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Grencewicz, D. J.

Publications and source records attributed to Grencewicz, D. J..

2 recordsLinked to original sources

The tumor microbiome reacts to hypoxia and can influence response to radiation treatment in colorectal cancer

Tumor hypoxia has been shown to predict poor patient outcomes in several cancer types, partially because it reduces radiations ability to kill cells. We investigated whether some of the clinical effects of hypoxia could also be due to its impact on the tumor microbiome. We examined the RNA-seq data from the Oncology Research Information Exchange Network (ORIEN) database of colorectal cancer (CRC) patients treated with radiotherapy. For each tumor, we identified microbial RNAs and related them to the hypoxic gene expression scores calculated from host mRNA. Our analysis showed that the hypoxia expression score predicted poor patient outcomes and identified tumors enriched with certain microbes such as Fusobacterium nucleatum. The presence of other microbes, such as Fusobacterium canifelinum, predicted poor patient outcomes, suggesting a potential interaction between hypoxia, the microbiome, and radiation response. To investigate this concept experimentally, we implanted CT26 CRC cells into both immune-competent BALB/c and immune-deficient athymic nude mice. After growth, where tumors passively acquired microbes from the gastrointestinal tract, we harvested tumors, extracted nucleic acids, and sequenced host and microbial RNAs. We stratified tumors based on their hypoxia score and performed metatranscriptomic analysis of microbial gene expression. In addition to hypoxia-trophic and -phobic microbial populations, analysis of microbial gene expression at the strain level showed expression differences based on the hypoxia score. Hypoxia appears to not only associate with different microbial populations but also elicit an adaptive transcriptional response in intratumoral microbes. SIGNIFICANCETumor hypoxia reduces radiations ability to kill cells. We explored whether some of the clinical effects of hypoxia could also be due to interaction with the tumor microbiome. Hypoxic expression scores associated with certain microbes and elicited an adaptive transcriptional response in others.

immunology↗

Redefining the PTEN Promoter: Identification of Two Upstream Transcription Start Regions

Germline mutation of PTEN is causally observed in Cowden syndrome (CS) and is one of the most common genetic causes of autism spectrum disorder (ASD). However, the majority of individuals who present with CS-like clinical features are found to be PTEN-mutation negative. Reassessment of PTEN promoter regulation may help explain abnormal PTEN dosage, as only the minimal promoter and coding regions are currently included in diagnostic PTEN mutation analysis. We reanalyzed the architecture of the PTEN promoter using next-generation sequencing datasets. Specifically, run-on sequencing assays identified two additional TSRs at -2052 and -1907 basepairs from the start of PTEN, thus redefining the PTEN promoter and extending the PTEN 5UTR. The upstream TSRs described are active in cancer cell lines and human cancer and normal tissue. Further, these TSRs can produce novel PTEN transcripts due to the introduction of new splice sites. Evaluation of transcription factor binding specific to the upstream TSRs shows overrepresentation of TFs involved in inflammatory processes. Together, these data suggest that potentially clinically relevant promoter variants upstream of the known promoter may be overlooked in indivduals considered PTEN germline mutation-negative and may also explain lack of PTEN expression in sporadic neoplasias without PTEN somatic structural defects.

genetics↗