid-region PTHrP(38-94)amide is active in four different biological systems. These studies confirm the finding that PTHrP is a prohormone. More importantly, they define a novel, biologically active highly conserved mid-region secretory form of PTHrP.

Amino Acid Sequence↗

Structure and function in rhodopsin. Single cysteine substitution mutants in the cytoplasmic interhelical E-F loop region show position-specific effects in transducin activation.

The cytoplasmic interhelical E-F loop in rhodopsin is a part of the region that interacts with the G-protein transducin and rhodopsin kinase during signal transduction. In extending the previous work on systematic single cysteine substitutions of the amino acids in the cytoplasmic C-D loop, we have now replaced, one at a time, the amino acids Q225-I256 in the E-F loop region by cysteines. All the mutants formed the characteristic rhodopsin chromophore with 11-cis-retinal. While most of the mutants bleached normally, L226C, showed abnormal bleaching behavior. A study of the alkylation of the mutants by N-ethylmaleimide in dark showed low reactivity by some mutants, especially L226C. The rates of transducin activation (GT(alpha)-GTP gamma S complex formation) were measured for all the mutants. While these were normal for the bulk of the mutants, some (L226C, T229C, V230C, A233C, A234C, T242C, T243C, and Q244C) showed strikingly reduced transducin activation. The results suggest a specific structure in the E-F loop that interacts with transducin.

Amino Acid Sequence↗

Structural features and light-dependent changes in the cytoplasmic interhelical E-F loop region of rhodopsin: a site-directed spin-labeling study.

Thirty consecutive single cysteine substitution mutants in the amino acids Q225-I256 of bovine rhodopsin have been prepared and modified with a sulfhydryl specific nitroxide reagent. This sequence includes the E-F interhelical loop, a transducin interaction site. The accessibilities of the attached nitroxides to collisions with hydrophilic and hydrophobic paramagnetic probes in solution were determined, and the electron paramagnetic resonance spectra analyzed in terms of side chain mobility, both in the dark and after photoactivation. Accessibility cata shows that the rhodopsin polypeptide chain crosses an aqueous/ hydrophobic boundary in the range V227-K231 and again in the range V250-V254. In the hydrophobic segments, both the accessibility and mobility data are consistent with helical structures. In the regions of the sequence located within the aqueous phase, periodic variation in both accessibility and mobility of the spin-labeled side chains indicates that the E-F interhelical loop is largely alpha-helical, being formed by regular extensions of the E and F helices by about 1.5 and 3 turns, respectively. Judging from nitroxide mobilities, the putative extension of helix E in the aqueous phase is more dynamic than that of helix F. Changes in the electron paramagnetic resonance characteristics of the spin-labeled rhodopsin upon photoactivation indicate that chromophore isomerization results in patterns of structural changes that can be interpreted in terms of movements of helices that extend into the aqueous loop regions.

Amino Acid Sequence↗

Novel receptor mechanisms for heroin and morphine-6 beta-glucuronide analgesia.

The rapid metabolism of heroin to 6-acetylmorphine and its slower conversion to morphine has led many to believe that heroin and morphine act through the same receptors and that the differences between them are due to their pharmacokinetics. We now present evidence strongly implying that heroin and two potent mu drugs, fentanyl and etonitazine, act through a unique receptor mechanism similar to morphine-6 beta-glucuronide which is readily distinguished from morphine. Heroin, 6-acetylmorphine and morphine-6 beta-glucuronide show no analgesic cross tolerance to morphine in a daily administration paradigm, implying distinct receptors. Strains also reveal analgesic differences among the drugs. CXBK mice, which are insensitive to morphine, retain their analgesic sensitivity to heroin, 6-acetylmorphine, morphine-6 beta-glucuronide, fentanyl and etonitazine. Antisense mapping of the mu opioid receptor MOR-1 reveals that oligodeoxynucleotide probes against exon 2, which are inactive against morphine analgesia, block morphine-6 beta-glucuronide, heroin, fentanyl and etonitazine analgesia. Finally, an antisense probe targeting Gi alpha 1 blocks both heroin and morphine-6 beta-glucuronide, but not morphine, analgesia. These results indicate that heroin, 6-acetylmorphine, fentanyl and etonitazine all can produce analgesia through a novel mu analgesic system which is similar to that activated by morphine-6 beta-glucuronide.

Analgesics↗

Aromatic DNA adducts in lymphocytes of humans working at high and low traffic density areas.

Aromatic DNA adduct levels were determined by the 32P-postlabelling assay in lymphocytes isolated from newspaper vendors working at urban high traffic areas (n = 31) and suburban low traffic areas (n = 22) in Milan, Italy. The DNA adduct levels ranged from 0.7 to 6.7/10(8) nucleotides, while most of them were between 1.0 and 3.0/10(8) nucleotides. No difference was found between the DNA adduct levels of the high-exposed group (2.2/10(8) and the low-exposed group (2.2/10(8). The heavy smokers (n = 8) had 23% higher DNA adduct level (2.7/10(8)) than the non-smokers (n = 37, 2.2/10(8) (P = 0.27), but no correlation was found between the adduct level and the number of cigarettes/day. Analysis of variance of the DNA adduct levels among the 14 pairs of individuals working at the same news-stands revealed little effect of the environmental air exposure on the DNA adduct level.

DNA Adducts↗

Ovine 11 beta-hydroxysteroid dehydrogenase type 2 gene predicts a protein distinct from that deduced by the cloned kidney cDNA at the C-terminus.

The gene encoding ovine 11 beta-hydroxysteroid dehydrogenase type 2 (11 beta-HSD2) was cloned and characterized. This gene consists of five exons and is greater than 4 kb in length. It contains an open reading frame of 1215 bp, which encodes a protein of 404 amino acids with a predicted MW of 44 kDa. The deduced ovine 11 beta-HSD2 protein displays over 78% sequence identity to those of the human, rabbit, rat, and mouse. However, this differs from the published sequence of ovine kidney 11 beta-HSD2 cDNA which predicts a protein of 427 amino acids. Sequence alignment indicated that this discrepancy is attributed to two single nucleotide omissions in the published cDNA sequence which resulted in a shift in the open reading frame at the codon for residue 358. Therefore, the present results have provided conclusive evidence that the primary structure of 11 beta-HSD2 protein is well conserved between the sheep and the other four mammals. Moreover, Northern blot analysis of total RNA samples from 15 peripheral tissues and seven brain regions of the mature fetal sheep revealed that the expression of 11 beta-HSD2 gene is highly tissue-specific in that it is only expressed in the kidney and adrenal gland, and at a much lower abundance in the testis, colon and placenta. The cloning of the sheep 11 beta-HSD2 gene should facilitate future studies on the regulation of 11 beta-HSD2 gene expression during fetal development in a mammalian model.

11-beta-Hydroxysteroid Dehydrogenases↗

Increased expression of brain-derived neurotrophic factor but not neurotrophin-3 mRNA in rat brain after cortical impact injury.

Levels of brain-derived neurotrophic factor (BDNF) and neurotrophin-3 (NT3) mRNA expression were measured in a rodent model of traumatic brain injury (TBI) following unilateral injury to the cerebral cortex. To obtain reliable data on the co-expression of neurotrophin genes, adjacent coronal sections from the same rat brains were hybridized in situ with BDNF and NT3 cRNA probes. BDNF mRNA increased at 1,3, and 5 hr after unilateral cortical injury in the cortex ipsilateral to the injury site and bilaterally in the dorsal hippocampus. NT3 mRNA did not change significantly following injury. Our results suggest that TBI produces rapid increases in BDNF mRNA expression in rat brain without changes in NT3 mRNA expression, a finding which differs from studies of ischemia and seizures. It is possible that increased levels of BDNF mRNA rather than NT3 are important components of pathophysiological responses to TBI.

Analysis of Variance↗

Liposome-mediated NGF gene transfection increases ChAT activity in CNS cell cultures.

Liposome-mediated NGF transfection has been shown to increase the expression and secretion of NGF in primary rat septo-hippocampal cell cultures. Here we report that along with increased NGF expression, the activity of choline acetyltransferase, the synthetic enzyme for acetylcholine, is increased by 18% within 2 days, by 41% within 4 days and by 32% within 8 days after NGF gene transfection in septo-hippocampal cell cultures. This result further confirms that biologically active NGF is functionally expressed in septo-hippocampal cells when transfected with cDNA for NGF completed with liposomes.

Animals↗

Liposome-mediated BDNF cDNA transfer in intact and injured rat brain.

We examined the temporal profile of the expression of brain-derived neurotrophic factor (BDNF) cDNA containing a viral promotor following the injection of liposome cDNA complexes into the intact and traumatically injured rat brain. In situ hybridization and PCR confirmed the presence of injected BDNF cDNA for at least 6 days after injection. A similar profile of BDNF cDNA was observed when it was injected following cortical impact injury. mRNA was also localized around the injection areas. These results suggest that liposome-mediated delivery of neurotrophin cDNA may be a practical gene transfer method for treating traumatic brain injury.

Animals↗