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基于化學小分子探針的信號轉導過程研究 版權信息
- ISBN:9787308227575
- 條形碼:9787308227575 ; 978-7-308-22757-5
- 裝幀:一般膠版紙
- 冊數:暫無
- 重量:暫無
- 所屬分類:>
基于化學小分子探針的信號轉導過程研究 內容簡介
本書為“中國基礎研究報告”叢書《基于化學小分子探針的信號轉導過程研究》英文版,基于重大研究計劃“基于化學小分子探針的信號轉導過程研究”的研究成果寫作完成。該重大研究計劃歷時8年,資助總經費20000萬元,極大地促進了化學與生物、材料等的多學科交叉融合,促進了我國化學生物學研究領域的多方向拓展,很大程度上促進了我國化學生物學學科的發展,培養了一支化學生物學隊伍,并使我國化學生物學研究逐漸在國際上有自己的聲音。本書介紹了我國化學生物學研究狀況及本重大研究計劃實施情況。
基于化學小分子探針的信號轉導過程研究 目錄
Chapter 1 Project Overview
1.1 Introduction
1.1.1 Arrangement and Comprehensive Integration
1.1.2 Interdisciplinary Cooperation
1.2 Research Overview
1.2.1 Overall Scientific Objectives
1.2.2 Key Scientific Issues
1.3 Significant Progress
1.3.1 Development of Small Molecule Probes ()300 Types) Based on Natural Products and Chemical and Biological Synthesis, and Discovery of Multiple “Star Molecules
1.3.2 Development of Special Techniques and Frontier Analysis Methods of Chemical Biology Including the Bioorthogonal
Reaction and Single Molecule/Cell Detection
1.3.3 Elucidation of Key Signal Transduction Processes Including Cell Reprogramming, Glycolipid Metabolism, Cell Apoptosis, and
Wnt Signaling Pathways
1.3.4 Discovery of New Targets and Lead Compounds for Infectious, Metabolic, and Inflammatory Diseases, and Tumors
Chapter 2 Domestic and Foreign Research
2.1 Thriving of "Small-Molecule Intervention"
2.1.1 Diversity-Oriented Functional Compound Library
2.1.2 Early Exploration of Drug Discovery
2.2 Extensive Introduction of Biomolecular "Unnatural Analogues"
2.3 Extension of Exogenous Chemical Reactions to Living Systems
2.4 Efficient Chemical Synthesis of Biomacromolecules
2.5 Rapid Advances in Biological Detection Technologies
2.5.1 Bioimaging
2.5.2 Chemical Proteomics
2.5.3 Chemical Modifications of Nucleic Acids and Next-Generation Sequencing Technologies
2.5.4 Single Molecule Detection and Single Cell Analysis
2.6 Research on Biology-Directed Scientific Problems
Chapter 3 Major Research Achievements
3.1 Specific Regulation Technologies Targeting Proteins in Cellular Signal Transduction
3.1.1 New Technology Targeting Protein Kinase—Chemical Decaging
3.1.2 Light-Controlled Protein Probes Targeting Immune Cell Activation
3.1.3 Near-Infrared Light-Controlled Activation Targeting Cell Surface Receptors
3.1.4 Probes for the Generation and Degradation of Target Proteins
3.1.5 Ultra-Bright Photoactivatable Fluorescent Proteins
3.2 Investigations on the Roles of Nucleic Acids in Signal Transduction Processes Utilizing Small Chemical Probes
3.2.1 Studies on Signal Transduction Regulation Based on the Ligands of Quadruplex Nucleic Acids
3.2.2 Regulation Based on Modified Nucleic Acids and Noncanonical Nucleic Acid Structures
3.3 Revealing New Mechanisms of Cell Signal Transduction Processes with Active Natural Products as Probes
3.3.1 Discovery of Anti-Leukemic Active Compounds
3.3.2 Discovery of Adenanthin T Discovery of Adenanthin Targeting Peroxiredoxin I /Ⅱ
3.3.3 Signaling Pathways of Adenanthin Targeting Prx I / II to Induce AML Cell Differentiation
3.3.4 Discovery of New Compounds Inducing AML Cell Differentiation with Prx I as a Target
3.3.5 Extended Research on the Antitumor Effect of Adenanthin Targeting Prx I /Ⅱ
3.3.6 Regulation Mechanism of Wnt Signaling and Apoptosis Pathways by the Natural Product Diterpenoid S-
3.4 Investigations on Regulation Mechanisms of Glycolipid Metabolism via Small-Molecule Probes
3.4.1 Cholesterol Transport Through Lysosome-Peroxisome Membrane Contacts
3.4.2 Negative Regulation Mechanism of Cholesterol Synthesis Metabolism and Molecular Pathway of Intestinal Absorption of
Cholesterol
3.4.3 Exploration of Endoplasmic Reticulum Stress and Glycolipid Metabolism and Discovery of Important Regulatory Active
Small Molecules
3.5 Discovery and Validation of Drug Targets and Lead Compounds Based on Signal Transduction Processes
3.5.1 Discovery and Functional Validation of Targets and Design of Lead Compounds for Antitumor Drugs
3.5.2 Discovery and Validation of a New Target for Anti-Inflammatory Drugs
3.5.3 Studies of Targets in the RNA Epigenetic Signal Transduction Pathways
3.5.4 Discovery of New Sites and Functions of the Drug Target
1.1 Introduction
1.1.1 Arrangement and Comprehensive Integration
1.1.2 Interdisciplinary Cooperation
1.2 Research Overview
1.2.1 Overall Scientific Objectives
1.2.2 Key Scientific Issues
1.3 Significant Progress
1.3.1 Development of Small Molecule Probes ()300 Types) Based on Natural Products and Chemical and Biological Synthesis, and Discovery of Multiple “Star Molecules
1.3.2 Development of Special Techniques and Frontier Analysis Methods of Chemical Biology Including the Bioorthogonal
Reaction and Single Molecule/Cell Detection
1.3.3 Elucidation of Key Signal Transduction Processes Including Cell Reprogramming, Glycolipid Metabolism, Cell Apoptosis, and
Wnt Signaling Pathways
1.3.4 Discovery of New Targets and Lead Compounds for Infectious, Metabolic, and Inflammatory Diseases, and Tumors
Chapter 2 Domestic and Foreign Research
2.1 Thriving of "Small-Molecule Intervention"
2.1.1 Diversity-Oriented Functional Compound Library
2.1.2 Early Exploration of Drug Discovery
2.2 Extensive Introduction of Biomolecular "Unnatural Analogues"
2.3 Extension of Exogenous Chemical Reactions to Living Systems
2.4 Efficient Chemical Synthesis of Biomacromolecules
2.5 Rapid Advances in Biological Detection Technologies
2.5.1 Bioimaging
2.5.2 Chemical Proteomics
2.5.3 Chemical Modifications of Nucleic Acids and Next-Generation Sequencing Technologies
2.5.4 Single Molecule Detection and Single Cell Analysis
2.6 Research on Biology-Directed Scientific Problems
Chapter 3 Major Research Achievements
3.1 Specific Regulation Technologies Targeting Proteins in Cellular Signal Transduction
3.1.1 New Technology Targeting Protein Kinase—Chemical Decaging
3.1.2 Light-Controlled Protein Probes Targeting Immune Cell Activation
3.1.3 Near-Infrared Light-Controlled Activation Targeting Cell Surface Receptors
3.1.4 Probes for the Generation and Degradation of Target Proteins
3.1.5 Ultra-Bright Photoactivatable Fluorescent Proteins
3.2 Investigations on the Roles of Nucleic Acids in Signal Transduction Processes Utilizing Small Chemical Probes
3.2.1 Studies on Signal Transduction Regulation Based on the Ligands of Quadruplex Nucleic Acids
3.2.2 Regulation Based on Modified Nucleic Acids and Noncanonical Nucleic Acid Structures
3.3 Revealing New Mechanisms of Cell Signal Transduction Processes with Active Natural Products as Probes
3.3.1 Discovery of Anti-Leukemic Active Compounds
3.3.2 Discovery of Adenanthin T Discovery of Adenanthin Targeting Peroxiredoxin I /Ⅱ
3.3.3 Signaling Pathways of Adenanthin Targeting Prx I / II to Induce AML Cell Differentiation
3.3.4 Discovery of New Compounds Inducing AML Cell Differentiation with Prx I as a Target
3.3.5 Extended Research on the Antitumor Effect of Adenanthin Targeting Prx I /Ⅱ
3.3.6 Regulation Mechanism of Wnt Signaling and Apoptosis Pathways by the Natural Product Diterpenoid S-
3.4 Investigations on Regulation Mechanisms of Glycolipid Metabolism via Small-Molecule Probes
3.4.1 Cholesterol Transport Through Lysosome-Peroxisome Membrane Contacts
3.4.2 Negative Regulation Mechanism of Cholesterol Synthesis Metabolism and Molecular Pathway of Intestinal Absorption of
Cholesterol
3.4.3 Exploration of Endoplasmic Reticulum Stress and Glycolipid Metabolism and Discovery of Important Regulatory Active
Small Molecules
3.5 Discovery and Validation of Drug Targets and Lead Compounds Based on Signal Transduction Processes
3.5.1 Discovery and Functional Validation of Targets and Design of Lead Compounds for Antitumor Drugs
3.5.2 Discovery and Validation of a New Target for Anti-Inflammatory Drugs
3.5.3 Studies of Targets in the RNA Epigenetic Signal Transduction Pathways
3.5.4 Discovery of New Sites and Functions of the Drug Target
展開全部
基于化學小分子探針的信號轉導過程研究 作者簡介
張禮和,藥物化學家,中國科學院院士,北京大學醫學部藥學院教授。曾任國家自然科學基金委員會化學科學部主任。
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