错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Genomic Catastrophe Defines the Evolutionary Trajectory of Adrenocortical Carcinoma

  • Samuel Backman,
  • Fredrik Axling,
  • Liang Zhang,
  • Johan Botling,
  • C Christofer Juhlin,
  • Elham Barazeghi,
  • Britt Skogseid,
  • Branislav Klimácek,
  • Matilda Annebäck,
  • Jan Zedenius,
  • Olov Norlén,
  • Peter Stålberg,
  • Joakim Crona,
  • Tobias Åkerström

摘要

The mechanisms underlying how adrenocortical carcinoma (ACC) progresses into a metastatic and lethal disease remain poorly understood. To address this, we performed comprehensive genomic analyses to delineate the evolutionary trajectory of advanced ACC. Fresh frozen tumour samples (n = 29) were obtained from nine patients, all of whom had matched primary and relapse specimens, including recurrent (n = 4) and metastatic (n = 11) lesions. In four patients, multiple primary and metastatic samples were available, enabling detailed evolutionary comparisons. All tumours underwent whole-genome sequencing, RNA sequencing, and DNA methylation profiling. Our analyses revealed that seven of nine patients exhibited global loss of heterozygosity (LOH) often followed by whole-genome doubling, resulting in copy-neutral LOH. SNP-based analyses indicated that these alterations occurred as a single catastrophic event that was conserved across all matched samples within each patient, suggesting that this event constitutes a truncal feature of the evolutionary tree. These results support a model in which chromosomal aneuploidy is important in ACC tumourigenesis, potentially distinguishing carcinomas from benign adrenal adenomas. This may explain the rarity of adenoma-to-carcinoma transformation and suggest a diagnostic and therapeutic relevance of chromosomal instability in ACC.