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Smirnova, A.

Publications and source records attributed to Smirnova, A..

2 recordsLinked to original sources

Disparities in information on Long-Acting Reversible Contraceptives available to college students on student health center websites in USA

Long Acting Reversible Contraceptive (LARC) methods are among the most effective birth control approaches for adolescent and young adults yet information on these methods is not widespread. We examine LARC information provided by Student Health Centers (SHC) websites from Universities across the USA to document disparities in access to information on these important contraception methods for college students. We find that compared to EC, Condoms, (plus Pap smear as control), LARC is mentioned less frequently than the others and 73% of schools have no LARC content on their SHC websites. There is no standardization in how the sexual and reproductive health information is organized on SHC websites, which might hinder access. When LARC information does exist, readability and accessibility vary. Universities having high rates of the student body who are African American or female are less likely to provide LARC information on their SHC website and universities situated in more rural settings are less likely to post LARC information on their websites.

scientific communication and education

YBEY is an essential biogenesis factor for mitochondrial ribosomes

Ribosome biogenesis requires numerous trans-acting factors, some of which are deeply conserved. In Bacteria, the endoribonuclease YbeY is believed to be involved in 16S rRNA 3-end processing and its loss was associated with ribosomal abnormalities. In Eukarya, YBEY appears to generally localize to mitochondria (or chloroplasts). Here we show that the deletion of human YBEY results in a severe respiratory deficiency and morphologically abnormal mitochondria as an apparent consequence of impaired mitochondrial translation. Reduced stability of 12S rRNA and the deficiency of several proteins of the small ribosomal subunit in YBEY knockout cells pointed towards a defect in mitochondrial ribosome biogenesis. The specific interaction of mitoribosomal protein uS11m with YBEY suggests that the latter recruits uS11m to the nascent small subunit in its late assembly stage. This scenario shows similarities with final stages of cytosolic ribosome biogenesis, and may represent a late checkpoint before the mitoribosome engages in translation.

molecular biology