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Nasef, M. O.

Publications and source records attributed to Nasef, M. O..

2 recordsLinked to original sources

Cleavage of Streptococcus pneumoniae ribosomal protein L27 by the Prp protease

Streptococcus pneumoniae is one of the most important human respiratory pathogens worldwide. The increase in antibiotic resistance in S. pneumoniae and other pathogens is a significant public health concern. The streptococcal 70S ribosome is a prime target for antibiotics. Ribosomal protein L27 reaches into the peptidyl transferase center with its extended N-terminus and may be involved in the translation process. We have shown that L27 in Firmicutes, including staphylococci and streptococci, has an additional 9-12 amino acid N-terminal extension compared to Gram-negative organisms like Escherichia coli. The extension is cleaved by a protease called Prp that is absent from organisms that lack the extension. In S. aureus, Prp and the N-terminal extension of L27 are essential. Here, we have characterized the cleavage of L27 by Prp in S. pneumoniae. Prp forms dimers that efficiently cleave L27 in vitro. An inactive form of Prp (PrpC34S) binds to L27 without cleaving, whereas L27 with a mutation (F12A) of the cleavage site does not bind Prp. Overexpression of PrpC34S in vivo is detrimental to S. pneumoniae growth. Surprisingly, a S. pneumoniae {Delta}prp strain was viable, apparently due to cleavage of L27 by another, unknown protease. Unlike in S. aureus, a mutant strain lacking the N-terminal extension of L27 was viable, but showed impaired growth. Our study sheds light on a process that could be exploited for novel antibiotics, but emphasizes important differences between streptococci and staphylococci. HIGHLIGHTSO_LIRibosomal protein L27 in S. pneumoniae is N-terminally processed by Prp protease C_LIO_LIA S. pneumoniae {Delta}prp mutant is viable, but exhibits impaired growth C_LIO_LICleavage of L27 is required for viability, but the N-terminal extension is not essential C_LIO_LIIn the absence of Prp, L27 is processed by another protease. C_LIO_LIThere are distinct differences in the role of Prp between S. aureus and S. pneumoniae. C_LI

microbiology↗

Structure of the portal complex from Staphylococcus aureus Pathogenicity Island 1 transducing particles in situ and in solution

Staphylococcus aureus is an important human pathogen, and the prevalence of antibiotic resistance is a major public health concern. The evolution of pathogenicity and resistance in S. aureus often involves acquisition of mobile genetic elements (MGEs). Bacteriophages play an especially important role, since transduction represents the main mechanism for horizontal gene transfer. S. aureus pathogenicity islands (SaPIs), including SaPI1, are MGEs that carry genes encoding virulence factors, and are mobilized at high frequency through interactions with specific "helper" bacteriophages, such as 80, leading to packaging of the SaPI genomes into virions made from structural proteins supplied by the helper. Among these structural proteins is the portal protein, which forms a ring-like portal at a fivefold vertex of the capsid, through which the DNA is packaged during virion assembly and ejected upon infection of the host. We have used high- resolution cryo-electron microscopy to determine structures of the S. aureus bacteriophage 80 portal in solution and in situ in the empty and full SaPI1 virions, and show how the portal interacts with the capsid. These structures provide a basis for understanding portal and capsid assembly and the conformational changes that occur upon DNA packaging and ejection.

microbiology↗