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Functional screening of ZIP8 naturally occurring variants identifies pathogenic mutations and trafficking defects.

The rapid expansion of human genomic data has revealed a large number of naturally occurring variants, creating a major challenge for functional annotation. The human metal transporter SLC39A8 (ZIP8) is a clinically important divalent metal transporter, yet most of its documented variants remain uncharacterized. Here, we developed a workflow to functionally evaluate ZIP8 variants by integrating laser ablation inductively coupled plasma time-of-flight mass spectrometry (LA-ICP-TOF-MS) with scaled-up cell-based transport assays. Using this method, we systematically analyzed 33 naturally occurring missense variants located in the extracellular domain (ECD) of ZIP8. The assay enables direct quantification of intracellular metal accumulation with substantially improved throughput (∼150 samples per hour). Functional screening identified 14 potential pathogenic variants with significantly reduced transport activity. Comparison with computational predictions revealed a moderate correlation between activity and AlphaMissense pathogenicity scores (R2 = 0.423), while an error rate of ∼20% for AlphaMissense underscores the need for experimental validation. Flow cytometry analysis showed that most loss-of-function variants exhibit impaired trafficking of the protein to the cell surface possibly due to mutation-caused protein misfolding or instability. Structural mapping of activity-compromised variants, together with functional assessment of the ZIP8-ECD, highlights the importance of this domain in ZIP8 expression and intracellular protein trafficking. Together, this work establishes a scalable approach for functional screening of metal transporter variants and provides new insights into the structure-function relationships of ZIP8.

Journal Article

Use of the spot, plate and suspension test systems for the detection of the mutagenicity of environmental agents and chemical carcinogens in Neurospora crassa.

N23 and N24, selected from hundreds of ad-3 mutants, have been used as testers for the spot, plate and suspension tests in Neurospora crassa. These two testers are highly sensitive to mutagens and are revertible by a specific group of chemicals. N23 can be reverted from an adenine-dependence to adenine-independence by agents which cause base-pair substitutions whereas N24 can be reverted by frameshift mutagens. Studies described here show that spot, plate and suspension tests using testers N23 and N24 are satisfactory substitutes for the ad-3 forward-mutation system for screening the mutagenic activity of environmental agents and chemical carcinogens in N. crassa.

Bacteriological Techniques

Innovations in microbial physical mutagenesis for food fermentation: An overview from traditional to emerging technologies.

Microbial strains serve as an important factor affecting fermentation efficiency and product quality. To obtain superior strains, mutation breeding is a classic strategy. Compared to chemical mutagenesis, physical mutagenesis directly induces genomic changes, providing notable advantages such as the elimination of chemical residues and environmental sustainability, hence rendering it a favored method for enhancing food-grade microorganisms. Conventional physical mutagenesis mostly depends on UV, rays, high pressure, or space radiation. As physical technologies advance, emerging methods such as ion implantation, plasma, microwave, ultrasound, and pulsed light are widely utilized for genetic modification. Mutagenesis technologies are progressively transitioning from single-effect to multi-effect synergy. Recent evaluations indicate that emerging technologies can enhance microbial mutation efficiency at the application level relative to established technologies. Nonetheless, the systematic clarification and comparative analysis at the mechanistic level remain inadequate, hindering intuitive comprehension of the qualities and distinctions across techniques. Furthermore, physical mutagenesis encounters several significant obstacles, such as cellular damage, limited rates of advantageous mutations, and laborious screening processes. This review carefully elucidates the mechanisms and properties of physical mutagenesis technology and delineates the distinctions among approaches through comparative analysis. Simultaneously, solutions for optimizing mutagenesis are presented to tackle the principal challenges mentioned above. This review aims to offer a theoretical foundation and practical guidance for the enhanced application of physical mutagenesis technologies in microbial breeding.

Mutagenesis

Global Diffusion of IncC Plasmid Harboring blaNDM-1in the High-Risk Escherichia coli ST131 Clone.

AIMS: The global expansion of quinolone-resistant Escherichia coli (QR-EC) is increasingly associated with β-lactam resistance and mobile genetic elements that facilitate resistance dissemination. This study investigated the molecular mechanisms underlying fluoroquinolone and β-lactam resistance in clinical QR-EC isolates and explored the plasmid type associated. METHODS AND RESULTS: A total of 123 non-duplicate QR-EC clinical isolates responsible mainly for gastrointestinal colonization were collected between 2019 and 2021. Plasmid-mediated quinolone resistance (PMQR), extended-spectrum β-lactamase (ESBL), and carbapenemase genes were screened by PCR. Mutations in the quinolone resistance-determining regions (QRDR) of gyrA and parC were analyzed using sequencing and mismatch amplification mutation assay PCR (MAMA-PCR). Selected isolates underwent multilocus sequence typing (MLST). Whole-genome sequencing (WGS) of a representative extensively drug-resistant strain carrying multiple quinolone resistance determinants, ESBL genes, and carbapenemase genes, was performed. PMQR genes were prevalent among QR-EC, dominated by aac(6')-Ib-cr (60.9% of isolates). ESBL genes were identified in 93.5% of isolates, predominantly blaCTX-M (95.7%). Among ertapenem-resistant isolates (QCR-EC) (n=18), blaNDM-1 and blaOXA-48 were detected in 13 and 11 isolates, respectively. QRDR mutations were highly frequent, particularly gyrA83 (98.4%) and parC80 (30.9%). Major QCR-EC genotypes belonged to sequence types ST167 (n=2), ST1196, ST469, and ST410. High-risk E. coli ST131 clone harboring IncC plasmid encoding blaNDM-1 was described for the first time in Africa, following its emergence, in two continents, Asia and America. Despite the very rare description of these strains worldwide, their description in three continents sign their global diffusion. CONCLUSIONS: This finding highlights the ongoing spread of carbapenem resistance and underscores the urgent need for strengthened genomic surveillance.

Escherichia coli

The NmpRSTU multi-component signaling system of Myxococcus xanthus regulates expression of an oxygen utilization regulon.

UNLABELLED: Myxococcus xanthus has numerous two-component signaling systems (TCSs), many of which regulate the complex social behaviors of this soil bacterium. A subset of TCSs consists of NtrC-like response regulators (RRs) and their cognate histidine sensor kinases (SKs). We have previously demonstrated that a multi-component, phosphorelay TCS named NmpRSTU plays a role in M. xanthus social motility. NmpRSTU was discovered through a screen that identified mutations in nmp genes that restored Type-IV pili-dependent motility to a nonmotile strain. The Nmp pathway begins with the SK NmpU, which is predicted to be active in the presence of oxygen. NmpU phosphorylates another SK, NmpS, a hybrid kinase containing an RR domain and a HisKA-CA domain. These two kinases work in a reciprocal fashion: when NmpU is active, NmpS is inactive, and vice versa. Finally, the phosphorelay culminates in NmpS phosphorylating the NtrC-like RR NmpR. To better understand the role of NmpRSTU in M. xanthus physiology, we determined the NmpR regulon by combining in silico predictions of the NmpR consensus binding sequence with in vitro electromobility shift assays (EMSAs) and in vivo transcriptional reporters. We identified several NmpR-dependent, upregulated genes likely to be important in oxygen utilization. Additionally, we demonstrate NmpRSTU plays a role in fruiting body development, suggesting a role for oxygen sensing in this behavior. We propose that NmpRSTU senses oxygen-limiting conditions, and NmpR upregulates genes associated with optimal utilization of that oxygen. This may be necessary for M. xanthus physiology and behaviors in the highly dynamic soil where oxygen concentrations vary dramatically. IMPORTANCE: Bacteria use two-component signaling systems (TCSs) to respond to a multitude of environmental signals and subsequently regulate complex cellular physiology and behaviors. Myxococcus xanthus is a ubiquitous soil bacterium that encodes numerous two-component systems to respond to the conditions of its soil environment and coordinate multicellular behaviors such as coordinated motility, microbial predation, fruiting body development, and sporulation. To better understand how this bacterium uses a two-component system that has been linked to the sensing of oxygen concentrations, NmpRSTU, we determined the gene regulatory network of this system. We identified several genes regulated by NmpR that are likely important in oxygen utilization and for the M. xanthus response to varied oxygen concentrations in the dynamic soil environment.

Myxococcus xanthus

Isolation of pseudorevertants of lac oc mutants: selection system for superoperator mutations.

A selection procedure and rapid screening test are described that allow the isolation of rarely occurring pseudorevertants of lac oc mutants. These techniques were developed with the aim of isolating superoperator (os) mutants in which a secondary mutation in the operator would increase the affinity of the repressor of superoperator, thereby overcoming the effect of the oc mutation. The occurrence of superoperator mutants is predicted on the basis of a probable twofold symmetry in the lac repressor-operator recognition. Over 2,300 oc pseudorevertants were isolated and screened. In vitro measurements of the affinity of lac repressor for the operator region indicate that, among these, one oc pseudorevertant probably results from an oc mutation. The selection procedure also yielded other types of regulatory mutants that behave as promoter mutants and as i gene mutants in which the repressor is capable of overcoming an oc mutation.

Coliphages

Bromouracil mutagenesis and mismatch repair in mutator strains of Escherichia coli.

A screening procedure based on the formation of papillae on individual bacterial colonies was used to isolate mutants of Escherichia coli with high mutation rates in the presence of bromouracil. Most of the mutants obtained had high spontaneous mutation rates and mapped close to the previously known mutators mutT, mutS, mutR, uvrE and mutL. Except for mutants of mutT type, these mutators also showed high mutability by bromouracil. Transfection experiments were performed with heteroduplex lambda DNA to test for mismatch repair. The results suggest a reduced efficiency of repair of mismatched bases in mutators mutS, mutR, uvrE and mutL, whereas mutants mapping as mutT appear normal. The results support a connection between spontaneous and bromouracil-induced mutability and repair of mismatched bases in DNA.

Bromouracil

A multicenter survey on BRAF screening for the implementation of perioperative cancer genomic medicine for resectable colorectal oligometastases.

BACKGROUND: Genomic screening is an essential, but potentially time-consuming procedure, especially in neoadjuvant settings. We evaluated the preoperative screening of the BRAF V600E mutation for recruitment to a clinical trial among patients with resectable colorectal oligometastases (CRM). METHODS: In April 2022, an investigator-initiated trial was launched to investigate the efficacy and safety of perioperative use of the BEACON triplet regimen for BRAF V600E mutant resectable CRM. BRAF screening was retrospectively conducted in patients with resected colorectal liver metastases in 2019 for planning the trial and prospectively conducted in preoperative patients with resectable CRM from January 2022 to June 2025 for patient recruitment to the trial. RESULTS: BRAF V600E mutation was detected in 12 (3.2%) of 379 postoperative patients retrospectively and in 36 (1.7%) of 2140 preoperative patients prospectively, with 1840 patients (86.0%) carrying the wild-type and 264 patients (12.3%) classified as untested. The detection rate of the BRAF V600E mutation was significantly lower when the screening was performed prospectively in preoperative patients (P&#x2009;<&#x2009;0.001). The untested rates varied across metastatic organs, with 10.3% in the liver, 18.1% in the lungs, 12.0% in the lymph nodes, 16.7% in the peritoneum, and 7.8% in other organs. The untested rates decreased consistently across semiannual comparisons: 28.5% in the first evaluation, followed by 15.0%, 12.0%, 8.4%, 9.1%, 7.3%, and 7.1% (P&#x2009;<&#x2009;0.01 when compared with the first period). CONCLUSION: Raising physician awareness, as reflected by the untested rate, is a crucial factor in conducting clinical trials to implement perioperative cancer genomic medicine.

Humans

Selection and characterization of nuclear mutations affecting mitochondria in Paramecium.

A screening method, based upon resistance to a tetrazolium salt (TTC), is described which permitted the isolation in Paramecium of 28 mutants resistant to TTC. These mutants displayed various defects in mitochondrial functions (cytochromic content cyanide insensitive respiration). Some mutations seemed to affect directly the respiration chain while others seemed to cause indirect modifications, possibly altering mitochondrial protein synthesis. Genetic analysis of four mutants showed in all that the resistance to TTC was of nuclear origin.

Animals

primary analysis of the RANDOMIZED eortc-2139/columbus-ad trial: Adjuvant encorafenib and binimetinib versus placebo in high-risk stage II BRAF-V600E/K melanoma.

PURPOSE: Stage IIB/IIC melanoma has a high risk of recurrence after resection. Combined BRAF/MEK inhibitor therapy showed benefit in resected high-risk stage III and advanced melanoma. The objective of this study was to investigate its role in stage IIB/IIC. METHODS: Adult patients with resected stage IIB/IIC cutaneous melanoma which had a BRAF V600E/K mutation were randomized 1:1 to receive encorafenib (enco) 450&#x202f;mg QD&#x202f;+&#x202f;binimetinib (bini) 45&#x202f;mg BID orally for one year or placebo. The study planned to randomize 815 patients and was designed to demonstrate superiority regarding recurrence-free survival (RFS). Following a premature termination of accrual, the study was amended with safety as the primary endpoint and RFS as secondary endpoint. RESULTS: Between June 9, 2022, and October 9, 2023, 339 patients were screened for a BRAF mutation and 110 randomized. Data cutoff was 19 Nov. 2024, after the last patient discontinued study participation. Among randomized patients, 87 (79%) had a BRAF V600E mutation, and 39 (35%) AJCC8 stage IIC. Median follow-up was 12 and 7 months for enco/bini and placebo arms, respectively. Among 54 patients who initiated enco&#x202f;+&#x202f;bini, grade &#x2265;&#x202f;3 treatment-related adverse events (AE) occurred in 13 (24%) patients, and 18 (33%) patients had an AE leading to permanent treatment discontinuation. RFS at 12 months was 86% (95% CI: 65-95%) in the enco&#x202f;+&#x202f;bini and 70% (95% CI: 46-85%) in the placebo arm, distant metastasis-free survival at 12 months was 92% (95% CI: 77-97%) for enco&#x202f;+&#x202f;bini and 82% (95% CI: 55-93%) for placebo. CONCLUSION: EORTC 2139 - Columbus-AD demonstrated a consistent and manageable safety profile and encouraging efficacy results for the combination of enco and bini in resected stage IIB/C BRAF V600E/K-mutated cutaneous melanomas.

Adult

Mapping of several abnormal hemoglobins by horizontal polyacrylamide gel isoelectric focusing.

The relative mobilities of serveral human hemoglobin variants were studied by use of an isoelectric focusing method in a thin-layer horizontal polyacrylamide gel. The technic is described in detail and a preliminary mapping of these variants is presented. It appears that thin-layer gel isoelectric focusing is a method that is rapid, highly reproducible and easily applicable in laboratories concerned with the study of hemoglobinopathies.

Amino Acid Sequence

First report of MUTYH-associated polyposis with c.1353_1355del and c.452A>G mutations in Tolima Grande region from Colombia: a case report.

INTRODUCTION: The MUTYH gene encodes a protein involved in DNA repair and is known for MUTYH-associated polyposis (MAP), a rare autosomal recessive condition that predisposes individuals to colorectal cancer (CRC), colorectal polyps and familial colorectal cancer syndrome. CASE REPORT: We describe the first Tolima Grande region from a Colombian report of individuals carrying pathogenic MUTYH variants c.452A>G and c.1353_1355del associated with polyposis phenotypes. Three main cases with detailed histopathological findings and family history are presented. Additionally, independent findings from Clinaltec identified three further individuals carrying c.452A>G and one heterozygous carrier of c.1353_1355del detected during predictive multigene panel testing. DISCUSSION: These cases highlight the diagnostic and clinical challenges of distinguishing biallelic pathogenic MUTYH variants, which define MAP and confer high CRC risk, from monoallelic carriers, whose cancer risk is substantially lower. Misclassification may result in inappropriate surveillance strategies and missed opportunities for early detection. From a public health perspective, these findings emphasize persistent gaps in hereditary CRC prevention in underrepresented populations, including fragmented cancer registries and limited incorporation of genetic and family history data into clinical decision-making. CONCLUSION: This report provides evidence in Colombia of polyposis-associated pathogenic MUTYH variants c.452A>G and c.1353_1355del, underscoring the importance of expanding genetic evaluation for hereditary CRC in Latin American populations.

Colombian population

Binary vector copy number engineering improves Agrobacterium-mediated transformation.

The copy number of a plasmid is linked to its functionality, yet there have been few attempts to optimize higher-copy-number mutants for use across diverse origins of replication in different hosts. We use a high-throughput growth-coupled selection assay and a directed evolution approach to rapidly identify origin of replication mutations that influence copy number and screen for mutants that improve Agrobacterium-mediated transformation (AMT) efficiency. By introducing these mutations into binary vectors within the plasmid backbone used for AMT, we observe improved transient transformation of Nicotiana benthamiana in four diverse tested origins (pVS1, RK2, pSa and BBR1). For the best-performing origin, pVS1, we isolate higher-copy-number variants that increase stable transformation efficiencies by 60-100% in Arabidopsis thaliana and 390% in the oleaginous yeast Rhodosporidium toruloides. Our work provides an easily deployable framework to generate plasmid copy number variants that will enable greater precision in prokaryotic genetic engineering, in addition to improving AMT efficiency.

Genetic Vectors

Isolation and characterization of mutants of Escherichia coli deficient in induction of mutations by ultraviolet light.

Mutants of E. coli defective in susceptibility to UV-induction of mutations were isolated by direct screening for their UV nonmutable phenotype (Umu-). Screening of about 30,000 mutagenized clones of a uvr-B derivative of AB1157 yielded six Umu- strains. The mutants can be classified into three groups by the location of the mutations, umuA, umuB and umuC. Mutations umuA and umuB are, respectively, mapped close to lexA and recA genes and mutations at both loci partially reduce UV mutagenesis. The locus of umuC is between hemA and purB and the mutations at this new locus result in a moderate increase of UV sensitivity. The mutation diminishes UV mutagenesis and UV reactivation of phage lambda without affecting the inducibility of phophage lambda nor the inhibition of cell division following UV irradiation. Related properties of an isogenic strain of a recF- mutant are compared with those of umuC-.

Cell Division

ARMC5 mutations in primary bilateral macronodular adrenal hyperplasia: a family case report.

BACKGROUND: Primary bilateral macronodular adrenal hyperplasia (PBMAH) is a rare cause of overt Cushing's syndrome (CS), which usually manifests as bilateral macronodular adrenal nodules and varying levels of cortisol secretion. Previous studies have shown that ARMC5 play a huge role in the occurrence of PBMAH, which may be inherited to family members and lead to more severe clinical symptoms. ARMC5 variants may be associated with meningiomas, which is also illustrated by our report. CASE PRESENTATION: This is a 41-year-old male patient with high blood pressure for 10 years and multiple adrenal nodules on both sides. In addition, the patient also suffered from pituitary microadenoma and meningioma. According to the patient's clinical manifestations, laboratory tests, imaging examinations, and the results of whole exon gene testing, we diagnosed the patient with PBMAH. The patient underwent a posterior laparoscopic nephrectomy of the left adrenal gland. Pathology reported a left macronodular adrenal hyperplasia, multifocal, 2&#xa0;cm to 3&#xa0;cm in diameter. Molecular analysis of DNA extracted from the patient's peripheral blood revealed an ARMC5 heterozygous mutation, which was classified as likely pathogenic. CONCLUSION: Screening of family members of PBMAH patients with ARMC5 germline mutations and active monitoring of family members carrying ARMC5 variants are recommended.

Humans

Phylogenomic signatures of repeat-induced point mutations across the fungal kingdom.

Fungal genome sizes exhibit more than a 100-fold variation, largely driven by the expansion of repetitive sequences such as transposable elements (TEs). Silencing mechanisms targeting TEs at the epigenetic or transcript level have independently evolved in many lineages. In fungi, repeat-induced point mutation (RIP) targets TEs by recognizing repetitive sequences and inducing mutagenesis. However, the prevalence of RIP across the fungal kingdom and the fidelity of the canonical C-to-T mutation signatures remain unclear. In this study, we address these gaps by tracking shifts in genome architecture across the fungal kingdom. We find that a striking approximately 30-fold increase in genome size within a clade of leotiomycetes is associated with the absence of several RIP-related genes, suggesting a relaxation of genome defense mechanisms during this expansion. To track the impact of genome defenses, we designed a quantitative screen for RIP-like mutation signatures. The phylum of ascomycetes was unique in showing enrichment in mutation signatures in non-coding and repetitive sequences, consistent with a phylogenetically restricted occurrence of RIP-like genome defense systems. Then, we performed a phylogeny-aware association study to identify gene functions associated with RIP-like mutation signatures. We identified a zinc-finger protein as the strongest candidate underpinning a novel mechanism of genome defenses. Our findings reveal the multifaceted drivers of genome defense systems and their close ties to genome size evolution in fungi, particularly in lineages with evidence for recent RIP activity, highlighting how proximate molecular mechanisms can shape genome evolution on deep phylogenetic scales.

Genome, Fungal

Trace polypeptides in cellular extracts and human body fluids detected by two-dimensional electrophoresis and a highly sensitive silver stain.

Development of a highly sensitive silver stain permits the characterization of trace cellular and body fluid proteins separated by the two-dimensional electrophoresis technique of O'Farrell. Many of the proteins detected by the silver stain in urine, spinal fluid, amniotic fluid, and cells were undetected with the widely used Coomassie blue stain. Trace polypeptides observed in Escherichia coli cell lysates with this silver stain could be detected previously only by growth in radioactive precursors followed by lengthy autoradiography. In situations that do not permit the use of radioactive labeling, as in human clinical studies, the enhanced ability to detect proteins achieved by the silver stain will facilitate metabolic studies and the screening for protein abnormalities in mutational studies and in genetic diseases.

Amniotic Fluid