Publications by authors named "C Crucifix"

The ribosome maturation factor Rea1 (or Midasin) catalyses the removal of assembly factors from large ribosomal subunit precursors and promotes their export from the nucleus to the cytosol. Rea1 consists of nearly 5000 amino-acid residues and belongs to the AAA+ protein family. It consists of a ring of six AAA+ domains from which the ≈1700 amino-acid residue linker emerges that is subdivided into stem, middle and top domains.

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Article Synopsis
  • Chromatin structure plays a crucial role in regulating DNA processes like transcription, replication, and repair, with the human TIP60-EP400 complex (TIP60-C) being integral to this through its unique activities.
  • Unlike in yeast, where two separate complexes manage histone exchange and acetylation, humans have these functions combined in the TIP60-C, which has a distinctive three-lobed structure made up of parts similar to the yeast complexes.
  • Research shows that the human TIP60-C displays differences in its protein architecture and recruitment to chromatin compared to yeast, suggesting a more flexible, activator-based mechanism for its histone exchange activities.
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Histone acetylation regulates most DNA transactions and is dynamically controlled by highly conserved enzymes. The only essential histone acetyltransferase (HAT) in yeast, Esa1, is part of the 1-MDa NuA4 complex, which plays pivotal roles in both transcription and DNA-damage repair. NuA4 has the unique capacity to acetylate histone targets located several nucleosomes away from its recruitment site.

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Dynamin 2 mechanoenzyme is a key regulator of membrane remodeling and gain-of-function mutations in its gene cause centronuclear myopathies. Here, we investigate the functions of dynamin 2 isoforms and their associated phenotypes and, specifically, the ubiquitous and muscle-specific dynamin 2 isoforms expressed in skeletal muscle. In cell-based assays, we show that a centronuclear myopathy-related mutation in the ubiquitous but not the muscle-specific dynamin 2 isoform causes increased membrane fission.

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Cargo adaptors are crucial in coupling motor proteins with their respective cargos and regulatory proteins. BicD2 is a prominent example within the cargo adaptor family. BicD2 is able to recruit the microtubule motor dynein to RNA, viral particles, and nuclei.

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