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Liping Guo

Publications and source records attributed to Liping Guo.

At least 19 recordsLinked to original sources

Multidimensional GWAS analyses on longitudinal phenotypes reveal candidate genes regulating multi-stage egg production traits in Wannan yellow chicken.

Egg production performance directly determines the economic viability of indigenous chicken breeding. However, the genetic regulation of multi-stage egg production traits remains difficult to characterize due to their complex and dynamic nature. Here, we integrated a multidimensional GWAS framework, including single-trait GWAS, multi-trait GWAS (MTAG), and longitudinal trajectory-based GWAS (TrajGWAS), to identify stage-specific and shared genetic effects underlying egg production traits in Wannan yellow chickens (WNY). Whole-genome sequencing of 354 WNY hens (10× depth) and quality control yielded 14,253,816 SNPs for analysis. Selective sweep analyses comparing red jungle fowl, commercial layers, and WNY identified a genomic region containing IGF1 under significant selection pressure. Single-trait GWAS identified SNPs 4_57990480 (BMPR1B) and 17_370912 (LOC112531479) associated with egg production across three laying stages (21-30, 31-40, and 21-40 weeks). MTAG further identified loci 8_4336468 (FASLG) and 21_654726 (CHD5) with shared effects across the laying period, whereas TrajGWAS revealed longitudinal associations involving PRKG1 and identified dynamic loci associated with clutch traits, including GRID1. For clutch traits, stage-specific loci were detected for average clutch size (ACS) and maximum clutch size (MCS), including SNP 8_8542036 at 21-30 weeks, PROK1 at 31-40 weeks, and CUL5, ALKBH8 across the entire laying period. These results demonstrate that integrating complementary GWAS strategies improves the resolution of genetic architecture underlying egg production traits by capturing trait-specific, shared, and stage-dependent genetic effects. The identified GWAS loci and selective-sweep candidate regions provide insights into the genetic architecture of egg production traits and breed differentiation.

Egg production↗

Sex difference of adenine effects in rats: renal function, bone mineral density and sex steroidogenesis.

Adenine is widely used in clinical field, however, an excess of adenine is harmful. It is known that the feeding of an adenine-rich diet induces renal failure and decreases bone mineral density (BMD) and the serum testosterone level in male rats. However, there is little information about the influence of adenine on female animals. We compared the effects of adenine treatment between male and female rats. Young male and female rats were administered adenine adjusted with distilled water (6 mg/ml, 50 mg/ml and 100 mg/ml) for 8 weeks (3 times/week, 8-16 week old). In male rats, renal failure was induced by 100 mg/ml adenine treatment and renal dysfunction was induced by 50 mg/ml adenine treatment. Bone loss and the reduction of the testosterone level were also caused by both concentrations of adenine. However, the serum testosterone level and BMD in male rats were decreased by 6 mg/ml adenine treatment by which renal dysfunction was not caused. It is suggested that adenine directly affected bone metabolism and sex steroidgenesis in male animals, not through altering renal dysfunction. In female rats, conversely, renal dysfunction was induced only in the 100 mg/ml group, which was somewhat different from the observation in male rats. The serum 17-beta estradiol level and the BMD in female rats were not affected by adenine treatment at all. In conclusion, there is a significant difference of the effects of adenine, which is commonly contained in medicine and general foods, on steroidgenesis and renal function between male and female rats.

Adenine↗

ECRG1, a novel candidate of tumor suppressor gene in the esophageal carcinoma, triggers a senescent program in NIH3T3 cells.

Esophageal cancer-related gene 1 (ECRG1) is a novel tumor-suppressor gene candidate identified from the human esophagus. Previous studies showed that ECRG1 overexpression could inhibit cell growth and induce G1 cell cycle arrest and p15(INK4b) expression by interacting with Miz-1 (Myc-interacting zinc finger protein). Such evidence suggests the alterations in ECRG1 may play an important role in tumorigenesis. To further study the biological function of the ECRG1 gene, we transfected ECRG1 into NIH3T3 cells. Expression of ECRG1 in these cells caused senescence-like changes characterized in terms of altered cell morphology, cell cycle arrest at the G1/S phase, and significantly impaired cell proliferation (P < 0.01). Moreover, NIH3T3 cells transfected with ECRG1 stained positive for SA-beta-gal staining (pH 6.0), which is a specific marker of cellular senescence. We also studied changes in telomerase activity and the related senescence genes, such as p21 and p16. The results indicated that when ECRG1 induced a senescence-like state, telomerase activity was markedly decreased (P < 0.05), and expression of p21 was distinctly increased, whereas no changes were detected in p16 and telomerase-component RNA levels. These findings suggest that ECRG1 may be of importance in murine cell senescence, promoting senescence by regulating expression of p21.

Animals↗

Synthesis and application of amberlite XAD-2 functionalized with dithizone for field preconcentration and separation of trace cadmium in seawater.

A chelating resin coupling Amberlite XAD-2 functionalized with dithizone is synthesized and characterized. Dissolved cadmium is field-preconcentrated using a minicolumn packed with the synthesized resin and determined by flame atomic absorption spectrometry. Five experimental variables are evaluated. The enrichment factor of 416 is obtained for 50 mL of sampling volume, and the detection limit (3 sigma) of the procedure is 6.7 ng L(-1). The precision (RSD) for 11 independent determinations is 1.97%. This method has been successfully applied to the determination of cadmium in natural seawater samples.

Cadmium↗

Identification of a novel polymorphism Arg290Gln of esophageal cancer related gene 1 (ECRG1) and its related risk to esophageal squamous cell carcinoma.

We previously cloned and identified the esophageal cancer related gene 1 (ECRG1), a novel candidate tumor suppressor gene, from human esophageal cells. A single nucleotide polymorphism (Arg290Gln) was identified in the coding region of ECRG1 and might play a role in susceptibility to esophageal squamous cell carcinoma (ESCC). To examine this hypothesis, we analyzed 998 ESCC patients and 1252 controls in a hospital-based, case-control study in a Chinese population for this polymorphism. We observed a statistically significantly increased risk of ESCC associated with the ECRG1 290Arg/Gln and 290Gln/Gln genotypes compared with the 290Arg/Arg [odds ratio (OR)=1.23, 95% confidence interval (CI)=1.03-1.46; P<0.05]. A greater than multiplicative joint effect between the ECRG1 polymorphism and tobacco smoking exposure was also observed (OR=1.95, 95% CI=1.48-2.56; P<0.001). Furthermore, the elevated risk of ESCC associated with the ECRG1 polymorphism was increased consistently with cumulative smoking dose. ORs (95% CI) for 290Arg/Gln and 290Gln/Gln genotypes among non-smokers and smokers who smoked 27 pack-years were 1.03 (0.78-1.35), 1.91 (1.36-2.67) and 2.08 (1.48-2.92), respectively (P trend test<0.001). Taken together, our results indicate that the ECRG1 290Gln variant allele might be a genetic susceptibility factor for developing ESCC, especially in the smoking population.

Adult↗

Interaction of anticancer drug mitoxantrone with DNA analyzed by electrochemical and spectroscopic methods.

Cyclic voltammetry coupled with different spectroscopic (UV/Vis, fluorescence and Raman) techniques were used to study the interaction of mitoxantrone (MTX), an antitumor drug, with calf thymus DNA in acetate buffer solutions (pH 4.5). The interaction of MTX with DNA could result a considerable decrease in the MTX peak currents and a hypochromic and bathochromic shift in the maximum adsorption bands of MTX as well as the emission quenching in the MTX fluorescence spectra. The variations in the electrochemical and spectral characteristics of MTX indicated MTX bind to DNA by an intercalative mode. This conclusion was reinforced by Raman data. The merely particular vibrations were affected in Raman, suggesting that only a portion of the chromophore of MTX was involved in the intercalation into DNA duplex. These studies are valuable for a better understanding the detailed mode of MTX-DNA interaction, which should be important in deeper insight into the therapeutic efficacy of MTX and design of new DNA targeted drug.

Animals↗

The voltage-gated potassium channel Kv1.3 is highly expressed on inflammatory infiltrates in multiple sclerosis brain.

Multiple Sclerosis (MS) is characterized by central nervous system perivenular and parenchymal mononuclear cell infiltrates consisting of activated T cells and macrophages. We recently demonstrated that elevated expression of the voltage-gated potassium channel, Kv1.3, is a functional marker of activated effector memory T (T(EM)) cells in experimental allergic encephalomyelitis and in myelin-specific T cells derived from the peripheral blood of patients with MS. Herein, we show that Kv1.3 is highly expressed in postmortem MS brain inflammatory infiltrates. The expression pattern revealed not only Kv1.3(+) T cells in the perivenular infiltrate but also high expression in the parenchyma of demyelinated MS lesions and both normal appearing gray and white matter. These cells were uniformly chemokine receptor 7 negative (CCR7(-)), consistent with an effector memory phenotype. Using double-labeling immunohistochemistry and confocal microscopy, we demonstrated colocalization of Kv1.3 with CD3, CD4, CD8, and some CD68 cells. The expression patterns mirrored in vitro experiments showing polarization of Kv1.3 to the immunological synapse. Kv1.3 was expressed in low to moderate levels on CCR7(+) central memory T cells from cerebrospinal fluid, but, when these cells were stimulated in vitro, they rapidly became Kv1.3(high)/CCR7(-) T(EM), suggesting that a subset of cerebrospinal fluid cells existed in a primed state ready to become T(EM). These studies provide further rationale for the use of specific Kv1.3 antagonists in MS.

Adult↗

Monoclonal antibodies to esophageal cancer-related gene2 protein.

Esophageal cancer related gene2 (ECRG2) acts as a bi-functional gene associated with regulation of cell growth and death, and plays an important role in carcinogenesis of esophageal cancer. RT-PCR and Northern blot data showed that ECRG2 was expressed in normal esophagus, liver, colon, and lung tissues, but lost or greatly down-regulated in the adjacent and cancerous tissues, especially in esophageal cancer. However, studies of protein have been hampered by the lack of a sensitive and specific antibody. Here, we generated anti-ECRG2 monoclonal antibodies (MAbs) by using c-terminal of ECRG2 peptide as immunogen. Antibodies 8C9c53, 5E3c9, and 3C5c76, are suitable for detecting the ECRG2 on ELISA and Western blot assays, and 1E4c2 and 4B6c41 are suitable for immunofluorescence microscopy. The study also provides novel data about ECRG2 protein expression in the cytoplasm and the possibility of post-translation modification in mammalian cells. Based on these findings, it may be expected that anti-ECRG2 monoclonal antibodies will be valuable tools for research and diagnosis.

Animals↗

Effects of the Chinese herbal medicine based on Hachimi-jio-gan in male rats with the adenine-induced osteopenia.

In the adenine-induced renal failure rats, reversibility of renal failure and recovery of bone mineral density (BMD) by discontinuation of adenine-rich diet were reported. We think that the effect to bone metabolism with medication may be able to be evaluated as reinforcement of the BMD recovery. We have so far investigated the Chinese herbal medicine based on Hachimi-jio-gan (HJG) which are more effective than HJG alone. In this study, we investigated the effects of our Chinese herbal prescription on BMD in the adenine-treated rats compared to that of vitamin D3 treatment. Young male rats were administrated 100 mg/ml adenine for 8 weeks, and they showed renal failure and bone loss. The adenine-treated rats were divided into the following 3 groups, that is, the group experienced no treatment (control), the group given our Chinese herbal medicine (HAO), and the group given vitamin D3 (VD3) medication. It is likely that VD3 medication was less effective for increase of the femoral BMD than increase of the spinal BMD. In contrast, HAO was effective for increase of the femoral BMD. The VD3 group showed low deoxypyridinoline (Dpd: bone resorption maker) as compared to the control group. However, the HAO group showed same or slightly high Dpd. It is suggested that VD3 may increase BMD by reduction of bone resorption, while HAO may show effect on BMD by activating bone metabolism. It is indicated that HAO may become a curative medicine for bone loss because of the different target site from vitamin D3.

Adenine↗

Interaction of echinomycin with guanine: electrochemistry and spectroscopy studies.

The interaction of antitumor antibiotic, echinomycin (Echi) with guanine (Gua) was thoroughly investigated by adsorptive transfer stripping cyclic voltammetry, ultraviolet and visible adsorption spectra (UV/Vis) and Fourier-transform infrared spectroscopy (FTIR). Electrochemistry provided a simple tool for verifying the occurrence of interaction between Echi and Gua. Echi could be accumulated from the solution and give well-defined electrochemical signals in 0.1 M phosphate buffer solution (pH 7.0) only when Gua was present on the surface of the electrochemically pretreated glass carbon electrode (GCE), suggesting a strong binding of Echi to Gua. All the acquired spectral data showed that a new adduct between Echi and Gua was formed, and two pairs of adjacent intermolecular hydrogen bonds between the Ala backbone atoms in Echi and Gua (Ala-NH to Gua-N3 and Gua-NH2 to Ala-CO) played a dominating role in the interaction. Electrochemistry coupled with spectroscopy techniques could provide a relatively easy way to obtain useful insights into the molecular mechanism of drug-DNA interactions, which should be important in the development of new anticancer drugs with specific base recognition.

Adsorption↗

Overexpression of Aurora-A contributes to malignant development of human esophageal squamous cell carcinoma.

PURPOSE: Aurora-A/STK15/BTAK, a centrosome-associated oncogenic protein, is implicated in the control of mitosis. Overexpression of Aurora-A has been shown to result in chromosomal aberration and genomic instability. Multiple lines of evidence indicate that Aurora-A induces cell malignant transformation. In the current study, we are interested in investigating the expression of Aurora-A in human esophageal squamous cell carcinoma (ESCC) and characterizing the association of Aurora-A with ESCCmalignant progression. EXPERIMENTAL DESIGN: Aurora-A protein expression was examined in 84 ESCC tissues and 81 paired normal adjacent tissues by either immunohistochemistry or Western blot analysis. In addition, a gene-knockdown small interfering RNA technique was used in ESCC cells to investigate whether Aurora-A contributes to the ability of a tumor to grow invasively. RESULTS: The amount of Aurora-A protein in ESCC was considerably higher than that in normal adjacent tissues. Overexpression of Aurora-A was observed in 57 of 84 (67.5%) ESCC samples. In contrast, <2% of normal adjacent tissue displayed high expression of Aurora-A. Interestingly, overexpression of Aurora-A seemed to correlate with the invasive malignancy of ESCC. Disruption of endogenous Aurora-A using small interfering RNA technique substantially suppressed cell migrating ability. CONCLUSION: The findings presented in this report show that Aurora-A expression is elevated in human esophageal squamous cell carcinoma and is possibly associated with tumor invasion, indicating that overexpression of Aurora-A may contribute to ESCC occurrence and progression.

Aurora Kinase A↗

Induction of G1 cell cycle arrest and P15INK4b expression by ECRG1 through interaction with Miz-1.

ECRG1 is a novel candidate of tumor suppressor gene identified from human esophagus. To study the biological role of ECRG1 gene, we performed a GAL4-based yeast two-hybrid screen of a human fetal liver cDNA library. Using the ECRG1 cDNA as bait, we identified two putative clones as associated proteins, Miz-1 and FLNA (Filamin A). The interaction of ECRG1 and Miz-1 was confirmed by glutathione-S-transferase (GST)-pull-down assays in vitro and co-immunoprecipitation experiments in vivo. ECRG1 was co-localized with Miz-1 in nucleus, as shown by confocal microscopy. Transfection of ECRG1 gene into the esophageal cancer (EC) cells inhibited cell proliferation and induced G1 phase arrest of cell cycle. In the co-transfection of ECRG1 and Miz-1 assays, we found inhibition of cell proliferation and G1/S phase in EC cells, but the levels of cell proliferation inhibition and G1/S phase arrest were more strongly compared with the transfection of ECRG1 or Miz-1 alone. In addition, the interaction of ECRG1 and Miz-1 could induce expression of P15(INK4b) gene in esophageal cancer 9706 (EC9706) cells. However, the transfection of ECRG1 or Miz-1 alone was not revealed the expressions of P15(INK4b) gene. When antisense ECRG1 interdicted expression of endogenous ECRG1 in Balb/c-3T3 cells, Transfection of Miz-1 couldn't induce P15(INK4b) expression. The results provide evidences that ECRG1 and Miz-1 in EC cells may be acting as a co-functional protein associated with regulation of cell cycle and induction of P15(INK4b) expression. It suggests that ECRG1 may inhibit tumor cell growth by affecting cell cycle, and that expression of P15(INK4b) may be likely to enhance G1 cell cycle arrest during the interaction of ECRG1 and Miz-1. The physical interaction of ECRG1 and Miz-1 may play an important role in carcinogenesis of EC.

Animals↗

The pathology of Rasmussen syndrome: stages of cortical involvement and neuropathological studies in 45 hemispherectomies.

PURPOSE: Rasmussen syndrome (RS) is a rare form of epilepsy characterized by progressive destruction of a single hemisphere. To characterize the profile of cortical involvement in RS, we studied the pathological changes in the cerebral cortex of 45 hemispherectomies performed at Johns Hopkins Hospital between 1985 and 2002. METHODS: The patterns of pathologic changes and stages of cortical abnormalities were studied by histology and immunocytochemistry methods. The burden of pathology (BP) was quantified in all brain regions of each of the 45 hemispheres. RESULTS: Our study demonstrated significant heterogeneity in the stages of cortical pathology and the multifocal nature of the disease. These stages varied from early inflammation defined by infiltration of T lymphocytes and neuroglial reactions, to more severe stages with extensive neuronal cell death and cavitation of the cerebral cortex. A greater BP was significantly associated with an early age at onset (p = 0.01) and longer duration of disease (p < or = 0.001). The BP was similar in all brain regions except the occipital lobe, where the BP was significantly lower (p = 0.032). CONCLUSIONS: The multifocal distribution of pathologic changes, as well as the heterogeneity in the stages of cortical damage in each patient, is consistent with an ongoing and progressive immune-mediated process of neuronal damage that involves neuroglial and lymphocytic responses, resembling other autoimmune CNS disorders such as multiple sclerosis.

Age of Onset↗

Narp and NP1 form heterocomplexes that function in developmental and activity-dependent synaptic plasticity.

Narp is a neuronal immediate early gene that plays a role in excitatory synaptogenesis. Here, we report that native Narp in brain is part of a pentraxin complex that includes NP1. These proteins are covalently linked by disulfide bonds into highly organized complexes, and their relative ratio in the complex is dynamically dependent upon the neuron's activity history and developmental stage. Complex formation is dependent on their distinct N-terminal coiled-coil domains, while their closely homologous C-terminal pentraxin domains mediate association with AMPA-type glutamate receptors. Narp is substantially more effective in assays of cell surface cluster formation, coclustering of AMPA receptors, and excitatory synaptogenesis, yet their combined expression results in supraadditive effects. These studies support a model in which Narp can regulate the latent synaptogenic activity of NP1 by forming mixed pentraxin assemblies. This mechanism appears to contribute to both activity-independent and activity-dependent excitatory synaptogenesis.

Amino Acid Sequence↗

ECRG2, a novel candidate of tumor suppressor gene in the esophageal carcinoma, interacts directly with metallothionein 2A and links to apoptosis.

Esophageal cancer related gene 2 (ECRG2) is a novel candidate of the tumor suppressor gene identified from human esophagus. To study the biological role of the ECRG2 gene, we performed a GAL4-based yeast two-hybrid screening of a human fetal liver cDNA library. Using the ECRG2 cDNA as bait, we identified nine putative clones as associated proteins. The interaction of ECRG2 and metallothionein 2A (MT2A) was confirmed by glutathione S-transferase pull-down assays in vitro and co-immunoprecipitation experiments in vivo. ECRG2 co-localized with MT2A mostly to nuclei and slightly to cytoplasm, as shown by confocal microscopy. Transfection of ECRG2 gene inhibited cell proliferation and induced apoptosis in esophageal cancer cells. In the co-transfection of ECRG2 and MT2A assays, cell proliferation was inhibited and apoptosis was slightly induced compared with control groups. When we used antisense MT2A to interdict the effect of MT2A, the inhibition of cell proliferation and induction of apoptosis were significantly enhanced. When we used antisense ECRG2 to interdict the effect of ECRG2 in the group of Bel7402 cells co-transfected with ECRG2 and MT2A, the inhibition of cell proliferation and induction of apoptosis disappeared. The results provide evidence for ECRG2 in esophageal cancer cells acting as a bifunctional protein associated with the regulation of cell proliferation and induction of apoptosis. ECRG2 might reduce the function of MT2A on the regulation of cell proliferation and induction of apoptosis. The physical interaction of ECRG2 and MT2A may play an important role in the carcinogenesis of esophageal cancer.

Apoptosis↗

[A study on viral infections in patients with chronic obstructive pulmonary disease].

OBJECTIVE: To study the relation between viral infection and chronic obstructive pulmonary disease (COPD), and the role of viral infection in the pathogenesis of COPD. METHODS: (1)Serum samples from 91 patients with acute exacerbation of COPD (Group A), 42 patients with stable COPD (Group B) and 25 healthy subjects (Group C) were tested for specific IgM and IgG for respiratory syncytial virus (RSV) herpes simplex virus type 1 (HSV-1) parainfluenza virus(PIV),adenovirus (ADV) and cytomegalovirus (CMV) with an indirect enzyme linked immunosorbent assay (ELISA). (2) T lymphocyte subsets (CD(3) CD(4) and CD(8)) were studied by flow cytometry in patients with IgM positivity (Group D n = 28) and patients in Group C. RESULTS: (1) The positive rates of IgM were significantly different (P < 0.001) in group A (12%, 8%, 6%, 2%, 3% for RSV HSV-1 PIV ADV and CMV) as compared to group B (0%, 0%, 0%, 0%, 0%) and group C (0%, 0%, 0%, 0%, 0%). There was no significant difference in the positive rate of IgG between group A (47%, 41%, 12%, 14%, 10%) and group B (43%, 33%, 12%, 7%, 7%, P > 0.05), but the positive rates of IgG in group A and group B were significantly different (P < 0.01) as compared to group C (0%, 8%, 0%, 0%, 0%) (2)In group D the expression of CD(4) and CD(4)/CD(8) were significantly lower, the expression of CD(8) was significantly higher (P < 0.01) than those in group C but the expression of CD(3) was not significantly different (P > 0.05). CONCLUSION: Viral infection was common in acute exacerbation of COPD, and related to the pathogenic mechanism of COPD.

Adult↗