Ca2+-Mg2+-ATP酶是一种什么酶?

蛋白酶是一类酶吗?有哪些酶是一类酶而不是一种酶? 麻烦了谢谢_百度知道
蛋白酶是一类酶吗?有哪些酶是一类酶而不是一种酶? 麻烦了谢谢
提问者采纳
是的,蛋白酶指蛋白水解酶类,酶类的分类方法有很多种,其中人们一般把酶分成6大类,氧化酶,转移酶,水解酶,裂合酶,异构酶,合成酶,本人还认为有一类即核酸酶,指一类酶的名称有很多这个要慢慢积累
提问者评价
你真棒,学习了
其他类似问题
蛋白酶的相关知识
等待您来回答
下载知道APP
随时随地咨询
出门在外也不愁作者:万福生 赵小曼 雷 厉 龚文华
&&&&单位:万福生 赵小曼 雷 厉 龚文华 江西医学院生化教研室(南昌 330006)
&&&&关键词:牛磺酸;腺苷三磷酸酶;丙二醛;线粒体;心肌
&&&&中国病理生理杂志990214 摘 要 目的和方法:用Wistar大鼠皮下注射异丙肾上腺素(ISP,5 mg/kg)诱导心肌缺血模型。观测心肌线粒体(Mit)中丙二醛(MDA)含量、Ca2+-Mg2+-ATP酶和Ca2+-ATP酶活性及牛磺酸(Tau)的影响。结果:缺血组大鼠心肌Mit中MDA升高87.83%、Ca2+-Mg2+-ATP酶和Ca2+-ATP酶活性分别降低37.56%和50.20%(P<0.01)。Ca2+-Mg2+-ATP酶活性与MDA含量也呈显著负相关(r=-0.87,P<0.01)。Ca2+-ATP酶活性与MDA含量也呈显著负相关(r=-0.79,P<0.01)。在注射异丙肾上腺素(ISP)前30 min腹腔注射Tau(200 mg/kg)则Mit中MDA含量、Ca2+-Mg2+-ATP酶和Ca2+-ATP酶活性均未见显著异常改变。结论:Tau可能通过抑制MDA的生成实现其保护Ca2+-ATP酶和Ca2+-Mg2+-ATP酶活性的作用。
&&&&Effect of taurine on Ca2+-Mg2+-ATPase activity and MDA content of
&&&&myocardial mitochondria in ischemic rats
&&&&WAN Fu-Sheng, ZHAO Xiao-Man, LEI Li, GONG When-Hua
&&&&Department of Biochemistry, Jiangxi Medical College, Nanchang (330006)
&&&&Abstract AIM and METHOD: Myocardial ischemia model was induced by subcutaneous injection of isoproterenol (ISP. 5 mg/kg) into Wistar rats. MDA (malondialdehyde) content and activities of Ca2+-Mg2+-ATPase and Ca2+-ATPase were observed. RESULTS: Compared with the control, MDA content was increased by 87.83%; Ca2+-Mg2+-ATPase and Ca2+-ATPase activities were decreased by 37.56% and 50.20% respectively. A definite negative correlation (r=-0.87, P<0.01) between MDA content and Ca2+-Mg2+-ATPase activity as well as (r=-0.79, P<0.01) between MDA content and Ca2+-ATPase activity were found. Taurine was injected intraperitoneraly 30 min before injection of ISP, the MDA content and Ca2+-Mg2+-ATPase and Ca2+-ATPase activities in the myocardial mitochondria had not much change. CONCLUSION: Protective effect of taurine on Ca2+-Mg2+-ATPase and Ca2+-ATPase activities were completed by reducing MDA formation of mitochondria. ......&&&&百拇医药网
您现在查看是摘要页,。短波紫外线对日本三角涡虫的损伤及六种酶活力的影响
激光生物学报摘要, 更新时间: 日
&&nbsp由美国生科集团 (BVTech, Inc.) 主办
短波紫外线对日本三角涡虫的损伤及六种酶活力的影响
激光生物学报摘要 2007-5
潘红春*,王芳芳,吴宝山,孙 祯,朱国萍
(安徽师范大学生命科学学院分子进化与生物多样性实验室,安徽 芜湖 241000)
摘 要:用短波紫外线照射处理日本三角涡虫,观察到涡虫的损伤,探讨了紫外线辐射对涡虫乳酸脱氢酶(LDH)、Na+-K+-ATP酶、Ca2+-Mg2+-ATP酶、超氧化物歧化酶(SOD)、过氧化氢酶(CAT)和谷胱甘肽过氧比物酶(GSH-PX)活力的影响。结果表明,短波紫外线辐射对涡虫的损伤明显,照射的时间越长,涡虫在照射后出现死亡解体现象的时间就越短。随着紫外线照射时间的延长,LDH活力呈下降趋势;Na+-K+-ATP酶活力呈上升趋势而Ca2+-Mg2+-ATP酶活力呈下降趋势;SOD活力有明显的增加;CAT活力有增加趋势;GSH-PX活力波动较大,但总体仍呈增加趋势。不论是从紫外线对日本三角涡虫的损伤情况、还是对其6种酶活力的影响来看,日本三角涡虫是一种对紫外线辐射非常敏感的动物,在检测紫外线辐射及筛选抗紫外线辐射防护剂等方面具有潜在价值和应用前景。
Damage of Dugesia japonica Radiated by Shortwave Ultraviolet and Effect of the Radiation on Activities of Its Six Kinds of Enzymes
PAN Hong-chun*, WANG Fang-fang, WU Bao-shan, SUN Zhen, ZHU Guo-ping
(Laboratory of Molecular Evolution & Biological Diversity, College of Life Sciences, Anhui Normal University, Wuhu 241000, Anhui, China)
Abstract: Dugesia japonica was radiated by UV-C lamp. The morphological change of planarian was observed, in addition, the effect of the radiation on activities of lactic dehydrogenase (LDH), Na+-K+-ATPase, Ca2+-Mg2+-ATPase, superoxide dismutase (SOD), catalase (CAT) and glutathione peroxidase (GSH-PX) was studied. The result indicated that UV-C radiation caused obvious damage of the planarian, and the livability of the planarian was related negatively to radiation time. In addition, with the prolonging of UV-C radiation time, the activity of LDH has
the activity of Na+-K+-ATPase has the increasing trend while the activity of Ca2+-Mg2+-ATPase has
the activity of SOD the activity of CAT has the upward trend and the activity of GSH-PX fluctuates, but the total trend is increasing. Based on the damage of the planarian from UV-C radiation and the effect of the radiation on the activities of six enzymes, Dugesia japonica should be very sensitive to UV-C radiation and has application prospects and great potential value in UV radiation detection and screening of the anti-ultraviolet radiation protectants.
Bioinformatics,
GCG; Life Science N Drug Discovery.
生命科学进展新闻网
生科新闻网是反映生命科学研究进展的新闻网站。致力于为学术界和工业界的生命科学研究人员和大专院校师生提供及时, 准确的新闻和研究动态。为促进科技交流,尽其绵薄之力。
This is a web site of life science news in Chinese. It provides news and research trens in life sciences and drug discovery. This site is updated continuously throughout the day.
生科集团所发布的任何消息和评论仅供读者参考。
欢迎投稿。
Copyright 2005 BVTech, Inc.
All Rights Reserved端粒酶是一种什么酶?_百度知道
端粒酶是一种什么酶?
提问者采纳
端粒酶(Telomerase),在细胞中负责端粒的延长的一种酶,是基本的核蛋白逆转录酶,可将端粒DNA加至真核细胞染色体末端。端粒在不同物种细胞中对于保持染色体稳定性和细胞活性有重要作用,端粒酶能延长缩短的端粒(缩短的端粒其细胞复制能力受限),从而增强体外细胞的增殖能力。端粒酶在正常人体组织中的活性被抑制,在肿瘤中被重新激活,端粒酶可能参与恶性转化。端粒酶在保持端粒稳定、基因组完整、细胞长期的活性和潜在的继续增殖能力等方面有重要作用。端粒酶的存在,就是把 DNA 克隆机制的缺陷填补起来,即由把端粒修复延长,可以让端粒不会因细胞分裂而有所损耗,使得细胞分裂克隆的次数增加。应该说是一种与生长有关的酶。
提问者评价
其他类似问题
按默认排序
其他2条回答
端粒酶-简介细胞中有种酵素负责端粒的延长,其名为端粒酶。端粒酶的存在,算是把 DNA 克隆机制的缺陷填补起来,藉由把端粒修复延长,可以让端粒不会因细胞分裂而有所损耗,使得细胞分裂克隆的次数增加。
其作为逆转录酶的特点是,自身携带模板——一段特定序列的RNA,不同生物的端粒序列是特定几个碱基对的高度重复(人类TTAGGG)。它解决了染色体复制中的末端问题——引物去除后,一条链(5‘端)短一段。它神奇的作用不是直接延长短的那条链,而是通过逆转录使长的那条链(3‘端)更长,足够长。然后再利用正常的DNA聚合酶的机制补齐短链。很厉害!
端粒酶的相关知识
您可能关注的推广
等待您来回答
下载知道APP
随时随地咨询
出门在外也不愁}

我要回帖

更多关于 atp硫酸化酶 的文章

更多推荐

版权声明:文章内容来源于网络,版权归原作者所有,如有侵权请点击这里与我们联系,我们将及时删除。

点击添加站长微信