Evo 2 now includes information from humans, plants, and other eukaryotic species to expand its capabilities in generative functional genomics.
Atrandi Biosciences, a life sciences company pioneering next-generation single-cell analysis technology, today announced a $25 million Series A funding round led by Lux Capital, with participation ...
An artificial-intelligence network trained on a vast trove of sequence data is a step towards designing completely new ...
We suggest that as the Earth changed physically and chemically over time, its surface conditions allowed for a greater diversity of habitats for life. And these changes operate on geologic timescales ...
Due to proteostasis stress induced by aging or disease, misfolded proteins can form toxic intermediate species of aggregates and eventually mature into less toxic inclusion bodies (IBs). Here, using a ...
Virginia Tech neuroscientists have uncovered a mitochondrial process that supports the brain cells critical for learning, ...
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AZoLifeSciences on MSNHow Proteins Are Made: From DNA to FunctionProtein synthesis is vital for life, translating genetic information from DNA to functional proteins through transcription ...
A complex molecular machine, the spliceosome, ensures that the genetic information from the genome, after being transcribed into mRNA precursors, is correctly assembled into mature mRNA. Splicing is a ...
In general, chemotherapy medications work by attacking cells or by preventing them from growing and dividing. Cancer cells tend to grow and divide rapidly and uncontrollably, and many chemotherapy ...
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AZoLifeSciences on MSNWhat Are the Phases of Mitosis?Mitosis orchestrates eukaryotic cell division, maintaining genetic fidelity and playing a key role in development, tissue homeostasis, and cancer progression.
Translational control (TC) is one the crucial steps that dictate gene expression and alter the outcome of physiological process like programmed cell death, metabolism, and proliferation in a ...
An MTF2-containing subcomplex of Polycomb Repressive Complex 2 promotes cell cycle progression through repression of D-type cyclin expression in certain cellular contexts.
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