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1. Specificity of the Hox member Deformed is determined by transcription factor levels and binding site affinities.

2. Single-cell RNA sequencing of motoneurons identifies regulators of synaptic wiring in Drosophila embryos.

3. Twist regulates Yorkie activity to guide lineage reprogramming of syncytial alary muscles.

4. The Hox transcription factor Ultrabithorax binds RNA and regulates co-transcriptional splicing through an interplay with RNA polymerase II.

5. Hox dosage contributes to flight appendage morphology in Drosophila.

6. The Hox Transcription Factor Ubx Ensures Somatic Myogenesis by Suppressing the Mesodermal Master Regulator Twist.

7. Multi-level and lineage-specific interactomes of the Hox transcription factor Ubx contribute to its functional specificity.

8. The Hox transcription factor Ubx stabilizes lineage commitment by suppressing cellular plasticity in Drosophila .

9. Identification of the essential protein domains for Mib2 function during the development of the Drosophila larval musculature and adult flight muscles.

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