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- Dynein ATPase 动力蛋白ATP酶
- CL was a potent inhibitor of Ca 2+ ,Mg 2+ ATPase. 马桑内酯是Ca2+,Mg2+?ATP酶的强力抑制剂。
- Dynein provides the mechanical energy to do that," Doholyan said. 以及在细胞分裂中,提供了机械能协助染色体的分离。”
- Dynein also helps force apart chromosomes during cell division. 以及在细胞分裂中,提供了机械能协助染色体的分离。”
- It may be one of the causes of lower Ca 2+ Mg 2+ ATPase activity. 这可能是导致 AMI患者 Ca2 + - Mg2 + - ATP酶活性降低的原因之一。
- ATPase was detected in the liver of Oncomelania snail. 钉螺肝脏具有三磷酸腺苷酶(ATPase)活力。
- The Na + ,K + ATPase activity of myocardial membrane was measured. 光电比色法测定Na+ 、K+ ATP酶的活性。
- The activity of Na~+-K~+ ATPase and Ca~(2+)-Mg~(2+) ATPase decreased. 黄芪组Na+-K+-ATP酶和Ca2+-Mg2+ATP酶活性均降低。
- The vitamin K_3-activated ATPase was inhibited by Amytal and Dicumarol. 维生素K_3对ATP酶活力的这种抑制作用受Amytal抑制。
- Mechanoenzymes such as myosin, dynein, and kinesin interact with the cytoskeletal filaments and tubules to generate forces that cause movements. 机械酶,例如,肌球蛋白,动力蛋白,驱动蛋白与微丝,微管相互作用产生动力而引起细胞运动。
- Range extension caused by pulse compression is not well resolved in most automatic target position acquisition (ATPA) algorithms. 目前广泛应用的点迹提取算法都不能很好地解决由于脉冲压缩所引起的距离展宽问题。
- The structural model helps solve a scientific mystery: how the protein dynein fuels itself to perform cellular functions vital to life. 它也在细胞内膜细胞器(如线粒体,高尔基体)的运输中有重要功能,线粒体主要为细胞产生能量,而高尔基体则合成蛋白质。
- And that is also why I applied to be trained in ATPA for the third phase, though my major is not quiet fit to this area. 我不断用心去学,去想,去做好每一件事,去寻找和珍视每一个可以体验的机会。
- Keywords dynamitin;ATPase;dynactin;dynein;microtubules; ATP酶;动力蛋白激活蛋白;动力蛋白;微管;
- A heuristic genetic algorithm based on the ATPA(ATPAHGA, for short) is developed to solve the optimization model of DTCTPTSC_P2. 时间转换约束的引入并未改变传统DTCTP的解空间结构和规模,所以DTCTPTSC_P2解空间仍然随着项目活动数增加呈指数形式增长,论文设计了求解DTCTPTSC_P2模型的ATPAHGA算法。
- "One of the unknowns about dynein was that the molecular site where chemical energy is initially released from ATP is very far away from where the mechanical force occurs. Dokholyan博士说:“动力蛋白将三磷酸腺苷(ATP,细胞的主要能源)转化为机械力,但因为科学家缺乏对动力蛋白结构的全面而详细的了解,所以对转化的机制基本上不了解。
- Conclusion The mechanism of fluoride-resistant strain may not be the result of the variation of ATPase gene. 结论atp酶基因改变不是变链菌株耐氟突变的机制。
- The enzyme histochemical changes of massetermuscles and temporalis muscles fibers were analyzed by NADH-TR and ATPase staining. 进行咬肌和颞肌肌纤维烟酰胺腺嘌呤二核苷酸四唑还原酶(NADH-TR)和腺苷三磷酸酶(ATP酶)染色分析。
- The activities of SDH, CCO, LDH and Ca 2+ ATPase declined in the death case in the control group. 对照组 1例死亡 ,术前、术中、术后SDH、CCO、LDH、Ca2 + ATPase的活性显著降低。
- The activity of Ca ATPase on the ischemic side reduced to 28.32% and 35.8% after 2 and 4 weeks respectively. 术后2周 Ca- ATP酶活性比正常对照组下降 2 8.;32%25;术后 4周下降至 35
