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Purpose: Pathogenic LZTR1 variants cause schwannomatosis and dominant/recessive Noonan syndrome (NS). We aim to establish an association between heterozygous loss-of-function LZTR1 alleles and isolated multiple café-au-lait macules (CaLMs).
Methods: A total of 849 unrelated participants with multiple CaLMs, lacking pathogenic/likely pathogenic NF1 and SPRED1 variants, underwent RASopathy gene panel sequencing. Data on 125 individuals with heterozygous LZTR1 variants were collected for characterizing their clinical features and the associated molecular spectrum. In vitro functional assessment was performed on a representative panel of missense variants and small in-frame deletions.
Results: Analysis revealed heterozygous LZTR1 variants in 6.0% (51/849) of participants, exceeding the general population prevalence. LZTR1-related CaLMs varied in number, displayed sharp or irregular borders, and were generally isolated but occasionally associated with features recurring in RASopathies. In 2 families, CaLMs and schwannomas co-occurred. The molecular spectrum mainly consisted of truncating variants, indicating loss-of-function. These variants substantially overlapped with those occurring in schwannomatosis and recessive NS. Functional characterization showed accelerated protein degradation or mislocalization, and failure to downregulate mitogen-activated protein kinase signaling.
Conclusion: Our findings expand the phenotypic variability associated with LZTR1 variants, which, in addition to conferring susceptibility to schwannomatosis and causing dominant and recessive NS, occur in individuals with isolated multiple CaLMs.
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http://dx.doi.org/10.1016/j.gim.2024.101241 | DOI Listing |
Genes Chromosomes Cancer
August 2025
Department of Pathology, University of Pittsburgh Medical Center, Pittsburgh, Pennsylvania, USA.
We present a case of a 51-year-old male with a pseudoglandular cellular schwannoma arising from the brachial plexus, which contains the expected molecular aberrations for a schwannoma (chromosome 22q loss encompassing the NF2 and LZTR1 genes) as well as a FUS::KLF17 rearrangement. Pseudoglandular schwannomas are rare morphologic variants of schwannomas that contain gland-like spaces lined by S100-positive, cytokeratin-negative pseudocolumnar Schwann cells. Fusions involving FUS and EWSR are commonly found in myoepithelial tumors of bone and soft tissue.
View Article and Find Full Text PDFThe lymphatic system, a complex physiological network of lymphatic organs and vessels, is essential for maintaining fluid homeostasis. Dysfunction of lymphatic system can lead to lymphedema, a pathology characterized by the accumulation of interstitial fluid in peripheral tissues. This study aimed to identify novel genetic variants in genes within the RAS/ MAPK pathway and assess their potential association with lymphedema onset.
View Article and Find Full Text PDFInt J Mol Sci
July 2025
Department of Clinical Genetics with Cytogenetic Laboratory, Medical University of Lublin, Radziwillowska St. 11, 20-400 Lublin, Poland.
According to the guidelines of the American Society of Clinical Oncology (ASCO) and the European Society of Medical Oncology (ESMO), the most significant genetic factor in the diagnosis and treatment of breast cancer is the mutation status of the and genes. Additional genes with a significant influence on cancer risk were selected for genetic panel screening. For these genes, the disease risk score was predicted to be greater than 20%.
View Article and Find Full Text PDFCurr Opin Pediatr
August 2025
Division of Endocrinology and Center for Genetic Medicine Research, Children's National Hospital.
Purpose Of Review: This review highlights recent genetic discoveries and therapeutic advancements in evaluating and managing children with short stature. With an increasing diagnostic yield from genetic testing and the emergence of genotype-specific treatments, a comprehensive update is necessary for timely application in clinical practice.
Recent Findings: New pathogenic variants have been identified in genes, including FBN1, IHH, NPR2, ACAN, FGFR3, COMP, MATN3, EXT2, and LZTR1, associated with syndromic and nonsyndromic short stature.
BMC Pediatr
July 2025
Department of Pediatric intensive care unit, Shandong Provincial Hospital Affiliated to Shandong First Medical University, No. 324, Jingwu Road, Huaiyin District, Jinan, 250021, Shandong Province, P. R. China.
Background: Abernethy malformation (AM) is a rare vascular anomaly characterized by the diversion of splanchnic venous blood directly into the systemic circulation, bypassing the liver. We present the clinical features, diagnostic workup, and follow-up of a 6-day-old Chinese male with type II AM combined with Noonan syndrome (NS).
Case Presentation: The patient was prenatally suspected of having AM based on ultrasonographic findings, which were postnatally confirmed through enhanced computed tomography (CT) and magnetic resonance (MR) imaging.