RESEARCH BASE

Search 3,721 documents across 34 fields — every claim tier-rated by evidence

3,721 Documents 34 Sections 43,625 Citations 34,852 Keywords Indexed 4 Evidence Tiers

3,633 are the core, quality-scored corpus (34 lettered sections — see How We Work); the remaining 88 are cross-corpus synthesis documents (68 InterDocs, 12 Connections, 8 Theories) also indexed here.

3,719 results for "C symmetry" — page 46 of 186

Z_1_12 Verified Molecular Biology

Z_1_12 — Genome Architecture and 3D Organization

The human genome — approximately 6.4 billion base pairs of DNA — is packed into a nucleus only ~6 μm in diameter. If stretched end-to-end, the DNA of a single human cell would extend about 2 meters, yet it is packaged an

genome architecture 3D genome chromatin organization topologically associating domains TADs chromosome territories
Z_1_11 Verified Molecular Biology

Z_1_11 — Polyploidy and Genome Duplication

Polyploidy — the possession of more than two complete sets of chromosomes — is a major force in genome evolution, particularly in plants and some animal lineages. Susumu Ohno (1970) proposed that whole genome duplication

polyploidy genome duplication whole genome duplication WGD autopolyploidy allopolyploidy
Z_1_09 Verified Molecular Biology

Z_1_09 — Copy Number Variation and Structural Genomics

Copy number variations (CNVs) — segments of DNA ranging from ~1 kilobase to several megabases that are present in variable numbers across individuals — represent the most impactful form of genetic variation in the human

copy number variation CNV structural variation deletion duplication inversion
Z_1_14 Verified Molecular Biology

Z_1_14 — Chromatin Remodeling: Epigenetic Architecture of the Genome

Chromatin remodeling — the dynamic restructuring of the protein-DNA complex (chromatin) that packages eukaryotic genomes — is a central mechanism of gene regulation and a cornerstone of epigenetics. In eukaryotic cells,

chromatin histone nucleosome epigenetics histone modification acetylation
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_21 Verified Molecular Biology

Z_4_21 — Autophagy Mechanisms

Autophagy (from Greek, "self-eating") is a fundamental cellular process by which eukaryotic cells degrade and recycle their own components — damaged organelles, protein aggregates, intracellular pathogens, and surplus cy

autophagy autophagosomes lysosome Ohsumi ATG genes mTOR
Z_4_20 Verified Molecular Biology

Z_4_20 — Quorum Sensing in Bacteria

Quorum sensing (QS) is a chemical communication system used by bacteria to coordinate gene expression in response to population density — enabling single-celled organisms to exhibit collective behaviors that would be ine

quorum sensing autoinducer AHL AI-2 bioluminescence biofilm
Z_4_13 Verified Molecular Biology

Z_4_13 — Membrane Biology: Lipid Bilayers, Rafts, and Cellular Boundaries

Biological membranes — the lipid bilayer structures that define cells and compartmentalize their interiors — are fundamental to all life on Earth. Every cell is bounded by a plasma membrane that separates the interior (c

membrane lipid bilayer fluid mosaic model Singer-Nicolson lipid raft phospholipid
Z_4_05 Verified Molecular Biology

Z_4_05 — Synthetic Biology and Minimal Genomes

Synthetic biology aims to design, construct, and engineer biological systems and organisms with novel functions not found in nature — or to redesign existing biological systems for useful purposes. The field's landmark a

synthetic biology minimal genome JCVI-syn3.0 Mycoplasma mycoides synthetic cell Venter
Z_4_17 Verified Molecular Biology

Z_4_17 — Non-coding RNA Networks: Regulation Beyond the Genome

Non-coding RNAs (ncRNAs) — RNA molecules that are not translated into protein but perform functional roles in the cell — have emerged since the late 1990s as a vast and previously unsuspected layer of biological regulati

non-coding RNA microRNA lncRNA RNA interference gene regulation RNA world
Z_4_06 Verified Molecular Biology

Z_4_06 — Psychedelic Neurochemistry: 5-HT2A, Tryptamines, and Molecular Mechanisms

Psychedelic neurochemistry — the molecular-level study of how psychedelic compounds alter brain function to produce their characteristic effects (visual hallucinations, synesthesia, ego dissolution, mystical-type experie

psychedelics 5-HT2A receptor serotonin tryptamines psilocybin LSD
Z_4_02 Verified Molecular Biology

Z_4_02 — Stem Cells and Pluripotency

Stem cells — defined by the dual capacity for self-renewal (division producing at least one daughter cell retaining stemness) and differentiation (specialization into distinct cell types) — are the foundational building

stem cell pluripotency embryonic stem cell induced pluripotent stem cell iPSC Yamanaka factors
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_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_10 Verified Molecular Biology

Z_4_10 — Signal Transduction: How Cells Communicate

Signal transduction — the molecular mechanisms by which cells detect, interpret, and respond to external signals (hormones, growth factors, neurotransmitters, cytokines, environmental cues) — is one of the central organi

signal transduction cell signaling receptor kinase second messenger G protein
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
Z_4_04 Verified Molecular Biology

Z_4_04 — RNA Biology: Types and Functions

RNA (ribonucleic acid) — once considered merely a passive intermediary between DNA and protein — is now recognized as the most functionally diverse class of biological macromolecules, performing roles in catalysis, gene

RNA biology RNA types messenger RNA mRNA transfer RNA tRNA
Z_4_07 Verified Molecular Biology

Z_4_07 — The Tree of Life: Molecular Phylogenetics and Universal Ancestry

The Tree of Life — the branching diagram representing the evolutionary relationships among all living organisms — has been fundamentally reshaped by molecular phylogenetics, the reconstruction of evolutionary history usi

tree of life phylogenetics universal common ancestor LUCA molecular phylogeny horizontal gene transfer
Z_4_01 Verified Molecular Biology

Z_4_01 — Human Microbiome, Gut-Brain Axis, and the Holobiont Concept

The human microbiome — the ~38 trillion microbial cells (bacteria, archaea, fungi, viruses) inhabiting the human body — constitutes a co-evolved ecosystem that profoundly influences health, immunity, metabolism, developm

microbiome gut-brain axis holobiont microbiota bacteria gut flora
Z_4_03 Verified Molecular Biology

Z_4_03 — Forensic Genetics and DNA Identification

Forensic genetics uses DNA analysis to identify individuals, establish biological relationships, and solve criminal cases — a revolution that began when Sir Alec Jeffreys (1984, University of Leicester) discovered DNA fi

forensic genetics DNA fingerprinting STR profiling short tandem repeat CODIS combined DNA index system