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71.
Shiyu Ma Jin Ma Xiaoyi Mai Xujie Zhao Liheng Guo Minzhou Zhang 《Journal of cellular and molecular medicine》2019,23(8):5454-5465
Danqi soft capsule (DQ) is a traditional Chinese medicine containing Salvia miltiorrhiza and Panax notoginseng; it is safe and efficient in treating ischaemic heart diseases. The purpose of the present study was to assess whether DQ could prevent infarct border zone (IBZ) remodelling and decrease ventricular arrhythmias occurrence in post‐myocardial infarction (MI) stage. MI was induced by a ligation of the left anterior descending coronary artery. DQ was administered to the post‐MI rats started from 1 week after MI surgery for 4 weeks. The results showed that DQ treatment significantly attenuated tachyarrhythmia induction rates and arrhythmia score in post‐MI rats. In echocardiography, DQ improved left ventricular (LV) systolic and diastolic function. Histological assessment revealed that DQ significantly reduced fibrotic areas and myocyte areas, and increased connexin (Cx) 43 positive areas in IBZ. Western blot revealed that DQ treatment significantly reduced the protein expression levels of type I and III collagens, α‐smooth muscle actin (α‐SMA), transforming growth factor‐β1 (TGF‐β1) and Smad3 phosphorylation, while increasing Cx43 amounts. Overall, these findings mainly indicated that DQ intervention regulates interstitial fibrosis, Cx43 expression and myocyte hypertrophy by TGF‐β1/Smad3 pathway in IBZ, inhibits LV remodelling and reduces vulnerability to tachyarrhythmias after MI. This study presents a proof of concept for novel antiarrhythmic strategies in preventing IBZ remodelling, modifying the healed arrhythmogenic substrate and thus reducing susceptibility to ventricular arrhythmias in the late post‐MI period. 相似文献
72.
Paul M. Sanders Anhthu Q. Bui Koen Weterings K. N. McIntire Yung-Chao Hsu Pei Yun Lee Mai Thy Truong T. P. Beals R. B. Goldberg 《Sexual plant reproduction》1999,11(6):297-322
We identified Arabidopsis thaliana sterility mutants by screening T-DNA and EMS-mutagenized lines and characterized several male-sterile mutants with defects
specific for different anther processes. Approximately 44 and 855 sterile mutants were uncovered from the T-DNA and EMS screens,
respectively. Several mutants were studied in detail with defects that included the establishment of anther morphology, microspore
production, pollen differentiation, and anther dehiscence. Both non-dehiscencing and late-dehiscencing mutants were identified.
In addition, pollenless mutants were observed with either apparent meiotic defects and/or abnormalities in cell layers surrounding
the locules. Two mutant alleles were identified for the POLLENLESS3 locus which have defects in functional microspore production that lead to the degeneration of cells within the anther locules.
pollenless3–1 contains a T-DNA insertion that co-segregates with the mutant phenotype and pollenless3–2 has a large deletion in the POLLENLESS3 gene. The POLLENLESS3 gene has no known counterparts in the GenBank, but encodes a protein containing putative nuclear localization and protein-protein
interaction motifs. The POLLENLESS3 gene was shown recently to be the same as MS5, a previously described Arabidopsis
thaliana male-sterility mutant. Three genes were identified in the POLLENLESS3 genomic region: GENEY, POLLENLESS3, and β9-TUBULIN. The segment of the Arabidopsis
thaliana genome containing the POLLENLESS3 and β9-TUBULIN genes is duplicated and present on a different chromosome. Analysis of the POLLENLESS3 expression pattern determined that the 1.3-kb POLLENLESS3 mRNA is localized specifically within meiotic cells in the anther
locules and that POLLENLESS3 mRNA is present only during late meiosis.
Received: 15 October 1998 / Revision accepted: 19 November 1998 相似文献
73.
Daniel C. Teasley Shankar Parajuli Mai Nguyen Hayley R. Moore Elise Alspach Ying Jie Lock Yuchi Honaker Abhishek Saharia Helen Piwnica-Worms Sheila A. Stewart 《The Journal of biological chemistry》2015,290(24):15133-15145
The existence of redundant replication and repair systems that ensure genome stability underscores the importance of faithful DNA replication. Nowhere is this complexity more evident than in challenging DNA templates, including highly repetitive or transcribed sequences. Here, we demonstrate that flap endonuclease 1 (FEN1), a canonical lagging strand DNA replication protein, is required for normal, complete leading strand replication at telomeres. We find that the loss of FEN1 nuclease activity, but not DNA repair activities, results in leading strand-specific telomere fragility. Furthermore, we show that FEN1 depletion-induced telomere fragility is increased by RNA polymerase II inhibition and is rescued by ectopic RNase H1 expression. These data suggest that FEN1 limits leading strand-specific telomere fragility by processing RNA:DNA hybrid/flap intermediates that arise from co-directional collisions occurring between the replisome and RNA polymerase. Our data reveal the first molecular mechanism for leading strand-specific telomere fragility and the first known role for FEN1 in leading strand DNA replication. Because FEN1 mutations have been identified in human cancers, our findings raise the possibility that unresolved RNA:DNA hybrid structures contribute to the genomic instability associated with cancer. 相似文献
74.
Giang Ngan Khong Pratap Kumar Pati Frédérique Richaud Boris Parizot Przemyslaw Bidzinski Chung Duc Mai Martine Bès Isabelle Bourrié Donaldo Meynard Tom Beeckman Michael Gomez Selvaraj Ishitani Manabu Anna-Maria Genga Christophe Brugidou Vinh Nang Do Emmanuel Guiderdoni Jean-Benoit Morel Pascal Gantet 《Plant physiology》2015,169(4):2935-2949
75.
76.
Chronic Helicobacter pylori Infection Does Not Significantly Alter the Microbiota of the Murine Stomach 总被引:1,自引:0,他引:1 下载免费PDF全文
Mai Ping Tan Maria Kaparakis Maja Galic John Pedersen Martin Pearse Odilia L. C. Wijburg Peter H. Janssen Richard A. Strugnell 《Applied microbiology》2007,73(3):1010-1013
We examined the impact of Helicobacter pylori infection on the murine gastric microbiota by culture and terminal-restriction fragment length polymorphism and found that neither acute nor chronic H. pylori infection substantially affected the gastric microbial composition. Interestingly, the total H. pylori burden detected by real-time PCR was significantly higher than that revealed by viable counts, suggesting that the antigenic load sustaining H. pylori-induced gastritis could be considerably higher than previously believed. 相似文献
77.
Background And Objective
Two recent genome-wide association studies have identified a shared susceptibility variation PLCE1 rs2274223 for esophageal squamous cell carcinoma (ESCC) and gastric cardia adenocarcinomas (GCA). Subsequent case-control studies have reported this association in other populations. However, the findings were controversial and the effect remains undetermined. Our aim is to provide a precise quantification of the association between PLCE1 rs2274223 variation and the risk of ESCC and GCA.Methods
Studies were identified by a literature search in MEDLINE and EMBASE databases. Pooled odds ratios (ORs) with 95% confidence intervals (CIs) were used to assess the association in allele, dominant, recessive, homozygous, and heterozygous models.Results
Ten articles were identified, including 22156 ESCC cases and 28803 controls, 5197 GCA cases and 17613 controls. Overall, PLCE1 rs2274223 G allele (G vs. A: OR=1.26, 95% CI: 1.15-1.39 for ESCC; OR=1.51, 95% CI: 1.35–1.69 for GCA) and its carrier (GG +AG vs. AA: OR = 1.23; 95% CI =1.02-1.49 for ESCC; OR =1.62; 95% CI =1.15-2.29 for GCA) were significantly associated with the risk of ESCC and GCA. In stratified analysis by ethnicity, significant association of PLCE1 rs2274223 G allele and the risk of ESCC (OR=1.33, 95% CI 1.21–1.45) and GCA (OR =1.56, 95% CI: 1.47-1.64) was observed in Chinese population.Conclusions
Our meta-analysis results indicated that PLCE1 rs2274223 G allele significantly contributed to the risk of ESCC and GCA, especially in Chinese population. 相似文献78.
Sugiura M Ogami S Kusumi M Un S Rappaport F Boussac A 《The Journal of biological chemistry》2012,287(16):13336-13347
The main cofactors that determine the photosystem II (PSII) oxygen evolution
activity are borne by the D1 and D2 subunits. In the cyanobacterium
Thermosynechococcus elongatus, there are three
psbA genes coding for D1. Among the 344 residues
constituting D1, there are 21 substitutions between PsbA1 and PsbA3, 31 between
PsbA1 and PsbA2, and 27 between PsbA2 and PsbA3. Here, we present the first
study of PsbA2-PSII. Using EPR and UV-visible time-resolved absorption
spectroscopy, we show that: (i) the time-resolved EPR spectrum of TyrZ• in the
(S3TyrZ•)′ is slightly modified; (ii) the split EPR signal
arising from TyrZ• in the (S2TyrZ•)′ state induced by near-infrared
illumination at 4.2 K of the S3TyrZ state is significantly
modified; and (iii) the slow phases of P680+⋅ reduction by TyrZ are
slowed down from the hundreds of μs time range to the ms time range,
whereas both the S1TyrZ• → S2TyrZ and
the S3TyrZ• → S0TyrZ + O2
transition kinetics remained similar to those in PsbA(1/3)-PSII. These results
show that the geometry of the TyrZ phenol and its environment, likely
the Tyr-O···H···Nϵ-His bonding,
are modified in PsbA2-PSII when compared with PsbA(1/3)-PSII. They also point to
the dynamics of the proton-coupled electron transfer processes associated with
the oxidation of TyrZ being affected. From sequence comparison, we
propose that the C144P and P173M substitutions in PsbA2-PSII
versus PsbA(1/3)-PSII, respectively located upstream of the
α-helix bearing TyrZ and between the two α-helices
bearing TyrZ and its hydrogen-bonded partner, His-190, are
responsible for these changes. 相似文献
79.
Alcohol and aldehyde dehydrogenase genotypes and alcoholism in Chinese men. 总被引:25,自引:4,他引:25 下载免费PDF全文
H R Thomasson H J Edenberg D W Crabb X L Mai R E Jerome T K Li S P Wang Y T Lin R B Lu S J Yin 《American journal of human genetics》1991,48(4):677-681
The liver enzymes alcohol dehydrogenase (ADH) and aldehyde dehydrogenase (ALDH), which are responsible for the oxidative metabolism of ethanol, are polymorphic in humans. An allele encoding an inactive form of the mitochondrial ALDH2 is known to reduce the likelihood of alcoholism in Japanese. We hypothesized that the polymorphisms of both ALDH and ADH modify the predisposition to development of alcoholism. Therefore, we determined the genotypes of the ADH2, ADH3, and ALDH2 loci of alcoholic and nonalcoholic Chinese men living in Taiwan, using leukocyte DNA amplified by the PCR and allele-specific oligonucleotides. The alcoholics had significantly lower frequencies of the ADH2*2, ADH3*1, and ALDH2*2 alleles than did the nonalcoholics, suggesting that genetic variation in both ADH and ALDH, by modulating the rate of metabolism of ethanol and acetaldehyde, influences drinking behavior and the risk of developing alcoholism. 相似文献
80.
Nakuci E Xu M Pujana MA Valls J Elshamy WM 《The international journal of biochemistry & cell biology》2006,38(7):1207-1220
Previous studies suggested that geminin plays a vital role in both origin assembly and DNA re-replication during S-phase; however, no data to support a role for geminin in G2/M cells have been described. Here it is shown that in G2/M-phase, geminin participates in the promotion of proper cytokinesis. This claim can be supported through a series of observations. First, geminin in G2/M is loaded onto chromatin after it is tyrosine phosphorylated. It is unlike S-phase geminin that resides in the nuclear soluble fraction, where it is exclusively S/T phosphorylated. Secondly, on chromatin, geminin gets S/T phosphorylated in late G1; this modification causes the release of geminin from the chromatin. Cyclins bind and phosphorylate geminin in a sequential, cell cycle-dependent manner. These modifications correlated well with geminin departure from the chromatin. This suggests that cyclin functions to either release geminin from chromatin or at least keep it at bay until late S-phase. Thirdly, depletion of geminin from a diploid mammary epithelial cell line (HME) causes cells to arrest in late G2/M-phase. Massive serine-10 phosphorylated histone H3 staining and survivin localization to mid-body were observed; this suggests that they could be arrested in either mitosis or at cytokinesis. Finally, while in the absence of geminin, cyclin B1, chk1 and cdc7 are all over expressed. This paper will demonstrate that only cdc7 is important in maintaining the cytokinesis arrest in the absence of geminin. Only double depletion of geminin and cdc7 induce apoptosis. Our results taken together show, for the first time, that phosphorylation-induction activates oscillation of geminin between both nuclear soluble and chromatin compartments. Chromatin-bound geminin species functions to initiate or maintain proper cytokineses. In the absence of geminin, cells arrest in cytokinesis; this defines a novel checkpoint, monitored by cdc7, rather than cyclin B1 or chk1. 相似文献