Results 41 to 50 of about 706 (250)
Ligand‐dependent transcriptional heterogeneity in cell cycle gene expression delays G1/S entry
EGF and HRG induce distinct G1/S progression programs in ErbB2‐amplified BT474 breast cancer cells. Despite activating the potent ErbB2–ErbB3 heterodimer, HRG does not accelerate cell‐cycle entry. Instead, EGF promotes earlier restriction‐point passage via ERK–FOS signaling, whereas HRG activates the AKT–MYC axis, driving transcriptional heterogeneity ...
Ririn Rahmala Febri +5 more
wiley +1 more source
Area Efficient Hybrid Parallel Prefix Adders
AbstractAddition is a timing critical operation in almost all modern processing units. The performance parameters such as the implementation area, the adder latency and the power dissipation decide the choice of adders for different applications. Hence, there is an extensive research attention towards designing higher speed and less complex adder ...
Poornima, N., Bhaaskaran, V. S. Kanchana
openaire +1 more source
Emerging experimental and computational methods for studying redox‐regulated structural transitions
Redox reactions can reshape proteins and alter how they behave in cells, with important consequences for health and disease. This review explores emerging experimental and computational approaches for discovering these redox‐sensitive protein switches, revealing their structural effects, and predicting their behavior, opening new opportunities to ...
Tasneem Rass +2 more
wiley +1 more source
Synergistic perspectives—How single‐molecule biophysics complement biochemical understanding
In this review, we discuss how ensemble biochemistry and single‐molecule approaches are complementary, outline commonly used single‐molecule techniques, and illustrate their relevance through two representative case studies: chromatin organization by SMC complexes and pathway choice during DNA double‐strand break repair.
Sara De Bragança +2 more
wiley +1 more source
This paper presents a novel Sparse Kogge-Stone adder architecture with a sparsity factor of 2, offering a compelling solution to the challenges faced by parallel prefix adders.
KHAN, A., WAIRYA, S.
doaj +1 more source
Synergistic Hybrid GDI–CNTFET Architecture for Low-Power and Area-Optimized Nanoscale VLSI Circuits
As CMOS technology continues to expand to a deep sub-micron scale, standard designs are confronted with many challenges in terms of energy dissipation, leakage currents and area.
Jayakrishna Padala +2 more
doaj +1 more source
Dimethyl fumarate (DMF) reduces growth of HPV‐positive cervical cancer spheroids and induces ferroptosis in cervical cancer cells via blocking SLC7A11/Glutathione (GSH) axis. Combination of subcytotoxic doses of DMF and cisplatin (CDDP) further suppresses spheroid growth and drives cell death in 2D culture models.
Carolina Punziano +6 more
wiley +1 more source
Full adder Design using Hybrid Technology
Full Adder is a fundamental element that is used in all the processor for not only in ALU but in various part of the chipset. The work proposes a Hybrid design methodology to contribute the requirements for the designing of full adder with reduced delay. The Analysis of the designed full adder is done at 27C and 70C temperature range in CMOS 120 nm, 90
Rajeev Thakur, Ankita Gupta
openaire +1 more source
Keratin 19 (KRT19) is overexpressed in high‐grade serous ovarian cancer with high levels of Kallikrein‐related peptidases (KLK) 4–7 and is associated with poor survival. In vivo analyses demonstrate that elevated KRT19 increases peritoneal tumour burden.
Sophia Bielesch +13 more
wiley +1 more source
Dormant cancer cells can hide in distant organs for years, evading treatment and the immune system. This review highlights how signals from the surrounding tissue and immune environment keep these cells inactive or trigger their reawakening. Understanding these mechanisms may help develop therapies to eliminate or control dormant cells and prevent ...
Kanishka Tiwary +1 more
wiley +1 more source

