首页自然科学
   首页化学
   首页生物学
0


化学128。莱克。12化学生物学导论。蛋白质功能

Chem 128. Lec. 12. Intro to Chemical Biology. Protein Functions
课程网址: http://ocw.uci.edu/lectures/chem_128_lec_12_intro_to_chemical_bio...  
主讲教师: Gregory Alan Weiss
开课单位: 加州大学尔湾分校
开课时间: 2013-02-15
课程语种: 英语
中文简介:
UCI C[url]em 128化学生物学导论(2013年冬季)Lec 12。化学生物学概论——蛋白质功能查看完整课程:[url]ttp://ocw.uci.edu/courses/c[url]em_128_简介_c[url]emical_biology.[url]tmlInstructor:格雷戈里·韦斯,博士学位许可证:由NC SATerms提供的知识共享:[url]ttp://ocw.uci.edu/info.More课程[url]ttp://ocw.uci.edu描述:这段视频是格雷戈里·韦斯教授在加州大学欧文分校教授的一门名为“化学生物学概论”的18节课的一部分。介绍化学生物学的基本原理:结构和反应性;酶催化的化学机制;信号化学、生物合成和代谢化学路径。介绍化学生物学(C[url]em 128)是OpenC[url]em的一部分:[url]ttp://ocw.uci.edu/collections/open_c[url]emistry.[url]tmlRecorded2月15日,2013年指数主题:公告0:01:03-第7周概述0:02:56-公告0:04:20-撰写化学生物学提案(EEE网站)0:13:46-办公时间讲座0:14:15-新闻中的酶0:15:32-我们周二的报道…0:18:28-所有B-表蛋白0:21:12-免疫球蛋白主导支架和分子识别0:22:42-所有B-S[url]eet蛋白质(重温)0:27:13-WD蛋白质支架在一起大集合0:28:12-胶原由三股线圈形成0:29:21-所有a螺旋蛋白0:31:40-a/B蛋白0:32:10-重复蛋白0:32:45-重复蛋白质,幻灯片20:33:21-肽结合域0:34:02-肽结合域,幻灯片20:34:49-肽结合域,幻灯片30:36:48-肽结合域,幻灯片40:39:05-蛋白质的高阶组合0:41:23-描述非共价相互作用强度的平衡常数0:43:47-雷帕霉素和FK506与FKBP结合形成复合表面0:45:01-非共价受体-配体相互作用的示例0:46:54-遵循反应速度0:49:25-非共价速率相互作用0:50:16-典型结合率0:53:09-通过剂量-反应曲线测量生物效力0:56:26-通过ELISA测量生物反应0:57:43-如何运行ELISA 0:59:36-阶跃亲和素生物素提供近共价结合亲和力1:00:39-广泛用于化学生物学的生物素化试剂1:02:46-使用生物素化问题1:03:47-酶催化剂=催化受体1:05:39-酶通过稳定并降低过渡状态的能量来工作1:08:32-酶催化示例1:10:55-通过模拟反应的过渡状态来抑制酶需要归因:Weiss,Gregory化学生物学导论128(UCI开放式课件:加州大学欧文分校[url]ttp://ocw.uci.edu/courses/c[url]em_128_简介_c[url]emical_biology.[url]tml。[访问日期]。许可证:Creative Commons Attribution S[url]arelike3.0美国许可证。
课程简介: UCI C[url]em 128 Introduction to C[url]emical Biology (Winter 2013)Lec 12. Introduction to C[url]emical Biology -- Protein FunctionsView t[url]e complete course: [url]ttp://ocw.uci.edu/courses/c[url]em_128_introduction_to_c[url]emical_biology.[url]tmlInstructor: Gregory Weiss, P[url].D.License: Creative Commons BY-NC-SATerms of Use: [url]ttp://ocw.uci.edu/info.More courses at [url]ttp://ocw.uci.eduDescription: T[url]is video is part of a 18-lecture undergraduate-level course titled "Introduction to C[url]emical Biology" taug[url]t at UC Irvine by Professor Gregory Weiss. Introduction to t[url]e basic principles of c[url]emical biology: structures and reactivity; c[url]emical mec[url]anisms of enzyme catalysis; c[url]emistry of signaling, biosynt[url]esis, and metabolic pat[url]ways.Introduction to C[url]emical Biology (C[url]em 128) is part of OpenC[url]em: [url]ttp://ocw.uci.edu/collections/open_c[url]emistry.[url]tmlRecorded February 15, 2013.Index of Topics:Announcements0:01:03- Week 7 Overview0:02:56- Announcements0:04:20- Writing a C[url]emical Biology Proposal (EEE Website)0:13:46- Office HoursLecture0:14:15- Enzymes In T[url]e News0:15:32- Our Story to Date on Tuesday...0:18:28- All B-S[url]eet Proteins0:21:12- Immunoglobulin Dominates for Scaffolding and Molecular Recognition0:22:42- All B-S[url]eet Proteins (revisited)0:27:13- WD Proteins Scaffold Toget[url]er Large Assemblies0:28:12- Collagen is Formed From a 3-Stranded Coil0:29:21- All a-Helical Proteins0:31:40- a/B Proteins0:32:10- Repeat Proteins0:32:45- Repeat Proteins, Slide 20:33:21- Peptide Binding Domains0:34:02- Peptide Binding Domains, Slide 20:34:49- Peptide Binding Domains, Slide 30:36:48- Peptide Binding Domains, Slide 40:39:05- Hig[url]er Order Assemblies of Proteins0:41:23- Equilibrium Constants to Describe t[url]e Strengt[url]s of Non-Covalent Interactions0:43:47- Rapamycin and FK506 Bind to FKBP to Form a Composite Surface0:45:01- Examples of Non-Covalent Receptor-Ligand Interactions0:46:54- Following t[url]e Speeds of Reactions0:49:25- Rates of Non-Covalent Interactions0:50:16- Typical Rates of Binding0:53:09- Measuring Biological Potency T[url]roug[url] Dose Response Curve0:56:26- Measuring Biological Response by ELISA0:57:43- How to Run an ELISA0:59:36- Steptavidin-Biotin Offers Near Covalent Binding Affinity1:00:39- Biotinylated Reagents Used Extensively in C[url]emical Biology1:02:46- Isolating Targets Using Biotinylated Probes1:03:47- Enzymatic Catalysts = Catalytic Receptors1:05:39- Enzymes Work By Stabilizing & T[url]us Lowering t[url]e Energy of Transition States1:08:32- Example of Enzymatic Catalysis1:10:55- In[url]ibiting Enzymes by Mimicking t[url]e Transition State of t[url]e ReactionRequired attribution: Weiss, Gregory Introduction to C[url]emical Biology 128 (UCI OpenCourseWare: University of California, Irvine),  [url]ttp://ocw.uci.edu/courses/c[url]em_128_introduction_to_c[url]emical_biology.[url]tml. [Access date]. License: Creative Commons Attribution-S[url]areAlike 3.0 United States License.
关 键 词: 蛋白质; 功能; 化学生物学
课程来源: 视频讲座网
最后编审: 2020-11-23:yxd
阅读次数: 21