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46 results for "protein degradation" — page 1 of 3

L_5_14 Verified Genetics & Origins

L_5_14 — Amino Acid Racemization Dating Method

Amino acid racemization (AAR) — a geochronological dating technique based on the chemical conversion of L-amino acids (the biologically predominant enantiomer in living organisms) to D-amino acids (the mirror-image confi

amino acid racemization AAR dating method D/L ratio enantiomers isoleucine epimerization
Z_2_17 Verified Molecular Biology

Z_2_17 — Prion Biology: Self-Propagating Protein Misfolding and Transmissible Encephalopathies

Prions — proteinaceous infectious particles lacking nucleic acid — represent a paradigm-shattering departure from the central dogma that biological information flows from DNA to RNA to protein. The protein-only hypothesi

prion PrPSc PrPC transmissible spongiform encephalopathy Stanley Prusiner mad cow disease
Z_4_18 Verified Molecular Biology

Z_4_18 — Protein Misfolding and Prion Diseases

Prion diseases — transmissible spongiform encephalopathies (TSEs) — are fatal neurodegenerative disorders caused by the misfolding and self-propagating aggregation of a normal cellular protein (PrPᶜ) into a pathological

prion protein-misfolding amyloid bse cjd mad-cow-disease
Z_4_12 Verified Molecular Biology

Z_4_12 — Autophagy: The Cell's Self-Eating Recycling System

Autophagy (from Greek auto "self" + phagein "to eat") — the process by which cells degrade and recycle their own components — is a fundamental cellular quality control and survival mechanism conserved from yeast to human

autophagy Ohsumi lysosome mTOR autophagosome protein degradation
Z_4_22 Verified Molecular Biology

Z_4_22 — Protein Chaperone Systems

Molecular chaperones are a diverse group of proteins that assist other proteins in achieving and maintaining their correct three-dimensional structures — preventing misfolding, aggregation, and toxic accumulation of non-

chaperone heat shock protein Hsp70 Hsp90 GroEL GroES
Z_5_20 Verified Molecular Biology

Z_5_20 — Proteomics: The Complete Protein Landscape of Life

Proteomics — the large-scale study of the complete protein complement (proteome) of a cell, tissue, or organism — emerged in the 1990s as the necessary counterpart to genomics. While the human genome contains ~20,000 pro

proteomics mass spectrometry protein expression protein-protein interactions post-translational modifications two-dimensional gel electrophoresis
Z_5_05 Verified Molecular Biology

Z_5_05 — Proteomics: The Global Study of Proteins

Proteomics — the large-scale study of the complete set of proteins (proteome) expressed by a cell, tissue, or organism at a given time — bridges the gap between the genome (static DNA sequence) and the phenotype (observa

proteomics mass spectrometry protein identification two-dimensional gel electrophoresis tandem MS post-translational modification
Z_2_08 Molecular Biology

Z_2_08 — Prion Genetics and Misfolded Proteins

Prions are infectious agents composed entirely of misfolded protein — the only known pathogen that contains no nucleic acid (no DNA, no RNA). The protein-only hypothesis (Stanley Prusiner, 1982 — Nobel Prize 1997) states

prion PRNP PrP PrPSc PrPC prion diseases
Z_4_09 Verified Molecular Biology

Z_4_09 — Protein Folding: From Anfinsen's Dogma to AlphaFold

Protein folding — the process by which a linear chain of amino acids spontaneously adopts its specific three-dimensional structure — is one of the most fundamental problems in molecular biology and has been called the "s

protein folding Anfinsen AlphaFold Levinthal paradox chaperones folding funnel
G_1_06 Verified Modern Frameworks

G_1_06 — Paleoproteomics — Ancient Proteins Beyond DNA

Paleoproteomics is the extraction, identification, and analysis of ancient proteins from archaeological and paleontological materials — an emerging molecular method that extends biological identification far beyond the t

paleoproteomics ancient proteins ZooMS collagen fingerprinting mass spectrometry LC-MS/MS
R_3_10 Biology & Evolution

R_3_10 — Protein Evolution and Molecular Machines

Proteins are the molecular workhorses of life — catalyzing reactions, building structures, transporting cargo, transmitting signals, and defending against pathogens. They are also some of biology's most astonishing molec

protein evolution molecular machine protein folding enzyme kinesin myosin
Z_2_20 Verified Molecular Biology

Z_2_20 — Prion Molecular Biology

At the molecular level, prion diseases arise from the conversion of the normal cellular prion protein (PrPᶜ) into a misfolded, aggregation-prone conformer (PrPˢᶜ) through a process that remains one of the most extraordin

prion PrP protein misfolding amyloid conformational change PrPSc
Z_4_08 Verified Molecular Biology

Z_4_08 — The Ribosome: The Molecular Machine of Translation

The ribosome — the massive molecular machine responsible for translating the genetic information encoded in messenger RNA (mRNA) into functional proteins — is arguably the most important macromolecular complex in all of

ribosome translation protein synthesis rRNA Ramakrishnan Steitz
Z_4_23 Verified Molecular Biology

Z_4_23 — Memory as Physical and Molecular Phenomenon

What is a memory made of? The question has driven neuroscience from Santiago Ramón y Cajal's 1894 hypothesis that learning strengthens connections between neurons, through Donald Hebb's 1949 postulate that "neurons that

molecular memory memory engram synaptic plasticity long-term potentiation LTP Eric Kandel
Z_4_16 Verified Molecular Biology

Z_4_16 — Phase Separation in Cell Biology: Membraneless Organelles and Biomolecular Condensates

Liquid-liquid phase separation (LLPS) is the biophysical process by which proteins and nucleic acids demix from the surrounding cytoplasm or nucleoplasm to form concentrated, membrane-free droplets called biomolecular co

phase separation biomolecular condensate membraneless organelle liquid-liquid phase separation LLPS intrinsically disordered protein
R_5_17 Verified Biology & Evolution

R_5_17 — Prion Biology and Ecology

Prions — infectious agents composed entirely of misfolded protein, devoid of nucleic acid — represent one of the most conceptually revolutionary discoveries in biology, fundamentally challenging the central dogma that ge

prion PrP transmissible spongiform encephalopathy TSE mad cow disease BSE
W_5_13 Credible World Civilizations

W_5_13 — Mississippian Decline: Cahokia Collapse and Abandonment Theories

Cahokia — the largest pre-Columbian city north of Mexico, located in the American Bottom floodplain of the Mississippi River near modern-day St. Louis, Missouri/East St. Louis, Illinois — rose rapidly around 1050 CE to b

Mississippian Cahokia collapse abandonment mound city depopulation
ZF_2_04 Oceanography

ZF_2_04 — Bioluminescence and Deep-Sea Phenomena

In the deep ocean — where sunlight vanishes below ~1,000 m — bioluminescence is the dominant source of light and the most widespread form of communication on Earth. An estimated 76% of all ocean organisms produce or disp

bioluminescence luciferin luciferase counterillumination milky seas anglerfish
ZF_5_10 Verified Oceanography

ZF_5_10 — Marine Biotechnology: Blue Pharmacy and Ocean Genetic Resources

The ocean harbors an estimated 2.2 million species (most undescribed) across environments spanning freezing polar waters to superheated hydrothermal vents, anoxic sediments to UV-drenched coral reefs — a staggering diver

marine biotechnology marine natural products blue pharmacy bioprospecting marine drugs cone snail
Z_5_04 Verified Molecular Biology

Z_5_04 — Structural Biology: Seeing Molecules at Atomic Resolution

Structural biology — the determination of the three-dimensional atomic structures of biological macromolecules (proteins, nucleic acids, and their complexes) — has been one of the most transformative disciplines in moder

structural biology X-ray crystallography cryo-EM NMR spectroscopy protein structure resolution revolution