Publications by authors named "J C Rife"

Background: Daily physiologic loading causes fluctuations in hydration of the intervertebral disc (IVD); thus, the embedded cells experience cyclic alterations to their osmotic environment. These osmotic fluctuations have been described as a mechanism linking mechanics and biology, and have previously been shown to promote biosynthesis in chondrocytes. However, this phenomenon has yet to be fully interrogated in the IVD.

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Caterpillars show a remarkable ability to get around in complex environments (e.g. tree branches).

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The gene orfX is conserved among all staphylococci, and its complete sequence is maintained upon insertion of the staphylococcal chromosome cassette mec (SCCmec) genomic island, containing the gene encoding resistance to β-lactam antibiotics (mecA), into its C terminus. The function of OrfX has not been determined. We show that OrfX was constitutively produced during growth, that orfX could be inactivated without altering bacterial growth, and that insertion of SCCmec did not alter gene expression.

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Article Synopsis
  • KsgA methyltransferase is essential for ribosome biogenesis across all life forms and may be targeted for antimicrobial drugs.
  • In Staphylococcus aureus, ksgA deletion caused cold-sensitive growth and increased sensitivity to aminoglycoside antibiotics, though it wasn't as crucial for ribosome production as in E. coli.
  • The study highlights differences between Gram-positive and Gram-negative organisms regarding KsgA function, particularly noting the varying impacts of a catalytically inactive KsgA mutant.
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The assembly of the ribosomal subunits is facilitated by ribosome biogenesis factors. The universally conserved methyltransferase KsgA modifies two adjacent adenosine residues in the 3'-terminal helix 45 of the 16 S ribosomal RNA (rRNA). KsgA recognizes its substrate adenosine residues only in the context of a near mature 30S subunit and is required for the efficient processing of the rRNA termini during ribosome biogenesis.

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