Title | Dissecting the treatment-naive ecosystem of human melanoma brain metastasis. |
Publication Type | Journal Article |
Year of Publication | 2022 |
Authors | Biermann J, Melms JC, Amin ADipak, Wang Y, Caprio LA, Karz A, Tagore S, Barrera I, Ibarra-Arellano MA, Andreatta M, Fullerton BT, Gretarsson KH, Sahu V, Mangipudy VS, Nguyen TTT, Nair A, Rogava M, Ho P, Koch PD, Banu M, Humala N, Mahajan A, Walsh ZH, Shah SB, Vaccaro DH, Caldwell B, Mu M, Wünnemann F, Chazotte M, Berhe S, Luoma AM, Driver J, Ingham M, Khan SA, Rapisuwon S, Slingluff CL, Eigentler T, Röcken M, Carvajal R, Atkins MB, Davies MA, Agustinus A, Bakhoum SF, Azizi E, Siegelin M, Lu C, Carmona SJ, Hibshoosh H, Ribas A, Canoll P, Bruce JN, Bi WLinda, Agrawal P, Schapiro D, Hernando E, Macosko EZ, Chen F, Schwartz GK, Izar B |
Journal | Cell |
Volume | 185 |
Issue | 14 |
Pagination | 2591-2608.e30 |
Date Published | 2022 07 07 |
ISSN | 1097-4172 |
Keywords | Brain Neoplasms, CD8-Positive T-Lymphocytes, Ecosystem, Humans, Melanoma, RNA-Seq |
Abstract | Melanoma brain metastasis (MBM) frequently occurs in patients with advanced melanoma; yet, our understanding of the underlying salient biology is rudimentary. Here, we performed single-cell/nucleus RNA-seq in 22 treatment-naive MBMs and 10 extracranial melanoma metastases (ECMs) and matched spatial single-cell transcriptomics and T cell receptor (TCR)-seq. Cancer cells from MBM were more chromosomally unstable, adopted a neuronal-like cell state, and enriched for spatially variably expressed metabolic pathways. Key observations were validated in independent patient cohorts, patient-derived MBM/ECM xenograft models, RNA/ATAC-seq, proteomics, and multiplexed imaging. Integrated spatial analyses revealed distinct geography of putative cancer immune evasion and evidence for more abundant intra-tumoral B to plasma cell differentiation in lymphoid aggregates in MBM. MBM harbored larger fractions of monocyte-derived macrophages and dysfunctional TOX+CD8+ T cells with distinct expression of immune checkpoints. This work provides comprehensive insights into MBM biology and serves as a foundational resource for further discovery and therapeutic exploration. |
DOI | 10.1016/j.cell.2022.06.007 |
Alternate Journal | Cell |
PubMed ID | 35803246 |
Grant List | K08 CA222663 / CA / NCI NIH HHS / United States R37 CA258829 / CA / NCI NIH HHS / United States U54 CA225088 / CA / NCI NIH HHS / United States R21 CA263381 / CA / NCI NIH HHS / United States T32 GM007367 / GM / NIGMS NIH HHS / United States P50 CA221703 / CA / NCI NIH HHS / United States P30 CA051008 / CA / NCI NIH HHS / United States P50 CA225450 / CA / NCI NIH HHS / United States T32 GM136573 / GM / NIGMS NIH HHS / United States P30 CA016087 / CA / NCI NIH HHS / United States P30 CA013696 / CA / NCI NIH HHS / United States |
Submitted by bel2021 on July 21, 2022 - 2:16pm