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Michael A. Lynes Juan Hidalgo Yasmina Manso Lindsey Devisscher Debby Laukens David A. Lawrence 《Cell stress & chaperones》2014,19(5):605-611
Metallothioneins (MTs) are a family of low molecular weight, cysteine-rich, metal-binding proteins that have a wide range of functions in cellular homeostasis and immunity. MTs can be induced by a variety of conditions including metals, glucocorticoids, endotoxin, acute phase cytokines, stress, and irradiation. In addition to their important immunomodulatory functions, MTs can protect essential cellular compartments from toxicants, serve as a reservoir of essential heavy metals, and regulate cellular redox potential. Many of the roles of MTs in the neuroinflammation, intestinal inflammation, and stress response have been investigated and were the subject of a session at the 6th International Congress on Stress Proteins in Biology and Medicine in Sheffield, UK. Like the rest of the cell stress response, there are therapeutic opportunities that arise from an understanding of MTs, and these proteins also provide potential insights into the world of the heat shock protein. 相似文献
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目的:镉(Cd)是一种重要的环境污染物,其具有半衰期长、不能生物降解等特性使之易于在人体重要脏器中蓄积并对人身体健康造成不可逆的损伤。为此,减少镉的摄入,尤其是经胃肠道,是预防人体慢性镉中毒的有效方法。方法:构建以α-半乳糖苷酶作为筛选标记、表达金属硫蛋白融合蛋白(GST-SUMO-MT)的重组乳酸乳球菌MG1363/p M-GSMT。原子吸收光谱法分析重组乳酸菌对Cd~(2+)和Zn~+的结合能力。以灌胃方式,对雄性Sprague-Dawley大鼠每天口服不同剂量的重组乳酸菌(2×10~9~2×10~(11)CFU/d)及CdCl_2溶液[5mg/(kg·d)],连续处理56天。收集实验动物肝、肾、脑及睾丸,利用原子吸收光谱法检测这些脏器中镉离子的含量。生化分析检测血清中尿素及丙氨酸转氨酶的含量。石蜡切片及苏木精-伊红染色分析各组织的病理变化。结果:获得不含抗生素抗性的重组乳酸菌MG1363/p M-GSMT,其吸附Cd~(2+)、Zn~(2+)能力比对照组分别提高3.52倍和1.60倍。动物实验结果显示,镉能在肝、肾、脑及睾丸中蓄积,并对这些器官造成明显的病理损伤。原子吸收光谱分析、血清生化指标及病理切片结果都显示,重组乳酸菌能有效降低胃肠道中镉的摄入,进而减少Cd~(2+)在各脏器中的蓄积及对器官功能的损伤。结论:为预防人体食源性慢性镉中毒提供了一种有效的生物材料和使用方法。 相似文献
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紫羊茅重金属抗性和敏感品种中类金属硫蛋白基因的鉴定及表达初探 总被引:2,自引:0,他引:2
重金属对生命机体的作用具有双重性。一方面,作为多数辅酶的辅助因子对细胞的正常代谢必不可少;另一方面,当重金属超过一定的浓度时对细胞有较大的毒性。在长期的进化过程中,生物可能形成一种调节细胞内重金属浓度的机制。这种机制在动物和真菌中被认为同金属硫蛋白(metallothionein,MT)的作用密切相关。植物中也存在类似的与重金属结合的低分子量蛋白(heavy metal binding pep-tide)。最近对拟南芥菜和水稻中类金属硫蛋白(MT-like)基因的研究证实其作用与动物MT相似。紫羊茅品种“Merlin”是一种从锌铅矿区的重金属污染地采集的单子叶草种,对镉和铜的抗性都较高,分别达到50mg/L和30mg/L,而5mg/L Cd~(2 )或2mg/L Cu~(2 )便可抑制敏感品种“S59”的正常生长。目前 相似文献
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Metalloprotein analysis by capillary isoelectric focusing 总被引:1,自引:0,他引:1
Mark P. Richards Tung-Liang Huang 《Journal of chromatography. B, Analytical technologies in the biomedical and life sciences》1997,690(1-2):43-54
Capillary isoelectric focusing (cIEF) was used to analyze three metalloproteins: conalbumin, transferrin and metallothionein (MT). Two different ampholyte mixtures were employed that generated linear pH gradients of 3–10 and 5–8. Several different proteins and one peptide known isoelectric points (pIs) were used to establish linear relationships between peak migration time and pI. These standards were also used as internal markers to estimate peak pI values of the metalloproteins subjected to cIEF. Conalbumin (iron-free) subjected to cIEF with a pH gradient of 3–10 yielded a single major component (pI 7.17). When the protein was saturated with iron (2 Fe3+/mol protein), a shift to lower pI was observed with a major peak (pI 6.24) and a lesser peak (pI 6.09). Mixing iron-free with iron-saturated conalbumin or adding iron to iron-free conalbumin prior to cIEF produced an additional peak (pI 6.68) that was presumed to be conalbumin containing a single iron atom (monoferric form). Human transferrin subjected to cIEF with a pH range of 3–10 gave a similar separation pattern to conalbumin with four major peaks at pI values of 6.25 (apotransferrin), 5.96 (monoferric form), 5.48 and 5.34 (differic forms). Additional resolution of the molecular forms of both conalbumin and transferrin was achieved using a narrower pH gradient (5–8). Rabbit liver MT subjected to cIEF with a pH gradient of 3–10 gave a complex separation pattern with two prominent peaks (pI values of 3.73 and 3.56) that were presumed to be the fully metal-saturated MT-1 and MT-2 isoforms. When individual MT isoforms (MT-1 and MT-2) were separately subjected to cIEF with a pH gradient of 3–10, heterogeneous peaks with higher pI values (4.12–4.74) were observed. In contrast, horse kidney MT gave a single predominant peak with a pI of 4.09. MT samples could be separated using pH gradient of 5–8 despite the fact that their apparent pI values were below the limits of the pH gradient established. In general, the heterogeneity observed for conalbumin, transferrin and MT proteins subjected to cIEF reflects the presence or absence of bound metal. Thus, cIEF represents a potentially useful analytical method which can provide information concerning the metal-binding characteristics of these and perhaps other metalloproteins. 相似文献
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Moltó E Bonzón-Kulichenko E Gallardo N Andrés A 《Archives of biochemistry and biophysics》2007,467(1):31-40
Metallothioneins are cysteine-rich proteins, with a high capacity to bind metallic ions, and for which a precise biological role has not been established. Here we investigated the effects of MTPA, a metallothionein from the lobster Panulirus argus, on mitochondrial oxygen consumption and ROS production. An HPLC-RP-ESI-MS analysis of recombinant MTPA showed that despite its extra Cys, MTPA binds 6 Zn2+ per molecule akin to other crustacean metallothioneins with 18 Cys. The extra Cys is not involved in zinc binding, since its side-chain would be oriented to the outside of the molecule according to a preliminary model of the tridimensional structure of MTPA. MTPA-Zn2+6 is imported into the hepatopancreatic mitochondria intermembrane space and inhibits mitochondrial oxygen consumption, increasing thereby ROS production. Nevertheless, the stimulation of ROS production by MT-bound Zn2+ is weaker compared to equivalent amounts of free Zn2+, suggesting that MTPA protects against oxidative stress. This constitutes the first report on metallothioneins effects on mitochondrial function in invertebrates and agrees with the results described for mammals, suggesting a connection between metallothioneins and energy metabolism. 相似文献
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哺乳动物金属硫蛋白是一类低分子量,富含半胱氨酸,能大量结合金属元素的蛋白质,其氨基酸组成特殊,无组氨酸和芳香族氨基酸,没有二硫键。氨基酸序列独特,具有两个金属-巯基簇结构域,具有金属-巯基结合所形成的四面体结构的特征吸收光谱[1]。生物意义涉及生物机体微量元素储存、运输和代谢,重金属解毒,拮抗电离辐射,清除自由基,以及机体生长、发育、生殖、衰老、肿瘤发生、免疫、应激反应等各个方面。其研究与开发利用涉及农业、医药、保健、生物工程、环境保护等各个领域[2]。全世界科学家对其进行了广泛而深入的研究,生… 相似文献