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Biology subjects

Hecht, C. J. S.

Publications and source records attributed to Hecht, C. J. S..

2 recordsLinked to original sources

m6A depletion attenuates the macrophage type I interferon response

Macrophages play an important role in coordinating the antiviral response and post-transcriptional regulation of mRNA is an important element of the inflammatory gene expression required for defense against viral pathogens. N6-methyladenosine (m6A) deposition on mRNA by METTL3 constitutes one such post-transcriptional event which facilitates a cascade of downstream regulation via RNA decay and translation. We discovered that in THP1-derived and peripheral blood macrophages, m6A depletion with the METTL3 inhibitor STM2457 leads to enhanced proliferation of the human coronavirus OC43. Using TimeLapse-seq to comprehensively measure changes in abundance, RNA decay and transcription, we find that STM2457 downregulates the interferon response far upstream by reducing expression of both the type I interferon receptor and STAT1. We conclude that macrophages depend on m6A to support expression of interferon sensing machinery and in m6As absence, fail to mount as strong of a type I interferon response.

immunology↗

Human vault RNAs exhibit diverse expression patterns and inter-locus compensation

In 1986, a class of small, noncoding RNAs was discovered in association with an enormous, enigmatic ribonucleoprotein complex - the "vault" particle - and thus dubbed vault RNAs (vtRNAs). However, its since been recognized that the vast majority ([≥]95%) of these noncoding vtRNA molecules are not associated with the mysterious vaults, raising questions about their potential independent function(s). Moreover, humans express four vtRNAs from two different loci, and debate has arisen about whether the vtRNA paralogs share any functional connection, and whether they should remain classified together. Herein, we report the expression patterns of the four VTRNA paralogs in a variety of human cell lines, including various single- and multi-gene VTRNA-knockout cell lines. Knockout of one or more of the three VTRNA1 genes leads to increased expression of vtRNA2-1, suggesting that their biological functions are related. Additionally, we interrogated the effects of vtRNA knockout on HEK293T cell growth, viability, and viral infection, and were unable to replicate previously reported associations. Collectively, our findings point to a potential functional connection between even the most distantly related human vtRNA paralogs, while reaffirming that their biological roles and mechanisms still require critical study.

molecular biology↗