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101.
Shuang Geng Xin-Chi Pan Ran Mei Ya-Nan Wang Ji-Quan Sun Xue-Ying Liu Yue-Qin Tang Xiao-Lei Wu 《Current microbiology》2015,70(1):110-118
A Gram staining negative, rod-shaped, aerobic bacterial strain J5-3T with a single polar flagellum was isolated from coking wastewater collected from Shaoguan, Guangdong, China. It was motile and capable of optimal growth at pH 6–8, 30 °C, and 0–2 % (w/v) NaCl. Its predominant fatty acids were 11-methyl C18:1 ω7c (29.2 %), C16:0 (20.6 %), C19:0 cyclo ω8c (18.2 %), C18:0 (11.0 %), and C18:1 ω7c/C18:1 ω6c (10.9 %) when grown on trypticase soy agar. The major polar lipids were diphosphatidylglycerol, phosphatidylglycerol, two unknown glycolipids (GL1, GL2), and two unknown phospholipid (PL1, PL2). The predominant ubiquinone was Q-10, and the genome DNA G+C content was 61.7 mol %. Phylogenetic analysis based on the 16S rRNA gene sequences indicated that strain J5-3T belonged to the family Hyphomicrobiaceae in Alphaproteobacteria. It shared the 16S rRNA gene sequence similarities of 93.8–96.1 % with the genus Devosia, 94.5–94.8 % with the genus Pelagibacterium, and <92.0 % with all the other type strains in family Hyphomicrobiaceae. It can be distinguished from the closest phylogenetic neighbors based on several phenotypic and genotypic features, including α-galactosidase activity, tetracycline susceptibility, major fatty acid composition, polar lipid profile, DNA gyrase B subunit (gyrB) gene sequence, and random-amplified polymorphic DNA profile. Therefore, we consider strain J5-3T to represent a novel species of a novel genus within the family Hyphomicrobiaceae, for which the name Paradevosia shaoguanensis gen. nov., sp. nov. is proposed. The type strain of Paradevosia shaoguanensis is J5-3T (=CGMCC 1.12430T =LMG 27409T). 相似文献
102.
Xuting Bian Tianyao Liu Mei Zhou Gang He Yuanyuan Ma Youxing Shi Yunjiao Wang Hong Tang Xia Kang Mingyu Yang Jan‐ke Gustafsson Xiaotang Fan Kanglai Tang 《Journal of cellular and molecular medicine》2019,23(11):7406-7416
Achilles tendon injury is one of the challenges of sports medicine, the aetiology of which remains unknown. For a long time, estrogen receptor β (ERβ) has been known as a regulating factor of the metabolism in many connective tissues, such as bone, muscle and cartilage, but little is known about its role in tendon. Recent studies have implicated ERβ as involved in the process of tendon healing. Tendon‐derived stem cells (TDSCs) are getting more and more attention in tendon physiological and pathological process. In this study, we investigated how ERβ played a role in Achilles tendon healing. Achilles tendon injury model was established to analyse how ERβ affected on healing process in vivo. Cell proliferation assay, Western blots, qRT‐PCR and immunocytochemistry were performed to investigate the effect of ERβ on TDSCs. Here, we showed that ERβ deletion in mice resulted in inferior gross appearance, histological scores and, most importantly, increased accumulation of adipocytes during the early tendon healing which involved activation of peroxisome proliferator‐activated receptor γ (PPARγ) signalling. Furthermore, in vitro results of ours confirmed that the abnormity might be the result of abnormal TDSC adipogenic differentiation which could be partially reversed by the treatment of ERβ agonist LY3201. These data revealed a role of ERβ in Achilles tendon healing for the first time, thereby providing a new target for clinical treatment of Achilles tendon injury. 相似文献
103.
Ru Wang Markku Alen Zhusheng Yu Petri Wiklund Shu Mei Cheng Timo T?rm?kangas Peijie Chen Sulin Cheng 《PloS one》2013,8(12)
Vitamin D is well known for its regulatory role in calcium and phosphate homeostasis, but its role in muscle mass and strength during growth remains inconclusive. We explored the association of serum 25-hydroxyvitamin D (25(OH)D) with muscle development in girls from 11 to 18-years old. Whole body lean tissue mass (LMWB), appendicular lean mass (aLM), muscle cross-sectional area at the lower leg (mCSA), maximal voluntary contraction of elbow flexors (MVCelbow) and knee extensors (MVCknee) were assessed in 217 girls aged 10–13 years (at baseline), 215 in 2-year and 226 in 7.5-year follow-up. Serum concentration of 25(OH)D and intact parathyroid hormone (PTH) were analyzed retrospectively and girls were categorized according to their 25(OH)D levels (consistently insufficient 25(OH)D GLL <50 nmol/l and consistently sufficient GHH >50 nmol/l from baseline to 7-year follow-up). We found that 25(OH)D level declined until menarche (p<0.05) while LMWB, aLM, mCSA, MVCelbow and MVCknee continued to increase (p<0.001 for all) post menarche. At pre-menarche, the GLL (n = 34) had higher LMWB and aLM than the GHH (n = 21, p<0.05), while post-menarche the GHH (n = 15) had a greater catch-up gain in LMWB (p = 0.004), aLM (p = 0.001) and mCSA (p = 0.027) compared to the GLL (n = 65) over the first 2-year period. At the age of 18, no differences in muscle mass/strength between the low (n = 151) and high (n = 77) levels of 25(OH)D groups were found. This finding was independent of vitamin D receptor genotype and other confounders. In conclusion, our results showed that levels of 25(OH)D have no significant negative influence on the development of muscle mass and strength during pubertal growth both with longitudinal and cross-sectional comparison. On the contrary, our results suggest that the temporary negative association between 25(OH)D and muscle mass arises as a consequence of fast growth prior to menarche, and this negative association is diminished through catch-up growth after menarche. 相似文献
104.
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107.
Leboucher GP Tsai YC Yang M Shaw KC Zhou M Veenstra TD Glickman MH Weissman AM 《Molecular cell》2012,47(4):547-557
Mitochondria play central roles in integrating pro- and antiapoptotic stimuli, and JNK is well known to have roles in activating apoptotic pathways. We establish a critical link between stress-induced JNK activation, mitofusin 2, which is an essential component of the mitochondrial outer membrane fusion apparatus, and the ubiquitin-proteasome system (UPS). JNK phosphorylation of mitofusin 2 in response to cellular stress leads to recruitment of the ubiquitin ligase (E3) Huwe1/Mule/ARF-BP1/HectH9/E3Histone/Lasu1 to mitofusin 2, with the BH3 domain of Huwe1 implicated in this interaction. This results in ubiquitin-mediated proteasomal degradation of mitofusin 2, leading to mitochondrial fragmentation and enhanced apoptotic cell death. The stability of a nonphosphorylatable mitofusin 2 mutant is unaffected by stress and protective against apoptosis. Conversely, a mitofusin 2 phosphomimic is more rapidly degraded without cellular stress. These findings demonstrate how proximal signaling events can influence both mitochondrial dynamics and apoptosis through phosphorylation-stimulated degradation of the mitochondrial fusion machinery. 相似文献
108.
冬季高温对白三叶越冬和适应春季"倒春寒"的影响 总被引:2,自引:0,他引:2
暖冬和春季"倒春寒"已严重影响着多年生植物生长发育。选择建植3a的白三叶(Trifolium repens Linn)为试验材料,在入冬采用搭建塑料大棚模拟暖冬方法,通过在建棚前、建棚后、冬季融冻胁迫、春季揭棚后和"倒春寒"过程中测定棚外和棚内白三叶植株高度和叶片抗逆生理指标的变化以揭示未来暖冬对白三叶生存和生态园林持续发展的影响。结果表明,冬季棚外气温均温低于0℃,白三叶叶片经历了冻融胁迫,棚内温度高于0℃,叶片始终未结冻。搭棚前,棚内外试验地白三叶生长势无差异。搭棚后100d棚内白三叶株高是棚外的3倍,但揭棚后3个月棚内外白三叶株高一致。另外,冬季虽然棚内外白三叶叶片细胞膜透性、丙二醛(MDA)、脯氨酸、可溶性糖含量和抗氧化酶活力(SOD、CAT、POD)均随气温下降而增高与气温变化呈负相关,但棚外白三叶叶片上述生理指标均高于棚内。在春季揭棚后2d,冬季棚内生长的白三叶不仅叶片细胞膜透性和MDA含量急剧增加并高于揭棚前和棚外白三叶,而且叶片SOD和CAT活性和可溶性糖和脯氨酸含量急剧增加也明显高于棚外白三叶。在春季"倒春寒"时,冬季棚内外不同温度下生长的白三叶叶片细胞膜透性快速升高、脯氨酸和可溶性糖含量、POD和SOD活性均上升,两处理间无显著差异。研究表明,冬季零度以上低温可延缓冬季白三叶绿叶期和单个叶片的寿命,可使白三叶安全渡过春季"倒春寒",未来暖冬不会降低白三叶抗融冻能力和其返青生长势。而这与白三叶能快速应对环境温度变化,通过调整生理代谢使叶片中快速积累渗透调节物和激活抗氧化酶防止氧自由基积累抑制膜脂过氧化,保护细胞膜的完整性有直接关系。 相似文献
109.
红细胞抗高血压因子降压作用的进一步研究 总被引:4,自引:0,他引:4
我们曾报道原发性高血压患者(EHS)红细胞抗高血压因子(AHF)具有缓慢而持久的降压作用。本工作表明,AHF对卒中易感型自发性高血压大鼠(SHRsp)还具有快速短暂的降压作用,注射AHF后10—30s,SHRsp收缩压从原水平的26.8±1.7kPa降至20.1±1.5kPa(P<0.001)。正常人和大鼠红细胞AHF的降压作用明显强于EHS和高血压大鼠AHF。此外我们还发现EHS血浆中存在升压物质。以上结果提示,AHF缺乏和升压物质含量相对较高可能是原发性高血压发病的一个重要原因。 相似文献
110.
Manganese-binding proteins of the oxygen-evolving complex 总被引:4,自引:0,他引:4
The extrinsic 33-kDa protein (P33) was cross-linked covalently to the binding site on P33-depleted PSII preparations which is responsible for reconstitution of photosynthetic water oxidation after PSII preparations have been washed with 1 M CaCl2. Conditions were found in which more than half of the cross-linked protein complexes formed in the PSII preparations retained the ability to catalyze the oxidation of water. The complex is composed of the P33 cross-linked to the D1 and D2 proteins and a 34-kDa protein, which is present in lower abundance than the other three proteins. After solubilization of the membranes with SDS and purification by preparative SDS-PAGE, the complex retains bound manganese and can catalyze the conversion of H2O2 to O2. Calcium and chloride increased the catalase activity of the purified cross-linked complex while lanthanum or hydroxylamine abolished the activity. By use of the specific activity of the H2O2-dependent reaction to follow the extent of purification of the cross-linked complex, the most highly purified complex was determined to contain 0.34 microgram of manganese/180 micrograms of protein. The mole ratio of Mn/protein was calculated to range from 3.6 to 4.5 depending on the assumed stoichiometry of the protein subunits. The results presented here provide direct evidence that one or more of the three proteins that have cross-linked to the P33 are responsible for binding the manganese of the oxygen-evolving complex. 相似文献