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71.
Insulin and insulin-like growth factor 1 (IGF-1) share a homologous sequence, a similar three-dimensional structure and weakly overlapping biological activity, but IGF-1 folds into two thermodynamically stable disulfide isomers, while insulin folds into one unique stable tertiary structure. This is a very interesting phenomenon in which one amino acid sequence encodes two three-dimensional structures, and its molecular mechanism has remained unclear for a long time. In this study, the crystal structure of mini-IGF-1(2), a disulfide isomer of an artificial analog of IGF-1, was solved by the SAD/SIRAS method using our in-house X-ray source. Evidence was found in the structure showing that the intra-A-chain/domain disulfide bond of some molecules was broken; thus, it was proposed that disulfide isomerization begins with the breakdown of this disulfide bond. Furthermore, based on the structural comparison of IGF-1 and insulin, a new assumption was made that in insulin the several hydrogen bonds formed between the N-terminal region of the B-chain and the intra-A-chain disulfide region of the A-chain are the main reason for the stability of the intra-A-chain disulfide bond and for the prevention of disulfide isomerization, while Phe B1 and His B5 are very important for the formation of these hydrogen bonds. Moreover, the receptor binding property of IGF-1 was analyzed in detail based on the structural comparison of mini-IGF-1(2), native IGF-1, and small mini-IGF-1.  相似文献   
72.
Chen AY  Qiu J 《Future virology》2010,5(6):731-743
The cytopathic effects induced during parvovirus infection have been widely documented. Parvovirus infection-induced cell death is often directly associated with disease outcomes (e.g., anemia resulting from loss of erythroid progenitors during parvovirus B19 infection). Apoptosis is the major form of cell death induced by parvovirus infection. However, nonapoptotic cell death, namely necrosis, has also been reported during infection of the minute virus of mice, parvovirus H-1 and bovine parvovirus. Recent studies have revealed multiple mechanisms underlying the cell death during parvovirus infection. These mechanisms vary in different parvoviruses, although the large nonstructural protein (NS)1 and the small NS proteins (e.g., the 11 kDa of parvovirus B19), as well as replication of the viral genome, are responsible for causing infection-induced cell death. Cell cycle arrest is also common, and contributes to the cytopathic effects induced during parvovirus infection. While viral NS proteins have been indicated to induce cell cycle arrest, increasing evidence suggests that a cellular DNA damage response triggered by an invading single-stranded parvoviral genome is the major inducer of cell cycle arrest in parvovirus-infected cells. Apparently, in response to infection, cell death and cell cycle arrest of parvovirus-infected cells are beneficial to the viral cell lifecycle (e.g., viral DNA replication and virus egress). In this article, we will discuss recent advances in the understanding of the mechanisms underlying parvovirus infection-induced cell death and cell cycle arrest.  相似文献   
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Type II collagen is a major protein that maintains biological and mechanical characteristics in articular cartilage. Focal adhesion kinase (FAK) is known to play a central role in integrin signaling of cell–extracellular matrix (ECM) interactions, and chondrocyte–type II collagen interactions are very important for cartilage homeostasis. In this study, we focused on phosphorylation of FAK and MAP kinase in chondrocyte–type II collagen interaction and dedifferentiation, and the effects of FAK knockdown on chondrocyte‐specific gene expression and cell proliferation were determined. The addition of exogenous type II collagen to chondrocytes increased levels of tyrosine phosphorylation, p‐FAKY397, and p‐ERK1/2. In contrast, expression levels of p‐FAKY397 and p‐ERK1/2, but not p‐Smad2/3, were decreased in dedifferentiated chondrocytes with loss of type II collagen expression. Type II collagen expression was significantly increased when dedifferentiated chondrocytes were transferred to alginate beads with TGF‐β1 or type II collagen, but transfected cells with small interfering RNA for FAK (FAK‐siRNA) inhibited mRNA expression of type II collagen and SOX‐6 compared to the control. These FAK‐siRNA‐transfected cells could not recover type II collagen even in the presence of TGF‐β1 or type II collagen in alginate beads culture. We also found that FAK‐siRNA‐transfected cells decreased cell proliferation rate, but there was no effect on glycosaminoglycans (GAGs) secretion. We suggest that FAK is essentially required in chondrocyte communication with type II collagen by regulating type II collagen expression and cell proliferation. J. Cell. Physiol. 218: 623–630, 2009. © 2008 Wiley‐Liss, Inc.  相似文献   
76.
四个鲫鱼品系线粒体DNA的限制性酶切分析   总被引:10,自引:0,他引:10  
用差速离心和核酸酶消化法从红鲫 (C auratusredvar .)、湘鲫 [F1hybridsofredcruciancarp (♀ )×commoncarp (♂ ) ]、野鲫 (C auratusauratus)和白鲫 (C auratuscuvieri)的肝组织及白鲫的卵巢中提取和纯化线粒体DNA。用 9种内切酶 (EcoRⅠ、HindⅢ、PstⅠ、BglⅡ、BamHⅠ、XhoⅠ、XbaⅠ、SalⅠ和KpnⅠ )进行单酶酶解 ,经琼脂糖凝胶电泳分析 ,检测出PstⅠ、KpnⅠ和BglⅡ 3种酶在品系间存在限制性片段长度多态性 ,但并未检测出品系内的限制性片段长度多态性。计算出红鲫、湘鲫、白鲫和野鲫的mtDNA大小分别约为 16 19、 16 0 2、 16 6 0和 16 0 6kb。根据限制性酶切片段共享度 ,计算出 4个品系间的遗传距离 ,结果表明存在直接亲缘关系的红鲫与湘鲫之间的遗传差异最小 ,证实了红鲫与子代湘鲫之间mtDNA遵循母系遗传的特性。  相似文献   
77.
Bocaviruses are associated with many human infectious diseases, such as respiratory tract infections, gastroenteritis, and hepatitis. Rats are known to be reservoirs of bocaviruses, including rodent bocavirus and rat bocavirus. Recently, ungulate bocaparvovirus 4, a known porcine bocavirus, has also been found in rats. Thus, investigating bocaviruses in rats is important for determining the origin of the viruses and preventing and controlling their transmission. To the best of our knowledge, no study to date has investigated bocaviruses in the livers of rats. In this report, a total of 624 rats were trapped in southern China between 2014 and 2017. Liver and serum samples from rats were tested for the prevalence of bocaviruses using PCR. Sequences related to ungulate bocaparvovirus 4 and rodent bocavirus were detected in both liver and serum samples. Interestingly, the prevalence of ungulate bocaparvovirus 4 (reference strain:KJ622366.1) was higher than that of rodent bocavirus (reference strain:KY927868.1) in both liver (2.24% and 0.64%, respectively) and serum samples (2.19% and 0.44%, respectively). The NS1 regions of ungulate bocaparvovirus 4 and rodent bocavirus related sequences displayed over 84% and 88% identity at the nucleic acid and amino acid levels, respectively. Furthermore, these sequences had similar genomic structure, genomic features, and codon usage bias, and shared a common ancestor. These viruses also displayed greater adaptability to rats than pigs. Our results suggested that ungulate bocaparvovirus 4 and rodent bocavirus may originate from rats and may be different genotypes of the same bocavirus species.  相似文献   
78.
一百余年前,人类就开始了相对系统的野生动物调查。目前已经建立了成熟的方法体系,并制定了相应的调查规范。最近几十年来,我国科研人员进行了大量的野生动物调查。但是,当前我国的野外调查规范还不够细致,调查者在调查时缺乏必要的约束,导致调查数据不规范、不可靠,很多重要信息缺失。突出问题有:样线信息不全,只有起点和终点的经纬度,没有自动记录的详细样线信息(如每秒记录一次的连续点位信息,含经纬度和时间);动物位点信息缺乏可信度指标(如距观测者的距离);调查时间不合理;调查地点的空间取样不均衡;记录的标准化不够(如每个观测点的观测时长不确定)等等。对此,我们参考国际通用的调查规范,提出了一些简单易行的调查要点,以便提高野外调查数据的质量。另外,我们提倡野外记录的无纸化,充分利用现有的手机应用软件(APP)和模型工具提高野外记录以及后期数据处理的效率。最后,我们提议建立固定的中国生物多样性监测样线体系,以便消除每年调查时空间取样的不确定性,更好地量化野生动物的时间动态,为野生动物的保护和管理提供依据。  相似文献   
79.
林云  毕海燕  李超  云映霞 《植物研究》2019,39(2):310-320
对我国11个双子叶植物(Dicotyledon)原白中模式标本引证的排印错误做了更正:砚山锥栗(壳斗科)原白中错误地将模式标本引证为王启无84116,实际应为王启无84416,前者属于菊科植物Inuna helianthus-aquatica C.Y.Wu ex Ling。长果柯(壳斗科)原白中错误地将模式标本引证为K.M.Feng 13012,实际应为K.M.Feng 13102,前者属于冬青科植物Ilex triflora Bl.。福建红小麻(荨麻科)原白中错误地将主模式标本引证为C.J.Chen&Z.Y.Li 109,实际应为C.J.Chen&Z.Y.Li 103,前者属于荨麻科植物Oreocnide frutescens(Thunb.)Miq.。少毛全缘叶紫麻(荨麻科)原白中错误地将主模式标本引证为N.K.Chun 44099,实际应为N.K.Chun 44033,前者属于杜鹃花科植物Lyonia ovalifolia(Wallich)Drude var.rubrovenia(Merr.)Judd.。甘南铁线莲(毛茛科)原白中错误地将主模式标本引证为Baishuijiang Exped.4490,实际应为Baishuijiang Exped.4990,前者属于卫矛科植物Euonymus alatus(Thunb.)Sieb.。矮粗距翠雀花(毛茛科)原白中错误地将模式标本引证为Sichuan Veg.Exped.3137,实际应为Sichuan Veg.Exped.3173,前者属于龙胆科植物Gentiana conduplicata T.N.Ho。镇康黄芪(豆科)原白中错误地将主模式标本引证为T.T.Yu 17255,实际应为T.T.Yu 17225,前者属于莎草科植物Scirpus lushanensis Ohwi。宽翼棘豆(豆科)原白中错误地将模式标本引证为Qinghai-Xizang Comp.Exped.9484,实际应为Qinghai-Xizang Comp.Exped.9485,前者属于石竹科植物Arenaria kansuensis Maxim.。肾瓣黄芪(豆科)原白中错误地将模式标本引证为Qinghai-Xizang Comp.Exped.3650,实际应为Qinghai-Xizang Comp.Exped.3605,前者属于麻黄科植物Ephedra gerardiana Wall.ex Mey.。湖南长柄槭(槭树科)原白中错误地将模式标本引证为李泽棠2944,实际应为李泽棠2994,前者属于杜鹃花科植物Pieris formosa D.Don。峨眉勾儿茶(鼠李科)原白中错误地将模式标本引证为杨光辉54729,实际应为杨光辉54723,前者属于山茱萸科植物Helwingia chinensis Batalin.。  相似文献   
80.
本文在前期工作基础上,进一步对肠道病毒71型(EV71)从恒河婴猴的感染个体向其他未感染个体传播的可能性及相关生物学特性做了初步分析.通过喷雾形式经呼吸道感染1~2月龄恒河婴猴(A组);在观察临床症状同时,于感染后第7天,取该组动物粪便处理后,将上清液以喷雾形式经呼吸道感染新的婴猴个体(B组),随后对该次代感染个体进行...  相似文献   
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