File | Title | Manuscript Id |
Chapter Introduction | lodish8e_ch10_1.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_1_dlap.xml | 572b8a8b757a2ea731000001 |
10.1 Processing of Eukaryotic Pre-mRNA
| lodish8e_ch10_2.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_2_dlap.xml | 572b8a8b757a2ea731000001 |
The 5′ Cap Is Added to Nascent RNAs Shortly After Transcription Initiation
| lodish8e_ch10_3.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_3_dlap.xml | 572b8a8b757a2ea731000001 |
A Diverse Set of Proteins with Conserved RNA-Binding Domains Associate with Pre-mRNAs
| lodish8e_ch10_4.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_4_dlap.xml | 572b8a8b757a2ea731000001 |
Splicing Occurs at Short, Conserved Sequences in Pre-mRNAs via Two Transesterification Reactions
| lodish8e_ch10_5.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_5_dlap.xml | 572b8a8b757a2ea731000001 |
During Splicing, snRNAs Base-Pair with Pre-mRNA
| lodish8e_ch10_6.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_6_dlap.xml | 572b8a8b757a2ea731000001 |
Spliceosomes, Assembled from snRNPs and a Pre-mRNA, Carry Out Splicing
| lodish8e_ch10_7.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_7_dlap.xml | 572b8a8b757a2ea731000001 |
Chain Elongation by RNA Polymerase II Is Coupled to the Presence of RNA-Processing Factors
| lodish8e_ch10_8.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_8_dlap.xml | 572b8a8b757a2ea731000001 |
SR Proteins Contribute to Exon Definition in Long Pre-mRNAs
| lodish8e_ch10_9.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_9_dlap.xml | 572b8a8b757a2ea731000001 |
Self-Splicing Group II Introns Provide Clues to the Evolution of snRNAs
| lodish8e_ch10_10.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_10_dlap.xml | 572b8a8b757a2ea731000001 |
3′ Cleavage and Polyadenylation of Pre-mRNAs Are Tightly Coupled
| lodish8e_ch10_11.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_11_dlap.xml | 572b8a8b757a2ea731000001 |
Nuclear Exoribonucleases Degrade RNA That Is Processed Out of Pre-mRNAs
| lodish8e_ch10_12.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_12_dlap.xml | 572b8a8b757a2ea731000001 |
RNA Processing Solves the Problem of Pervasive Transcription of the Genome in Metazoans
| lodish8e_ch10_13.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_13_dlap.xml | 572b8a8b757a2ea731000001 |
Key Concepts of Section 10.1 | lodish8e_ch10_14.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_14_dlap.xml | 572b8a8b757a2ea731000001 |
10.2 Regulation of Pre-mRNA Processing
| lodish8e_ch10_15.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_15_dlap.xml | 572b8a8b757a2ea731000001 |
Alternative Splicing Generates Transcripts with Different Combinations of Exons
| lodish8e_ch10_16.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_16_dlap.xml | 572b8a8b757a2ea731000001 |
A Cascade of Regulated RNA Splicing Controls Drosophila Sexual Differentiation
| lodish8e_ch10_17.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_17_dlap.xml | 572b8a8b757a2ea731000001 |
Splicing Repressors and Activators Control Splicing at Alternative Sites
| lodish8e_ch10_18.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_18_dlap.xml | 572b8a8b757a2ea731000001 |
RNA Editing Alters the Sequences of Some Pre-mRNAs
| lodish8e_ch10_19.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_19_dlap.xml | 572b8a8b757a2ea731000001 |
Key Concepts of Section 10.2 | lodish8e_ch10_20.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_20_dlap.xml | 572b8a8b757a2ea731000001 |
10.3 Transport of mRNA Across the Nuclear Envelope
| lodish8e_ch10_21.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_21_dlap.xml | 572b8a8b757a2ea731000001 |
Phosphorylation and Dephosphorylation of SR Proteins Imposes Directionality on mRNP Export Across the Nuclear Pore Complex
| lodish8e_ch10_22.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_22_dlap.xml | 572b8a8b757a2ea731000001 |
Balbiani Rings in Insect Larval Salivary Glands Allow Direct Visualization of mRNP Export Through NPCs
| lodish8e_ch10_23.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_23_dlap.xml | 572b8a8b757a2ea731000001 |
Pre-mRNAs in Spliceosomes Are Not Exported from the Nucleus
| lodish8e_ch10_24.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_24_dlap.xml | 572b8a8b757a2ea731000001 |
HIV Rev Protein Regulates the Transport of Unspliced Viral mRNAs
| lodish8e_ch10_25.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_25_dlap.xml | 572b8a8b757a2ea731000001 |
Key Concepts of Section 10.3 | lodish8e_ch10_26.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_26_dlap.xml | 572b8a8b757a2ea731000001 |
10.4 Cytoplasmic Mechanisms of Post-transcriptional Control
| lodish8e_ch10_27.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_27_dlap.xml | 572b8a8b757a2ea731000001 |
Degradation of mRNAs in the Cytoplasm Occurs by Several Mechanisms
| lodish8e_ch10_28.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_28_dlap.xml | 572b8a8b757a2ea731000001 |
Adenines in mRNAs and lncRNAs May Be Post-transcriptionally Modified by N6 Methylation
| lodish8e_ch10_29.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_29_dlap.xml | 572b8a8b757a2ea731000001 |
Micro-RNAs Repress Translation and Induce Degradation of Specific mRNAs
| lodish8e_ch10_30.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_30_dlap.xml | 572b8a8b757a2ea731000001 |
Alternative Polyadenylation Increases miRNA Control Options
| lodish8e_ch10_31.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_31_dlap.xml | 572b8a8b757a2ea731000001 |
RNA Interference Induces Degradation of Precisely Complementary mRNAs
| lodish8e_ch10_32.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_32_dlap.xml | 572b8a8b757a2ea731000001 |
Cytoplasmic Polyadenylation Promotes Translation of Some mRNAs
| lodish8e_ch10_33.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_33_dlap.xml | 572b8a8b757a2ea731000001 |
Protein Synthesis Can Be Globally Regulated
| lodish8e_ch10_34.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_34_dlap.xml | 572b8a8b757a2ea731000001 |
Sequence-Specific RNA-Binding Proteins Control Translation of Specific mRNAs
| lodish8e_ch10_35.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_35_dlap.xml | 572b8a8b757a2ea731000001 |
Surveillance Mechanisms Prevent Translation of Improperly Processed mRNAs
| lodish8e_ch10_36.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_36_dlap.xml | 572b8a8b757a2ea731000001 |
Localization of mRNAs Permits Production of Proteins at Specific Regions Within the Cytoplasm
| lodish8e_ch10_37.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_37_dlap.xml | 572b8a8b757a2ea731000001 |
Key Concepts of Section 10.4 | lodish8e_ch10_38.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_38_dlap.xml | 572b8a8b757a2ea731000001 |
10.5 Processing of rRNA and tRNA
| lodish8e_ch10_39.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_39_dlap.xml | 572b8a8b757a2ea731000001 |
Pre-rRNA Genes Function as Nucleolar Organizers
| lodish8e_ch10_40.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_40_dlap.xml | 572b8a8b757a2ea731000001 |
Small Nucleolar RNAs Assist in Processing Pre-rRNAs
| lodish8e_ch10_41.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_41_dlap.xml | 572b8a8b757a2ea731000001 |
Self-Splicing Group I Introns Were the First Examples of Catalytic RNA
| lodish8e_ch10_42.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_42_dlap.xml | 572b8a8b757a2ea731000001 |
Pre-tRNAs Undergo Extensive Modification in the Nucleus
| lodish8e_ch10_43.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_43_dlap.xml | 572b8a8b757a2ea731000001 |
Nuclear Bodies Are Functionally Specialized Nuclear Domains
| lodish8e_ch10_44.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_44_dlap.xml | 572b8a8b757a2ea731000001 |
Key Concepts of Section 10.5 | lodish8e_ch10_45.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_45_dlap.xml | 572b8a8b757a2ea731000001 |
Key Terms
| lodish8e_ch10_46.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_46_dlap.xml | 572b8a8b757a2ea731000001 |
Review the Concepts
| lodish8e_ch10_47.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_47_dlap.xml | 572b8a8b757a2ea731000001 |
Extended References
| lodish8e_ch10_48.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_48_dlap.xml | 572b8a8b757a2ea731000001 |
Perspectives for the Future
| lodish8e_ch10_49.html | 572b8a8b757a2ea731000001 |
DLAP questions | lodish8e_ch10_49_dlap.xml | 572b8a8b757a2ea731000001 |