CRISPR/Cas12a has emerged as a powerful tool for nucleic acid detection; however, its clinical utility is severely hampered by intrinsic limitations in single-nucleotide variant (SNV) discrimination, reliance on pre-processed single-stranded DNA (ssDNA) templates, and cumbersome multi-step workflows. Here, we report a novel molecular design principle by engineering crRNAs with site-specific dual mismatches (positions 12 and 14 relative to the PAM), which we systematically demonstrate to drastically enhance the SNV discrimination capability of Cas12a. Leveraging this breakthrough, we developed FOCUS (Fast One-step CRISPR-based Universalizable SNV detection system), an all-in-one CRISPR sensing platform that enables isothermal detection of SNVs from double-stranded DNA (dsDNA) by integrating amplification and detection in a single reaction system. FOCUS achieved attomolar-level sensitivity (13.15 aM) and ultrafast readout (< 20 min) for distinguishing the highly homologous survival motor neuron 1 (SMN1) and SMN2 genes-the gold standard challenge for SNV genotyping in spinal muscular atrophy (SMA) diagnostics. To validate its clinical translatability, FOCUS was successfully adapted to a low-cost, equipment-free assay using lateral flow strips and UV visualization, facilitating point-of-care testing (POCT). In a comprehensive validation across 175 clinical samples, FOCUS exhibited 100% diagnostic concordance with gold-standard methods for SMA (21 samples), high-risk HPV 16/18 (27 samples), Staphylococcus aureus (20 samples), and SARS-CoV-2 (107 samples). Collectively, our study establishes a generalizable engineering strategy for Cas12a crRNAs and presents FOCUS as a robust, versatile, and field-deployable solution for precision SNV genotyping, underscoring the translational medicine value of FOCUS in molecular diagnostics.
Miaojin Zhou, K. Du, Mingjun Jiang et al.· ACS Sensors· 0 citations
PURPOSE
TCF7L2 (OMIM:602228; HGNC:11641) is a transcription factor and critical effector of the Wnt/β-Catenin pathway. In 2021, 11 pediatric patients with mono-allelic predicted loss-of-function (pLOF) TCF7L2 variants and syndromic features were observed. Characterization of patients with pLOF TCF7L2 variants and neurodevelopmental features - herein referred to as TCF7L2-related neurodevelopmental disorder (TRND) - is urgently needed.
METHODS
We leveraged multiple methods (GeneMatcher, DECIPHER, literature review, public/private repositories) to identify an international cohort of 76 patients with pLOF TCF7L2 variants and neurodevelopmental features and phenotypically characterized them. We also retrospectively searched for an independent cohort of adults with pLOF TCF7L2 variants (n = 11) from 60,000+ PennMedicine BioBank (PMBB) patients.
RESULTS
Among 76 patients with pLOF TCF7L2 variants, speech delay (95.3%), craniofacial dysmorphisms (73.3%), ophthalmologic conditions (65.5%), autism (62.1%), and orthopedic abnormalities (52.6%) were most commonly observed. Phenotypic differences did not cluster by variant type or genomic locus. Among PMBB patients, an association of nominal significance with type 2 diabetes with renal manifestations (OR = 5.8; p-value = 0.03) was detected, warranting further investigation.
CONCLUSIONS
This represents the most comprehensive characterization to date of TRND, a novel neurodevelopmental disorder, defining its genotypic and phenotypic spectrum. We opened a Simons Searchlight natural history study (https://www.simonssearchlight.org/research/what-we-study/tcf7l2/) to enhance understanding of this condition.
Sally Nijim, Mimi Kim, Melissa Denish et al.· Genetics in Medicine· 1 citation
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