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Ramalingam, K.

Publications and source records attributed to Ramalingam, K..

3 recordsLinked to original sources

Tumor microenvironmental determinants of high-risk DCIS progression

ABSTRACT/SUMMARYDuctal carcinoma in situ (DCIS) constitutes an array of morphologically recognized intraductal neoplasms in the mammary ductal tree defined by an increased risk for subsequent invasive carcinomas at or near the site of biopsy detection. However, only 15-45% of untreated DCIS cases progress to invasive cancer, so understanding mechanisms that prevent progression is key to avoid overtreatment and provides a basis for alternative therapies and prevention. This study was designed to characterize the tumor microenvironment and molecular profile of high-risk DCIS that grew to a large size but remained as DCIS. All patients had DCIS lesions >5cm in size with at least one additional high-risk feature: young age (<45 years), high nuclear grade, hormone receptor negativity, HER2 positivity, the presence of comedonecrosis, or a palpable mass. The tumor immune microenvironment was characterized using multiplex immunofluorescence to identify immune cells and their spatial relationships within the ducts and stroma. Gene copy number analysis and whole exome DNA sequencing identified the mutational burden and driver mutations, and quantitative whole-transcriptome/gene expression analyses were performed. There was no association between the percent of the DCIS genome characterized by copy number variants (CNAs) and recurrence events (DCIS or invasive). Mutations, especially missense mutations, in the breast cancer driver genes PIK3CA and TP53 were common in this high-risk DCIS cohort (47% of evaluated lesions). Tumor infiltrating lymphocyte (TIL) density was higher in DCIS lesions with TP53 mutations (p=0.0079) compared to wildtype lesions, but not in lesions with PIK3CA mutations (p=0.44). Immune infiltrates were negatively associated with hormone receptor status and positively associated with HER2 expression. High levels of CD3+CD8-T cells were associated with good outcomes with respect to any subsequent recurrence (DCIS or invasive cancer), whereas high levels of CD3+Foxp3+ Treg cells were associated with poor outcomes. Spatial proximity analyses of immune cells and tumor cells demonstrated that close proximity of T cells with tumor cells was associated with good outcomes with respect to any recurrence as well as invasive recurrences. Interestingly, we found that myoepithelial continuity (distance between myoepithelial cells surrounding the involved ducts) was significantly lower in DCIS lesions compared to normal tissue (p=0.0002) or to atypical ductal hyperplasia (p=0.011). Gene set enrichment analysis identified several immune pathways associated with low myoepithelial continuity and a low myoepithelial continuity score was associated with better outcomes, suggesting that gaps in the myoepithelial layer may allow access/interactions between immune infiltrates and tumor cells. Our study demonstrates the immune microenvironment of DCIS, in particular the spatial proximity of tumor cells and T cells, and myoepithelial continuity are important determinants for progression of disease.

cancer biology↗

VARIATIONS IN THE ULTRAVIOLET FLORAL PATTERNS AND POLLINATOR PREFERENCE AMONG SELECTED NON-INVASIVE AND INVASIVE PLANTS OF TAMIL NADU, INDIA

Fossil evidence shows that pollinator-mediated plant reproduction evolved [~]140 million years ago and bee facilitated pollination evolved [~]70 million years ago. Human vision is limited to the visible color range of 400 to 750 nanometres, whereas most pollinators can perceive the ultraviolet (UV) range in addition to visible colors. Bees have been reported to have highest spectral sensitivity in the ultraviolet spectrum. The main objectives of the study were (1) to assess the prevalence of ultraviolet floral patterns, (2) to analyse floral patterns in relation to plant-pollinator interaction among invasive and non-invasive plants, and (3) to test for intraspecific floral pattern variations among plants with different flower color morphs. A study was conducted on 188 plant species (80 invasive and 108 non-invasive) from parts of Western and Eastern Ghats region of Tamil Nadu, India. The flowers of the studied plant species were imaged in ultraviolet (320-380 nm) and visible spectrums. The mode of pollination for the selected species were documented and confirmed with existing literature. The intraspecific variations in the floral patterns among flower color polymorphic plant species (N=10) were documented in ultraviolet and visible spectrums. Among the studied plant species, around 58% had discernible floral patterns when observed in the UV spectrum, whereas the rest were observed to completely absorb or reflect UV radiation. Whereas 46% of the studied plants exhibited no pattern in the visible spectrum. A significant difference was observed in the pollinator relationship among the ultraviolet floral patterns in invasive plants ({chi}2 = 63.98, df = 32, P < 0.001), whereas no significant variation was evidenced in the pollinator relationship among the ultraviolet floral patterns in non-invasive plants ({chi}2 = 19.50, df = 24, P = 0.724). Analysis of pollinator preference revealed that invasive species were mostly pollinated by bee and butterfly mediated pollination, whereas non-invasive species were mostly pollinated by bees and generalist insects. Intraspecific variations in the floral ultraviolet signal were observed among different morphs in a few flower color polymorphic species, especially in Lantana camara. The multispectral analysis of floral patterns revealed that plants utilize both the visible and ultraviolet spectrums to effectively communicate with pollinators. The results from the present study strongly suggest that the variation in the floral ultraviolet signature among invasive species might play a vital role in plant-pollinator interaction and invasion success.

ecology↗

Uip4 governs growth phase-dependent organelle remodeling by modulating Saccharomyces cerevisiae lipidome

When yeast cells are exposed to nutrient-limiting conditions, they undergo transcriptional and translational reprogramming that results in the remodelling of metabolite utilization and organelle architecture. Organelle membranes and contacts also undergo structural and functional alterations. In the budding yeast Saccharomyces cerevisiae, regulated expression of Uip4 is shown to be a critical effector of nuclear shape and function, particularly during the stationary phase. In this work, we demonstrate that the absence of UIP4 affects the morphology of multiple other organelles including mitochondria, endoplasmic reticulum, vacuole and the distribution of lipid droplets. The results show that modulating carbon source, nitrogen availability and cellular energy state impact Uip4 expression. This expression of Uip4 is controlled by the transcription factor Msn2, downstream of Sch9 signaling pathway. Cells lacking Uip4 have poor survival in the stationary phase of the growth cycle. These cellular changes are concomitant with dysregulation of the global lipidome profile and aberrant organelle interaction. We propose that the dynamic and regulated expression of Uip4 is required to maintain lipid homeostasis and organelle architecture which is ultimately required to survive in nutrient limiting conditions such as stationary phase.

cell biology↗