Publications by authors named "Tunc Kayikcioglu"

Unlabelled: Wastewater surveillance has emerged as a crucial public health tool for population-level pathogen surveillance. Supported by funding from the American Rescue Plan Act of 2021, the FDA's genomic epidemiology program, GenomeTrakr, was leveraged to sequence SARS-CoV-2 from wastewater sites across the United States. This initiative required the evaluation, optimization, development, and publication of new methods and analytical tools spanning sample collection through variant analyses.

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Most current subtyping analyses rely on whole genome sequencing (WGS), which focuses on the high-resolution analysis of single genomes or multiple single genomes from the isolated colonies on microbiological agar plates. In this study, we introduce bioinformatics innovations for a metagenomic outbreak response workflow that accurately identifies multiple serovars at the same time. bettercallsal is one of the first analysis tools to identify multiple serotypes from metagenomic or quasi-metagenomic datasets with high accuracy, allowing these isolate-independent methods to be incorporated into surveillance and root cause investigations.

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Background: The accurate identification of SARS-CoV-2 (SC2) variants and estimation of their abundance in mixed population samples (, air or wastewater) is imperative for successful surveillance of community level trends. Assessing the performance of SC2 variant composition estimators (VCEs) should improve our confidence in public health decision making. Here, we introduce a linear regression based VCE and compare its performance to four other VCEs: two re-purposed DNA sequence read classifiers (Kallisto and Kraken2), a maximum-likelihood based method (Lineage deComposition for Sars-Cov-2 pooled samples (LCS)), and a regression based method (Freyja).

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Engineering synthetic interfaces between membranes has potential applications in designing non-native cellular communication pathways and creating synthetic tissues. Here, InterSpy is introduced as a synthetic biology tool consisting of a heterodimeric protein engineered to form and maintain membrane-membrane interfaces between apposing synthetic as well as cell membranes through the SpyTag/SpyCatcher interaction. The inclusion of split fluorescent protein fragments in InterSpy allows tracking of the formation of a membrane-membrane interface and reconstitution of functional fluorescent protein in the space between apposing membranes.

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Article Synopsis
  • Base-pairing interactions are crucial for intermolecular target recognition, and even minor mismatches can significantly impact activity, but their effects on target search kinetics in living organisms remain largely unknown.
  • Researchers used high-throughput sequencing and super-resolution imaging to study mutations in the bacterial small RNA SgrS and its interaction with ptsG mRNA, revealing that mutations affecting the chaperone protein Hfq diminish target association rates and increase dissociation rates.
  • Single base-pair mismatches in the annealing region were found to notably decrease the rate of target association by 24-31% and increase dissociation by 14-25%, extending the time needed for target recognition and destruction, while the impact of contiguous base-pair disruptions was less substantial
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Mechanical deformations of DNA such as bending are ubiquitous and have been implicated in diverse cellular functions. However, the lack of high-throughput tools to measure the mechanical properties of DNA has limited our understanding of how DNA mechanics influence chromatin transactions across the genome. Here we develop 'loop-seq'-a high-throughput assay to measure the propensity for DNA looping-and determine the intrinsic cyclizabilities of 270,806 50-base-pair DNA fragments that span Saccharomyces cerevisiae chromosome V, other genomic regions, and random sequences.

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Photoacoustic imaging is based on the detection of generated acoustic waves through thermal expansion of tissue illuminated by short laser pulses. Fiber lasers as an excitation source for photoacoustic imaging have recently been preferred for their high repetition frequencies. Here, we report a unique fiber laser developed specifically for multiwavelength photoacoustic microscopy system.

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