Tetratricopeptide repeat
Top View
- Suppl Figure 1
- Folding and Stability of Ankyrin Repeats Control Biological Protein Function
- Complex Regulation of Repeat Domain Proteins
- Bioinformatic Analyses Implicate the Collaborating Meiotic Crossover͞chiasma Proteins Zip2, Zip3, and Spo22͞zip4 in Ubiquitin Labeling
- Disease-Related Single-Point Mutations Alter the Global Dynamics of a Tetratricopeptide (TPR) A-Solenoid Domain
- Inferring Repeat Protein Energetics from Evolutionary Information
- Supplementary Table 1 (For Doc)
- Heat Shock Proteins: Dynamic Biomolecules to Counter Plant Biotic and Abiotic Stresses
- A Designed High-Affinity Peptide That Hijacks Microtubule-Based Transport
- The Glomerular Transcriptome and a Predicted Protein–Protein Interaction Network
- The FKBP4 Gene, Encoding a Regulator of the Androgen Receptor Signaling Pathway, Is a Novel Candidate Gene for Androgen Insensitivity Syndrome
- The Effect of Mutations in the TPR and Ankyrin Families of Alpha Solenoid Repeat Proteins
- The Folding and Design of Repeat Proteins: Reaching a Consensus Ewan RG Main Y, Sophie E Jacksony and Lynne Regan Z
- Structural Basis for Isoform-Specific Kinesin-1 Recognition of Y-Acidic
- CHIP Regulates Leucine-Rich Repeat Kinase-2 Ubiquitination, Degradation, and Toxicity
- Table SI. Phosphorylated Proteins Identified in Rats with Cancer-Induced Bone Pain
- The Light Chains of Kinesin-1 Are Autoinhibited
- Decreased Spikelets 4 Encoding a Novel Tetratricopeptide Repeat Domain-Containing Protein Is Involved in DNA Repair and Spikelet Number Determination in Rice