4.8 Article

Reprogrammed transsulfuration promotes basal-like breast tumor progression via realigning cellular cysteine persulfidation

出版社

NATL ACAD SCIENCES
DOI: 10.1073/pnas.2100050118

关键词

persulfide; transsulfuration; hydrogen sulfide; basal-like breast cancer; cystathione beta-synthetase

资金

  1. 2019 Hungarian Thematic Excellence Program [TUDFO/51757/2019-ITM, TKP2020-NKA-26]
  2. National Laboratories Excellence Program (under the National Tumorbiology Laboratory Project)
  3. Hungarian National Research, Development and Innovation Office [KH_126766, K_129286, NVKP_16-1-2016-0005]
  4. European Union's Horizon 2020 Research and Innovation Programme [847912]
  5. Swedish Research Council
  6. Swedish Cancer Society
  7. Swedish Foundation for Strategic Research
  8. Stockholm County Council
  9. Cancer Society in Stockholm
  10. Japan Society for the Promotion of Science [L19520]

向作者/读者索取更多资源

Basal like breast cancer (BLBC) is an aggressive subtype of breast tumors with high Cys demand and reprogrammed Cys metabolism. CBS overexpression promotes tumor progression in BLBC, while CBS silencing makes BLBC cells more vulnerable to oxidative stress and CySSCy deprivation, leading to ferroptosis. This study suggests that persulfide-producing pathways are potential therapeutic targets for BLBC.
Basal like breast cancer (BLBC) is the most aggressive subtype of breast tumors with poor prognosis and limited molecular targeted therapy options. We show that BLBC cells have a high Cys demand and reprogrammed Cys metabolism. Patient-derived BLBC tumors from four different cohorts exhibited elevated expression of the transsulfuration enzyme cystathione beta-synthetase (CBS). CBS silencing (shCBS) made BLBC cells less invasive, proliferate slower, more vulnerable to oxidative stress and cystine (CySSCy) deprivation, prone to ferroptosis, and less responsive to HIF1-alpha activation under hypoxia. shCBS xenograft tumors grew slower than controls and exhibited impaired angiogenesis and larger necrotic areas. Sulfur metabolite profiling suggested that realigned sulfide/persulfide-inducing functions of CBS are important in BLBC tumor progression. Supporting this, the exclusion of serine, a substrate of CBS for producing Cys but not for producing sulfide/persulfide, did not exacerbate CySSCy deprivation-induced ferroptosis in shCBS BLBC cells. Impaired Tyr phosphorylation was detected in shCBS cells and xenografts, likely due to persulfidation-inhibited phosphatase functions. Overexpression of cystathione gamma-lyase (CSE), which can also contribute to cellular sulfide/persulfide production, compensated for the loss of CBS activities, and treatment of shCBS xenografts with a CSE inhibitor further blocked tumor growth. Glutathione and protein-Cys levels were not diminished in shCBS cells or xenografts, but levels of Cys persulfidation and the persulfide-catabolizing enzyme ETHE1 were suppressed. Finally, expression of enzymes of the oxidizing Cys catabolism pathway was diminished, but expression of the persulfide-producing CARS2 was elevated in human BLBC tumors. Hence, the persulfide-producing pathways are major targetable determinants of BLBC pathology that could be therapeutically exploited.

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