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The NtrC-like AAA+ ATPases control virulence and other important bacterial activities through delivering mechanical work to σ54-RNA polymerase to activate transcription from σ54-dependent genes. We report the first crystal structure for such an ATPase, NtrC1 of Aquifex aeolicus, in which the catalytic arginine engages the γ-phosphate of ATP. Comparing the new structure with those previously known for apo and ADP-bound states supports a rigid-body displacement model that is consistent with large-scale conformational changes observed by low-resolution methods. First, the arginine finger induces rigid-body roll, extending surface loops above the plane of the ATPase ring to bind σ54. Second, ATP hydrolysis permits Pi release and retraction of the arginine with a reversed roll, remodeling σ54-RNAP. This model provides a fresh perspective on how ATPase subunits interact within the ring-ensemble to promote transcription, directing attention to structural changes on the arginine-finger side of an ATP-bound interface.
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http://dx.doi.org/10.1016/j.str.2010.08.018 | DOI Listing |
Sexually reproducing organisms make haploid gametes-oocytes and spermatocytes-that combine during fertilization to make an embryo. While both gametes contain similar DNA content, oocytes con-tain the bulk of the cytoplasm including maternally supplied mRNAs and proteins required prior to zygotic gene activation. RNA-binding proteins are key regulators of these maternal transcripts.
View Article and Find Full Text PDFNat Commun
July 2025
Laboratory of Biochemistry and Genetics, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD, USA.
Hsp90 is a highly conserved ATP-dependent molecular chaperone that forms a clamp around client proteins. The role of ATP in Hsp90 function is unclear since cell viability requires ATP binding, but not hydrolysis. Here, we present findings that support our hypothesis that after ATP binds, the γ phosphate repositions in a regulated manner to interact with a conserved arginine (R380) and stabilize the closed clamp.
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July 2025
Oncode Institute, Utrecht, Netherlands.
Zinc finger proteins (ZNFs) are the largest family of transcription factors, yet how they activate gene expression remains unclear. In this study, we identified Zincore, a protein complex consisting of QRICH1 and SEPHS1, as a ZNF-specific coregulator essential for embryonic development in mice and associated with developmental syndromes in humans. We also identified ZFP91 as a representative Zincore client, binding the conserved promoter motif CTTTAAR.
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June 2025
Department of Histology and Embryology, Hacettepe University Faculty of Medicine, 06230 Ankara, Turkey.
Background: Primary ciliary dyskinesia (PCD) is a rare genetic disorder characterized by recurrent sinopulmonary infections due to motile cilia defects. The disease is genetically heterogeneous, with abnormalities in structural ciliary proteins. Zinc finger MYND-type containing 10 (ZMYND10) is essential for the assembly of outer dynein arms (ODA), with chaperones like Glucose-regulated protein 78 (GRP78) facilitating protein folding.
View Article and Find Full Text PDFACS Catal
March 2025
Departamento de Química Física, Universidad de Valencia, 46100 Burjassot, Spain.
We present a systematic evaluation of different possible reaction mechanisms for GTP hydrolysis in RhoA, a member of the Ras superfamily of enzymes that uses this reaction to switch from an active to an inactive conformation. These enzymes are activated by the presence of a GTPase activating protein (or GAP) that forms an intimate complex with residues of the two proteins present in the active site. We have explored the multidimensional reactional free energy landscape in the active site of the complex formed by RhoA and p50RhoGAP.
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