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Single-Cell Transcriptomic Analysis Identifies a Unique Pulmonary Lymphangioleiomyomatosis Cell
Minzhe Guo, Jane Yu, Anne‐Karina T. Perl, Kathryn A. Wikenheiser‐Brokamp, Matthew Riccetti, Erik Y. Zhang, Parvathi Sudha, Mike Adam, Andrew Potter, Elizabeth J. Kopras, Krinio Giannikou, S. Steven Potter, Sue Sherman, Stephen R. Hammes, David J. Kwiatkowski
American Journal of Respiratory and Critical Care Medicine · 2020 · ▲ 117 citations
Abstract
Abstract Rationale Lymphangioleiomyomatosis (LAM) is a metastatic neoplasm of reproductive-age women associated with mutations in tuberous sclerosis complex genes. LAM causes cystic remodeling of the lung and progressive respiratory failure. The sources and cellular characteristics of LAM cells underlying disease pathogenesis remain elusive. Objectives Identification and characterization of LAM cells in human lung and uterus using a single-cell approach. Methods Single-cell and single-nuclei RNA sequencing on LAM (n = 4) and control (n = 7) lungs, immunofluorescence confocal microscopy, ELISA, and aptamer proteomics were used to identify and validate LAMCORE cells and secreted biomarkers, predict cellular origins, and define molecular and cellular networks in LAM. Measurements and Main Results A unique cell type termed LAMCORE was identified, which was distinct from, but closely related to, lung mesenchymal cells. LAMCORE cells expressing signature genes included known LAM markers such as PMEL, FIGF, CTSK, and MLANA and novel biomarkers validated by aptamer screening, ELISA, and immunofluorescence microscopy. LAM cells in lung and uterus are morphologically indistinguishable and share similar gene expression profiles and biallelic TSC2 mutations, supporting a potential uterine origin for the LAMCORE cell. Effects of LAM on resident pulmonary cell types indicated recruitment and activation of lymphatic endothelial cells. Conclusions A unique population of LAMCORE cells was identified in lung and uterus of patients with LAM, sharing close transcriptomic identity. LAM cell selective markers, secreted biomarkers, and the predicted cellular molecular features provide new insights into the signaling and transcriptional programs that may serve as diagnostic markers and therapeutic targets to influence the pathogenesis of LAM.
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- 10.1164/rccm.201912-2445oc
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- 2026-07-25 MST
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APA
Guo, M., Yu, J., Perl, A.T., Wikenheiser‐Brokamp, K.A., Riccetti, M., Zhang, E.Y., Sudha, P., Adam, M., Potter, A., Kopras, E.J., Giannikou, K., Potter, S.S., Sherman, S., Hammes, S.R., Kwiatkowski, D.J., Whitsett, J.A., McCormack, F.X., & Xu, Y. (2020). Single-Cell Transcriptomic Analysis Identifies a Unique Pulmonary Lymphangioleiomyomatosis Cell. <em>American Journal of Respiratory and Critical Care Medicine</em>. https://doi.org/10.1164/rccm.201912-2445oc
Vancouver
Guo M, Yu J, Perl AT, Wikenheiser‐Brokamp KA, Riccetti M, Zhang EY, et al. Single-Cell Transcriptomic Analysis Identifies a Unique Pulmonary Lymphangioleiomyomatosis Cell. American Journal of Respiratory and Critical Care Medicine. 2020. doi:10.1164/rccm.201912-2445oc.
BibTeX
@unpublished{minzhe2020Single,
title = {Single-Cell Transcriptomic Analysis Identifies a Unique Pulmonary Lymphangioleiomyomatosis Cell},
author = {Minzhe Guo and Jane Yu and Anne‐Karina T. Perl and Kathryn A. Wikenheiser‐Brokamp and Matthew Riccetti and Erik Y. Zhang and Parvathi Sudha and Mike Adam and Andrew Potter and Elizabeth J. Kopras and Krinio Giannikou and S. Steven Potter and Sue Sherman and Stephen R. Hammes and David J. Kwiatkowski and Jeffrey A. Whitsett and Francis X. McCormack and Yan Xu},
journal = {American Journal of Respiratory and Critical Care Medicine},
year = {2020},
doi = {10.1164/rccm.201912-2445oc},
}
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