UVB-Induced Tumor Heterogeneity Diminishes Immune Response in Melanoma

Yochai Wolf1, Osnat Bartok1, Sushant Patkar2

  • 1Department of Molecular Cell Biology, Weizmann Institute of Science, Rehovot, Israel.

Cell
|September 17, 2019
PubMed

Although clonal neo-antigen burden is associated with improved response to immune therapy, the functional basis for this remains unclear. Here we study this question in a novel controlled mouse melanoma model that enables us to explore the effects of intra-tumor heterogeneity (ITH) on tumor aggressiveness and immunity independent of tumor mutational burden. Induction of UVB-derived mutations yields highly aggressive tumors with decreased anti-tumor activity. However, single-cell-derived tumors with reduced ITH are swiftly rejected. Their rejection is accompanied by increased T cell reactivity and a less suppressive microenvironment. Using phylogenetic analyses and mixing experiments of single-cell clones, we dissect two characteristics of ITH: the number of clones forming the tumor and their clonal diversity. Our analysis of melanoma patient tumor data recapitulates our results in terms of overall survival and response to immune checkpoint therapy. These findings highlight the importance of clonal mutations in robust immune surveillance and the need to quantify patient ITH to determine the response to checkpoint blockade.

Related Concept Videos

Generation of Induced Pluripotent Stem Cells from Human Melanoma Tumor-infiltrating Lymphocytes10:03

Generation of Induced Pluripotent Stem Cells from Human Melanoma Tumor-infiltrating Lymphocytes

The goal of this protocol is to show the protocol for reprogramming melanoma tumor-infiltrating lymphocytes into induced pluripotent stem...
10.2K
Microfluidic Co-Culture Models for Dissecting the Immune Response in in vitro Tumor Microenvironments07:46

Microfluidic Co-Culture Models for Dissecting the Immune Response in in vitro Tumor Microenvironments

In the age of immunotherapy and single-cell genomic profiling, cancer biology requires novel in vitro and computational tools for investigating the tumor-immune interface in a proper spatiotemporal context. We describe protocols to exploit tumor-immune microfluidic co-cultures in 2D and 3D settings, compatible with dynamic, multiparametric monitoring of cellular...
5.4K
Screening for Melanoma Modifiers using a Zebrafish Autochthonous Tumor Model10:23

Screening for Melanoma Modifiers using a Zebrafish Autochthonous Tumor Model

A rapid way to screen for melanoma modifiers using a zebrafish autochthonous tumor model is presented. It takes advantage of the miniCoopR vector which allows for expression of candidate melanoma genes in melanocytes. A method to obtain melanoma-free survival curves, an invasion assay, a protocol for antibody staining of scale melanocytes and a melanoma transplantation assay are...
14.1K
miniCoopR Vector-based Transgenesis: A Technique to Screen Melanoma-inducing Genes in Zebrafish Tumor Model04:07

miniCoopR Vector-based Transgenesis: A Technique to Screen Melanoma-inducing Genes in Zebrafish Tumor Model

This video describes a method to screen for the melanoma modifying genes using a transgenic zebrafish tumor model. When injected with a melanoma-inducing miniCoopR vector, the zebrafish develops melanomas and can therefore be used to study the genetic factors affecting tumor development in...
1.6K
Enrichment and Characterization of the Tumor Immune and Non-immune Microenvironments in Established Subcutaneous Murine Tumors08:32

Enrichment and Characterization of the Tumor Immune and Non-immune Microenvironments in Established Subcutaneous Murine Tumors

Here we describe a method to separate and enrich components of the tumor immune and non-immune microenvironment in established subcutaneous tumors. This technique allows for the separate analysis of tumor immune infiltrate and non-immune tumor fractions which can permit comprehensive characterization of the tumor immune...
10.3K
Humoral Immune Responses01:36

Humoral Immune Responses

Overview
83.4K