Search bioRxiv⌕ Search

Biology subjects

del Castillo, A.

Publications and source records attributed to del Castillo, A..

2 recordsLinked to original sources

Genomic consequences of isolation and inbreeding in an island dingo population

Dingoes come from an ancient canid lineage that originated in East Asia around 8000-11,000 years BP. As Australias largest terrestrial predator, dingoes play an important ecological role. A small, protected population exists on a world heritage listed offshore island, Kgari (formerly Fraser Island). Concern regarding the persistence of dingoes on Kgari has risen due to their low genetic diversity and elevated inbreeding levels. However, whole-genome sequencing data is lacking from this population. Here, we include five new whole-genome sequences of Kgari dingoes. We analyze a total of 18 whole genome sequences of dingoes sampled from mainland Australia and Kgari to assess the genomic consequences of their demographic histories. Long (>1 Mb) runs of homozygosity (ROH) -- indicators of inbreeding -- are elevated in all sampled dingoes. However, Kgari dingoes showed significantly higher levels of very long ROH (>5 Mb), providing genomic evidence for small population size, isolation, inbreeding, and a strong founder effect. Our results suggest that, despite current levels of inbreeding, the Kgari population is purging strongly deleterious mutations, which, in the absence of further reductions in population size, may facilitate the persistence of small populations despite low genetic diversity and isolation. However, there may be little to no purging of mildly deleterious alleles, which may have important long-term consequences, and should be considered by conservation and management programs. SIGNIFICANCEA long-standing question in conservation genetics is whether long-term isolation and elevated levels of inbreeding always leads to inevitable population extinction. Here we conduct the first-ever whole-genome analysis of a population of dingoes living in long-term isolation on an island off the coast of Australia (Kgari). We show that these animals are beset by very low genetic diversity, likely the result of extensive inbreeding, and an elevated number of deleterious homozygotes. However, our results suggest that these dingoes are likely purging highly deleterious alleles, which may have allowed them to persist long term despite their extremely small population (<200 individuals).

evolutionary biology↗

CD39+ conventional CD4+ T cells with exhaustion traits and cytotoxic potential infiltrate tumors and expand upon CTLA-4 blockade

BackgroundConventional CD4+ T (Tconv) lymphocytes play important roles in tumor immunity; however, their contribution to tumor elimination remains poorly understood. MethodsHere we describe a subset of Tconv cells characterized by the expression of CD39. The phenotype, the effector function and transcriptional profile of tumor-infiltrating CD39+ Tconv lymphocytes from different mouse cancer models and breast cancer patients were studied by multiparametric flow cytometry and RNA sequencing. The impact of the in vivo CTLA-4 blockade on the tumor-infiltrating CD39+ Tconv population was assessed in mice grafted with the immunogenic MC38 colorectal tumor. Overall survival was evaluated in a cohort of patients from the TCGA consortium. ResultsIn mouse cancer models, we observed that CD39+ Tconv cells accumulated in tumors as they grew but were absent in lymphoid organs. Compared to tumor CD39- counterparts, CD39+ Tconv cells exhibited a cytotoxic and exhausted signature at the transcriptomic level, confirmed by high protein expression of inhibitory receptors and transcription factors related to the exhaustion phenotype. Additionally, CD39+ Tconv cells showed increased production of IFN gamma, granzyme B, perforin and CD107a expression, but reduced production of TNF. In vivo CTLA-4 blockade induced the expansion of tumor CD39+ Tconv cells, which maintained their cytotoxic and exhausted features. In breast cancer patients, CD39+ Tconv cells were found in tumors and in metastatic lymph nodes but were less frequent in adjacent non-tumoral mammary tissue and not detected in non-metastatic lymph nodes and blood. Human tumor CD39+ Tconv cells constituted a heterogeneous cell population with features of exhaustion, impaired TNF production, and high expression of inhibitory receptors and CD107a. We found that high CD4 and ENTPD1 (CD39) gene expression in human tumor tissues correlated with a higher overall survival rate in breast cancer patients. ConclusionsWe found that CD39 acts as a biomarker of Tconv cells with characteristics of both exhaustion and cytotoxic potential. CTLA-4 blockade expands CD39+CD4+ T cells which may contribute to the reduction of tumor development. Discovering the role of CD39-expressing CD4+ T cells in the tumor microenvironment should help design new strategies to manipulate them and improve the efficacy of current immunotherapies.

immunology↗