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Berenguer, J.

Publications and source records attributed to Berenguer, J..

3 recordsLinked to original sources

Tn-seq of Thermus thermophilus genome reveals unexpected tolerance to insertions in bacterial common essential genes.

A large library based on a Tn5 minitransposon carrying a thermostable kanamycin resistance gene was prepared using Thermus thermophilus HB27 genomic DNA as target. To increase the yield of transformants, DNA from the in vitro transposition reaction was amplified using isothermal multiple displacement amplification. The resulting product was first transformed into the high-transformation efficiency{Delta} addAB/ppol strain and then into a wild-type HB27 strain. Tn-seq analysis of the libraries showed that almost all genes contained insertions and the distribution of the number of insertions per gene was unimodal, unlike the bimodal distribution reported in most Tn-seq analyses, thus hindering the discrimination of required or essential genes. Upon comparing the Tn-seq results with gene conservation in pangenomic analysis from Thermus thermophilus to Deiococcota levels, as well as with available HB27 RNA-seq data, we observed a very low correlation between core genes or gene transcription levels and Tn-seq insertion frequency. Notably, many genes largely deemed part of the essential bacterial core, supporting critical cellular pathways, showed relatively high transposon insertion numbers. In the case of DNA repair routes, which are essential but somewhat redundant, our results align well with previously published essentiality data, indicating that many genes are dispensable and permissive to insertions. The analysis of these striking results in the context of Thermus biology suggests that the polyploidy of the Thermus genome and the differential stability of proteins may explain the apparent non-essentiality of key genes. ImportanceThe Tn-seq technique, random insertion of transposons into an organisms genome followed by deep sequencing of the resulting population, has enabled precise identification of genes necessary for that organism to live under specified conditions. We have performed Tn-seq on the extremophilic bacterium Thermus thermophilus to gain information on the genes required for thriving at high temperature. Unexpectedly, we detected transposon insertions in the practical totality of the genes of this organism, hindering a clear discrimination of essential genes. Furthermore, a comparison with core genes derived from a pangenome analysis, spanning from the Thermus genus up to the phylum level, failed to establish a correlation between gene conservation and Tn-seq results. The polyploidy of the genome of this organism, along with potential regulatory mechanisms, may explain why commonly essential bacterial genes tolerate transposon insertions, a characteristic that appears particular for this organism.

microbiology↗

Changes in the senescence profile and immune checkpoints in HIV-infected individuals after COVID-19

BackgroundBoth SARS-CoV-2 and HIV infection exhibit alterations in the senescence profile and immune checkpoint (IC) molecules. However, the midterm impact of SARS-CoV-2 on these profiles in people with HIV (PWH) remains unclear. This study aimed to evaluate differences in plasma biomarker levels related to ICs, the senescence-associated secretory phenotype (SASP), and pro- and anti-inflammatory cytokines in PWH following recovery from SARS-CoV-2 infection. MethodsWe conducted a cross-sectional study of 95 PWH receiving antiretroviral therapy, stratified by SARS-CoV-2 infection status: a) 48 previously infected (HIV/SARS) and b) 47 controls without previous infection (HIV). Plasma biomarkers (n=44) were assessed using Procartaplex Multiplex Immunoassays. Differences were analyzed using a generalized linear model adjusted for sex and ethnicity and corrected for the false discovery rate. Significant values were defined as an adjusted arithmetic mean ratio [&ge;]1.2 or [&le;]0.8 and a qvalue<0.1. Spearman correlation evaluated relationships between plasma biomarkers (significant correlations, rho[&ge;]0.3 and q value<0.1). ResultsThe median age of the PWH was 45 years, and 80% were men. All SARS-CoV-2-infected PWH experienced symptomatic infection; 83.3% had mild symptomatic infection, and sample collection occurred at a median of 12 weeks postdiagnosis. The HIV/SARS group showed higher levels of ICs (CD80, PDCD1LG2, CD276, PDCD1, CD47, HAVCR2, TIMD4, TNFRSF9, TNFRSF18, and TNFRSF14), SASP (LTA, CXCL8, and IL13), and inflammatory plasma biomarkers (IL4, IL12B, IL17A, CCL3, CCL4, and INF1A) than did the HIV group. ConclusionsSARS-CoV-2 infection in PWH causes significant midterm disruptions in plasma ICs and inflammatory cytokine levels, highlighting SASP-related factors, which could be risk factors for the emergence of complications in PWH.

microbiology↗

Thermostable in vitro transcription-translation for enzyme screening in microdroplets

BackgroundIn vitro expression involves the utilization of the transcription and translation machinery derived from the cell to produce one or more proteins of interest and has found widespread application in the optimization of gene circuits or metabolic pathways in synthetic biology but also in pharmaceutical manufacturing. Most in vitro expression systems available are active at moderate temperatures but to screen large libraries of natural or artificial genetic diversity for highly thermostable enzymes or enzyme variants, it is instrumental to enable protein synthesis at high temperatures. Moreover, given the fact that the main barrier toward the general use of in vitro expression is its high price compared with host-based recombinant expression, there is a need to develop alternative in vitro expression systems operating at high temperatures and compatible with technologies that enable ultrahigh-throughput screening in reduced volumes, such as microfluidic water-in-oil (w/o) droplets. ResultsTo this end, we produced high-expression cell-free extracts from Thermus thermophilus for in vitro translation and supplemented them with thermostable enzymatic cascades for energy regeneration and a moderately thermostable RNA polymerase for transcription, which ultimately limited the temperature of protein synthesis. The yield was comparable to other thermostable in vitro expression systems, while the preparation procedure is simpler and can be suited to different Thermus thermophilus strains. Furthermore, these extracts have enabled in vitro expression in microfluidic droplets at high temperatures for the first time. Although the composition of these extracts showed a high background in carboxyl esterase assays, {beta}-glucosidase and cellobiose hydrolase activities could be measured with minimal background. ConclusionsCell-free extracts from Thermus thermophilus represent a simpler alternative to heavily optimized or pure component thermostable in vitro expression systems. Moreover, due to their compatibility with droplet microfluidics and enzyme assays at high temperatures, the reported system represents a convenient gateway for enzyme screening at higher temperatures with ultrahigh-throughput.

microbiology↗