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Lecture Molecular biology (Fifth Edition): Chapter 1 - Robert F. Weaver
Chapter 1 - A brief history. This chapter introduce to a brief history of molecular biology. Molecular biology grew out of the disciplines of genetics and biochemistry. In this chapter we will review the major early developments in the history of this hybrid discipline, beginning with the earliest genetic experiments performed by Gregor Mendel in the mid-nineteenth century.
22 p ntt 20/04/2016 292 1
Từ khóa: Molecular biology, Lecture Molecular biology, Sinh học phân tử, Bài giảng Sinh học phân tử, Mendel’s Laws, Transmission genetics, Mendel’s gene transmission
Lecture Molecular biology (Fifth Edition): Chapter 6 - Robert F. Weaver
Chapter 6 - The mechanism of transcription in bacteria. In this chapter we will focus on the basic mechanism of transcription. We will begin with RNA polymerase, the enzyme that catalyzes transcription. We will also look at the interaction between RNA polymerase and DNA.
55 p ntt 20/04/2016 284 1
Từ khóa: Molecular biology, Lecture Molecular biology, Sinh học phân tử, Bài giảng Sinh học phân tử, Mechanism of transcription, RNA polymerase structure
Lecture Molecular biology (Fifth Edition): Chapter 7 - Robert F. Weaver
In chapter 7 we will explore one strategy bacteria employ to control the expression of their genes: by grouping functionally related genes together so they can be regulated together easily. Such a group of contiguous, coordinately controlled genes is called an operon.
49 p ntt 20/04/2016 311 1
Từ khóa: Molecular biology, Lecture Molecular biology, Sinh học phân tử, Bài giảng Sinh học phân tử, Lac operon, Bacterial transcription
Lecture Molecular biology (Fifth Edition): Chapter 9 - Robert F. Weaver
Chapter 9: DNA-protein interactions in bacteria. The main contents of this chapter include all of the following: The λ family of repressors, the trp repressor, general considerations on Protein–DNA interactions, DNA-binding proteins: action at a distance,...and other contents.
21 p ntt 20/04/2016 291 1
Từ khóa: Molecular biology, Lecture Molecular biology, Sinh học phân tử, Bài giảng Sinh học phân tử, Amino acids, DNA-protein interactions
Lecture Molecular biology (Fifth Edition): Chapter 12 - Robert F. Weaver
The main contents of this chapter include all of the following: Categories of activators, structures of the DNA-Binding motifs of activators, independence of the domains of activators, functions of activators, interaction among activators, regulation of transcription factors.
53 p ntt 20/04/2016 320 1
Từ khóa: Molecular biology, Lecture Molecular biology, Sinh học phân tử, Bài giảng Sinh học phân tử, Transcription activators in eukaryotes, RNA polymerase II
Lecture Molecular biology (Fifth Edition): Chapter 10 - Robert F. Weaver
In chapter 6 we learned that bacteria have only one RNA polymerase, which makes all three of the familiar RNA types: mRNA, rRNA, and tRNA. In this chapter we will see that three distinct RNA polymerases occur in the nuclei of eukaryotic cells. Each of these is responsible for transcribing a separate set of genes, and each recognizes a different kind of promoter.
31 p ntt 20/04/2016 311 1
Từ khóa: Molecular biology, Lecture Molecular biology, Sinh học phân tử, Bài giảng Sinh học phân tử, Eukaryotic RNA polymerases, RNA polymerases
Lecture Molecular biology (Fifth Edition): Chapter 8 - Robert F. Weaver
Chapter 8 - Major shifts in bacterial transcription. In this chapter, students will be able to understand: Sigma factor switching, the RNA polymerase encoded in phage T7, infection of E. coli by phage λ,...and another contents.
40 p ntt 20/04/2016 302 1
Từ khóa: Molecular biology, Lecture Molecular biology, Sinh học phân tử, Bài giảng Sinh học phân tử, Bacterial transcription, Sigma factor switching
Lecture Molecular biology (Fifth Edition): Chapter 11 - Robert F. Weaver
Chapter 11 - general transcription factors in eukaryotes. Eukaryotic RNA polymerases, unlike their bacterial counterparts, are incapable of binding by themselves to their respective promoters. Instead, they rely on proteins called transcription factors to show them the way. Such factors are grouped into two classes: general transcription factors and gene-specifi c transcription factors (activators). In this chapter we will survey the general...
38 p ntt 20/04/2016 315 1
Từ khóa: Molecular biology, Lecture Molecular biology, Sinh học phân tử, Bài giảng Sinh học phân tử, Amino acids, Eukaryotic RNA polymerases
Lecture Molecular biology (Fifth Edition): Chapter 13 - Robert F. Weaver
Chapter 13 - Chromatin structure and its effects on transcription. In this chapter, we will look at the crucial relationship among activators, chromatin structure, and gene activity. This chapter presents the following content: Histones, nucleosomes, chromatin structure and gene activity.
40 p ntt 20/04/2016 301 1
Từ khóa: Molecular biology, Lecture Molecular biology, Sinh học phân tử, Bài giảng Sinh học phân tử, Chromatin structure, Nucleosome structure
Lecture Molecular biology (Fifth Edition): Chapter 14 - Robert F. Weaver
In chapter 14, we will see that most eukaryotic genes, in contrast to typical bacterial genes, are interrupted by noncoding DNA. RNA polymerase cannot distinguish the coding region of the gene from the noncoding regions, so it transcribes everything.
47 p ntt 20/04/2016 280 1
Từ khóa: Molecular biology, Lecture Molecular biology, Sinh học phân tử, Bài giảng Sinh học phân tử, Messenger RNA processing I, Genes in pieces
Lecture Molecular biology (Fifth Edition): Chapter 15 - Robert F. Weaver
Chapter 15 - RNA Processing II: Capping and Polyadenylation. Besides splicing, eukaryotic cells perform several other kinds of processing on their RNAs. Messenger RNAs are subject to two kinds of processing, known as capping and polyadenylation. In capping, a special blocking nucleotide (a cap) is added to the 59-end of a pre-mRNA. In polyadenylation, a string of AMPs (poly[A]) is added to the 39-end of the pre-mRNA. These steps are essential...
31 p ntt 20/04/2016 296 1
Từ khóa: Molecular biology, Lecture Molecular biology, Sinh học phân tử, Bài giảng Sinh học phân tử, RNA Processing II, Cap structure
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