Structural Basis for the SOX-Dependent Genomic Redistribution of OCT4 in Stem Cell Differentiation

التفاصيل البيبلوغرافية
العنوان: Structural Basis for the SOX-Dependent Genomic Redistribution of OCT4 in Stem Cell Differentiation
المؤلفون: Ralf Jauch, Hans R. Schöler, Vlad Cojocaru, Veeramohan Veerapandian, Felipe Merino, Calista Keow Leng Ng
المصدر: Structure. 22:1274-1286
بيانات النشر: Elsevier BV, 2014.
سنة النشر: 2014
مصطلحات موضوعية: animal structures, Cellular differentiation, Molecular Sequence Data, Mutant, Cooperativity, Plasma protein binding, Molecular Dynamics Simulation, Biology, Mice, chemistry.chemical_compound, SOX2, Structural Biology, HMGB Proteins, Consensus Sequence, SOXF Transcription Factors, Consensus sequence, Animals, Protein Interaction Domains and Motifs, Amino Acid Sequence, Molecular Biology, Peptide sequence, reproductive and urinary physiology, Genetics, Base Sequence, SOXB1 Transcription Factors, Stem Cells, fungi, Cell Differentiation, DNA, Cell biology, chemistry, embryonic structures, Thermodynamics, biological phenomena, cell phenomena, and immunity, Hydrophobic and Hydrophilic Interactions, Octamer Transcription Factor-3, Protein Binding
الوصف: Summary In pluripotent cells, OCT4 associates with SOX2 to maintain pluripotency or with SOX17 to induce primitive endoderm commitment. The OCT4-SOX2 and OCT4-SOX17 combinations bind mutually exclusive to two distinct composite DNA elements, known as the "canonical" and "compressed" motifs, respectively. The structural basis for the OCT4-SOX17 cooperativity is unknown. Whereas SOX17 has been engineered to replace SOX2 in the pluripotency circuitry, all generated SOX2 mutants have failed to act like SOX17. From molecular simulations, we revealed the OCT4-SOX17 interaction interface and elucidated the SOX-dependent motif preference of OCT4. Moreover, we designed a SOX2 mutant that we predicted and confirmed experimentally to bind cooperatively with OCT4 to the compressed motif. Ultimately, we found a strong correlation between the experimental and calculated relative cooperative-binding free energies of 12 OCT4-SOX-DNA complexes. Therefore, we validated the OCT4-SOX interfaces and demonstrated that in silico design of DNA-binding cooperativity is suitable for altering transcriptional circuitries.
تدمد: 0969-2126
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::b619acba7443166aef10d14d1e9b81feTest
https://doi.org/10.1016/j.str.2014.06.014Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....b619acba7443166aef10d14d1e9b81fe
قاعدة البيانات: OpenAIRE