简介:目的:构建带Myc标签的LC3B—PLA2基因的真核表达质粒,获得LC3B—PLA2融合蛋白,并应用LC3B—PLA2研究Atg4B对LC3B的切割作用。方法:以本实验室保存的乳腺文库为模板,PCR扩增获得LCgB序列,与PLA2G]O拼接后插入pCMV—Myc载体,用构建的重组质粒转染HEK293T细胞,Western印迹检测融合蛋白的表达,用LC3B—PLA2与Atg4B共转染的方法检测Atg4B对LC3B的切割作用。结果:菌液PCR、重组质粒双酶切及测序均表明重组质粒构建成功,Western印迹结果表明融合蛋白在HEK293T细胞中获得表达,LC3B—PLA2真核表达蛋白能够应用于Atg4B对LC3B切割作用的研究。结论:构建了pCMV—Myc—LC3B—PLA2真核表达质粒,LC3B—PLA2融合蛋白在Atg4B对LC3B切割作用的研究中至关重要,为进一步研究Atg4B在自噬过程中的作用奠定了基础。
简介:AbstractStroke is a devastating disease that occurs when a blood vessel in the brain is either blocked or ruptured, consequently leading to deficits in neurological function. Stroke consistently ranked as one of the top causes of mortality, and with the mean age of incidence decreasing, there is renewed interest to seek novel therapeutic treatments. The Scavenger Receptor Class B type 1 (SR-B1) is a multifunctional protein found on the surface of a variety of cells. Research has found that that SR-B1 primarily functions in an anti-inflammatory and antiatherosclerotic capacity. In this review, we discuss the characteristics of SR-B1 and focus on its potential correlation with the modifiable risk factors of stroke. SR-B1 likely has an impact on stroke through its interaction with smoking, diabetes mellitus, diet, physical inactivity, obesity, hypercholesterolemia, atherosclerosis, coronary heart disease, hypertension, and sickle cell disease, all of which are critical risk factors in the pathogenesis of stroke.
简介:本真空控制保护系统是为北京同步辐射装置(BSRF)上的3W1高功率(总功率为2.54W)扭摆磁铁(Wiggler)光束线(包括前端区、3W1A和3W1B)而设计和建造的。主要建造目的是,保护北京正负电子对撞机(BEPC)电子储存环的超高真空系统和其它光束线不要受到在某一条光束线上突然发生的灾难性真空事故的破坏,以及保护无水冷却和冷却水意外中断了的光束线部件不要被扭摆磁铁发射出来的高功率同步辐射所损坏。此外,在活动水冷挡光罩关闭之前,为了防止快速阀的阀板因过热而被损坏,在快速阀中使用了一种熔点温度为1680℃的钛合金阀板。为了给扭摆磁铁光束线提供一个可靠的真空控制保护系统,系统设计是以F1-60MR型可编程序控制器(PLC)为基础的,PLC负责管理系统的状态监测、真空联锁、控制、自动记录和故障报警等。本文叙述了系统的设计。