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Biology subjects

Bains, N.

Publications and source records attributed to Bains, N..

2 recordsLinked to original sources

Nutrient-Sensing Nuclear Receptor PPARα Controls Liver Proteostasis

Peroxisome proliferator-activated receptor alpha (PPAR) is a nuclear receptor that orchestrates metabolic adaptation to fasting by regulating hepatic lipid and glucose metabolism. While these functions are well established, its role in protein homeostasis, another energy-intensive process, has remained unclear. Here, we performed multi-omics analyses in wild-type and PPAR knockout mice treated with the PPAR agonist fenofibrate to define its broader role in proteostasis. Interestingly, chronic PPAR activation suppressed hepatic secretory pathways, reducing secretome gene expression and circulating serum proteins, and downregulated genes involved in endoplasmic reticulum (ER) translocation, glycosylation, folding, and trafficking. Concurrently, PPAR activation enhanced proteasome activity, which was associated with selective induction of proteasome 26S subunit non-ATPase (PSMD) family members. In addition, hepatic protein synthesis was strongly attenuated. This was associated with an increase in the inhibitory phosphorylation of the eukaryotic translation initiation factor 2 (eIF2), that in turn was linked to disrupted iron homeostasis. Together, these findings identify PPAR as a regulator of proteostasis, suppressing protein synthesis and secretion while promoting protein degradation pathways. Beyond its canonical role in lipid and glucose metabolism, we conclude that PPAR exerts an additional energy-conserving function by coordinating proteostasis, expanding our understanding of its systemic metabolic role.

physiology↗

Assessment of phytoplanktonic community and abiotic parameters of Rana stream in Mandi district, Himachal Pradesh, India

This research paper gives insight into the physico-chemical characteristics of the Rana stream located in the Mandi district of Himachal Pradesh, India, with a particular emphasis on the diversity of diatoms. During the course of this study, eight genera of phytoplankton were identified. Statistical analysis using Pearson correlation unveiled significant associations between the physicochemical parameters and the different groups of diatoms. To assess the diversity of phytoplankton within the stream, several diversity indices were employed. Highest diversity was observed during the month of February. Furthermore, the calculation of water quality indices for the Rana stream yielded values falling within the range of 47.34 to 59.01. This range signifies that the water quality within the Rana stream can be categorized according to the Water Quality Index (WQI) scale, spanning from "good" to "poor." It is worth noting that the presence of a diverse assembly of pollution-tolerant diatoms such as Fragilaria, Navicula, Gomphonema, and Cymbella, particularly during the month of March, which coincided with the period of the poorest water quality, is indicative of the eutrophic nature of the stream.

zoology↗