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Haematopoiesis
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Haematopoiesis (/hɪˌmætəpɔɪˈiːsɪs, ˌhiːmətoʊ-, ˌhɛmə-/, from Greek αἷμα, 'blood' and ποιεῖν 'to make'; also hematopoiesis in American English; sometimesDACH1 (2,731 words) [view diff] exact match in snippet view article find links to article
regulate gene expression, mRNA translation, coactivator binding, and cell fate determination during development. Multiple transcript variants encoding differentBARHL2 (73 words) [view diff] exact match in snippet view article find links to article
DNA-templated nervous system development neuron differentiation cell fate determination positive regulation of transcription by RNA polymerase II tissueGooseberry (gene) (1,670 words) [view diff] exact match in snippet view article
in the fruit fly such as Wingless and Hedgehog. The Drosophila cell fate determination pathway Wingless signaling (Wg), is activated by the signalingOsteochondroprogenitor cell (1,506 words) [view diff] exact match in snippet view article find links to article
β-catenin of the canonical Wnt signalling pathway plays a role in cell fate determination, as it is critical for osteoblastogenesis, and the differentiationHOXA2 (555 words) [view diff] exact match in snippet view article find links to article
development negative regulation of transcription by RNA polymerase II cell fate determination osteoblast development segment specification pattern specificationTransport protein (391 words) [view diff] exact match in snippet view article find links to article
Min; Shabala, Sergey (27 January 2022). "Cation transporters in cell fate determination and plant adaptive responses to a low-oxygen environment". JournalHES1 (2,892 words) [view diff] exact match in snippet view article find links to article
Biological process pattern specification process auditory receptor cell fate determination midbrain-hindbrain boundary morphogenesis inner ear receptor cellSOX17 (1,311 words) [view diff] exact match in snippet view article find links to article
transduction involved in regulation of gene expression endodermal cell fate determination mRNA transcription by RNA polymerase II regulation of mesodermalRetinal homeobox protein Rx (730 words) [view diff] exact match in snippet view article find links to article
expressed early in the eye primordia, and is required for retinal cell fate determination and also regulates stem cell proliferation. Towards the end ofDown syndrome cell adhesion molecule like 1 (116 words) [view diff] exact match in snippet view article find links to article
axon Biological process embryonic skeletal system morphogenesis cell fate determination central nervous system development brain development cell adhesionATOH1 (955 words) [view diff] exact match in snippet view article find links to article
pathway regulation of neuron differentiation auditory receptor cell fate determination cell differentiation positive regulation of inner ear auditoryHES5 (754 words) [view diff] exact match in snippet view article find links to article
component Biological process Notch signaling pathway auditory receptor cell fate determination establishment of epithelial cell polarity cell differentiationMAB21L2 (200 words) [view diff] exact match in snippet view article find links to article
GG (December 1999). "Two murine and human homologs of mab-21, a cell fate determination gene involved in Caenorhabditis elegans neural development". HumanPTCH1 (1,629 words) [view diff] exact match in snippet view article find links to article
morphogenesis cell differentiation involved in kidney development cell fate determination response to chlorate regulation of growth smoothened signalingDACH2 (419 words) [view diff] exact match in snippet view article find links to article
Drosophila protein dachshund, a transcription factor involved in cell fate determination in the eye, limb and genital disc of the fly. The encoded proteinMir-9/mir-79 microRNA precursor family (1,744 words) [view diff] exact match in snippet view article find links to article
loop involving microRNA-9 and nuclear receptor TLX in neural stem cell fate determination". Nat Struct Mol Biol. 16 (4): 365–71. doi:10.1038/nsmb.1576. PMC 2667220PTCH2 (531 words) [view diff] exact match in snippet view article find links to article
cell differentiation hair cycle epidermal cell fate specification cell fate determination negative regulation of smoothened signaling pathway epidermis developmentFucus (1,766 words) [view diff] case mismatch in snippet view article find links to article
PMID 8787737. Berger, F.; Taylor, A.; Brownlee, C. (1994-03-11). "Cell Fate Determination by the Cell Wall in Early Fucus Development". Science. 263 (5152)Neurogenesis (2,758 words) [view diff] exact match in snippet view article find links to article
5-methylcytosine demethylation. These modifications are critical for cell fate determination in the developing and adult mammalian brain. DNA cytosine methylationGATA6 (1,403 words) [view diff] exact match in snippet view article find links to article
cell differentiation cellular response to BMP stimulus endodermal cell fate determination blood coagulation in utero embryonic development negative regulationMAML1 (819 words) [view diff] no match in snippet view article find links to article
protein that plays a role in the Notch signaling pathway involved in cell-fate determination. There is in vitro evidence that the human homolog forms a complexNeurotrophin-4 (1,241 words) [view diff] exact match in snippet view article find links to article
receptor protein tyrosine kinase signaling pathway ganglion mother cell fate determination epidermis development regulation of signaling receptor activityMESP1 (343 words) [view diff] exact match in snippet view article find links to article
of transcription, DNA-templated cardioblast migration cardiac cell fate determination multicellular organism development gastrulation embryonic heartTRIM15 (520 words) [view diff] exact match in snippet view article find links to article
intracellular anatomical structure Biological process mesodermal cell fate determination positive regulation of DNA-binding transcription factor activityNotch 4 (1,018 words) [view diff] exact match in snippet view article find links to article
receptor target branching involved in blood vessel morphogenesis cell fate determination endothelial cell differentiation transcription initiation fromNucleoside-diphosphate kinase (2,538 words) [view diff] exact match in snippet view article find links to article
neural development process, which includes neural patterning and cell fate determination. Furthermore, NDPK is involved with the signal transduction processesNotch signaling pathway (10,149 words) [view diff] exact match in snippet view article find links to article
Notch signaling has a major role in the induction of mesoderm and cell fate determination. As mentioned previously, C. elegans has two genes that encodeNotch 2 (1,612 words) [view diff] exact match in snippet view article find links to article
Notch signaling involved in heart development apoptotic process cell fate determination intracellular receptor signaling pathway negative regulation ofPAX2 (1,868 words) [view diff] exact match in snippet view article find links to article
involved in camera-type eye development urogenital system development cell fate determination negative regulation of programmed cell death vestibulocochlearDelta-like 1 (1,065 words) [view diff] exact match in snippet view article find links to article
population proliferation nephron development spinal cord development cell fate determination inner ear development multicellular organism development regulationKoller's sickle (1,429 words) [view diff] exact match in snippet view article find links to article
zones of the embryo, like the PMZ, are key to development and cell fate determination in chick embryos. Avian gastrulation occurs as cells move thoughEyespot (mimicry) (2,976 words) [view diff] exact match in snippet view article
signaling are fated to become the foci, indicating that focus cell fate determination relies on high concentrations of Hh in surrounding cells. HoweverDinaciclib (872 words) [view diff] exact match in snippet view article find links to article
V (November 2017). "Satb2Cre/+ mouse as a tool to investigate cell fate determination in the developing neocortex". Journal of Neuroscience Methods.MCL1 (1,490 words) [view diff] exact match in snippet view article find links to article
changes extrinsic apoptotic signaling pathway in absence of ligand cell fate determination regulation of response to DNA damage stimulus negative regulationMEF2C (1,887 words) [view diff] exact match in snippet view article find links to article
synaptic plasticity regulation of NMDA receptor activity muscle cell fate determination positive regulation of osteoblast differentiation regulation ofNeuron (9,015 words) [view diff] exact match in snippet view article find links to article
expression in differentiating neural stem cells, and are critical for cell fate determination in the developing and adult mammalian brain. Epigenetic modificationsCYP26B1 (1,262 words) [view diff] exact match in snippet view article find links to article
spermatogenesis establishment of T cell polarity cornification cell fate determination inflammatory response regulation of T cell differentiation xenobioticJAG1 (2,693 words) [view diff] exact match in snippet view article find links to article
proliferation angiogenesis nephron development animal organ morphogenesis cell fate determination inner ear development endothelial cell differentiation camera-typeGloria Choi (2,966 words) [view diff] exact match in snippet view article find links to article
19;46(4):647-60. Olig genes and the genetic logic of CNS neural cell fate determination. Anderson, D.J., Choi, G., and Zhou, Q. Clinical Neuroscience ResearchTBX2 (2,749 words) [view diff] exact match in snippet view article find links to article
morphogenesis multicellular organism development heart looping muscle cell fate determination cellular senescence developmental growth involved in morphogenesisRetinal regeneration (1,201 words) [view diff] exact match in snippet view article find links to article
Muller glia to dedifferentiate Notch regulates differentiation and cell fate determination maintains Muller glial quiescence N-cadherin mediates cell-cellCatenin beta-1 (12,347 words) [view diff] exact match in snippet view article find links to article
" at cancer.gov "The role of β-catenin in signal transduction, cell fate determination and trans-differentiation" at nih.gov "Researchers Offer FirstRetina (9,293 words) [view diff] exact match in snippet view article find links to article
including the bHLH and homeodomain factors. In addition to guiding cell fate determination, cues exist in the retina to determine the dorsal-ventral (D-V)PAX6 (2,710 words) [view diff] exact match in snippet view article find links to article
RNA polymerase II establishment of mitotic spindle orientation cell fate determination neuron migration negative regulation of protein phosphorylationSOX2 (3,338 words) [view diff] exact match in snippet view article find links to article
complexes with nucleophosmin (Npm1) to control embryonic stem (ES) cell fate determination". Aging. 2 (11): 815–822. doi:10.18632/aging.100222. PMC 3006024Douglas A. Melton (1,193 words) [view diff] exact match in snippet view article find links to article
general developmental biology, identifying genes important for cell fate determination and body pattern. This led to the finding that the nervous systemCatenin (3,565 words) [view diff] exact match in snippet view article find links to article
properties of catenin that give it an important role in normal cell fate determination, homeostasis and growth, also make it susceptible to alterationsMusashi-2 (1,672 words) [view diff] exact match in snippet view article find links to article
asymmetric cell division, germ and somatic stem cell function and cell fate determination in a variety of tissues. As an RNA-binding protein, MSI2 is actsH3K4me3 (2,323 words) [view diff] exact match in snippet view article find links to article
gene expression through H3K4me3 plays a significant role in stem cell fate determination and early embryo development. Pluripotent cells have distinctiveRetinal precursor cells (597 words) [view diff] exact match in snippet view article find links to article
This distal region is what that gives rise to the retina. During cell fate determination of the retina, Wnt and Fz expression gradients form in a peripheralOct-4 (4,089 words) [view diff] exact match in snippet view article find links to article
heterochromatin assembly multicellular organism development cardiac cell fate determination response to wounding BMP signaling pathway involved in heart inductionGATA3 (3,740 words) [view diff] exact match in snippet view article find links to article
cell differentiation regulation of cellular response to X-ray cell fate determination post-embryonic development cellular response to BMP stimulus mesonephrosGATA2 (4,038 words) [view diff] exact match in snippet view article find links to article
neuron differentiation phagocytosis urogenital system development cell fate determination homeostasis of number of cells within a tissue definitive hemopoiesisFLP-FRT recombination (2,655 words) [view diff] no match in snippet view article find links to article
saw equal, if not better, efficiency of the FLP recombinase in cell-fate determination than Cre recombinase. To date, Flp recombinase has been utilizedEpigenetics (18,430 words) [view diff] no match in snippet view article find links to article
the systems dynamics state approach to the study of cell-fate. Cell-fate determination is predicted to exhibit certain dynamics, such as attractor-convergenceNeural stem cell (4,181 words) [view diff] exact match in snippet view article find links to article
5-methylcytosine demethylation. These types of modification are critical for cell fate determination in the developing and adult mammalian brain. DNA cytosine methylationStuart Kauffman (3,427 words) [view diff] case mismatch in snippet view article find links to article
Regulatory Networks - from Structure to Biological Observables: Cell Fate Determination". In Meyers, R. A. (ed.). Encyclopedia of Complexity and SystemsISL1 (1,484 words) [view diff] exact match in snippet view article find links to article
septum morphogenesis multicellular organism development cardiac cell fate determination regulation of secondary heart field cardioblast proliferation cardiacZXDC (1,489 words) [view diff] exact match in snippet view article find links to article
been investigated in the context of developmental biology and cell fate determination in animals. Studies in fruit flies, for instance, have demonstratedCHD1 (1,830 words) [view diff] exact match in snippet view article find links to article
Xie W, Nagarajan S, Kari V, et al. (July 2017). "CHD1 regulates cell fate determination by activation of differentiation-induced genes". Nucleic AcidsPROX1 (1,103 words) [view diff] exact match in snippet view article find links to article
morphogenesis in camera-type eye regulation of gene expression cell fate determination pancreas development liver development atrial cardiac muscle tissueMir-449 microRNA precursor family (1,307 words) [view diff] exact match in snippet view article find links to article
M, Klimke A, Dobbelstein M (September 2011). "MicroRNA-449 in cell fate determination" (PDF). Cell Cycle. 10 (17): 2874–82. doi:10.4161/cc.10.17.17181Tetraselmis (2,322 words) [view diff] exact match in snippet view article find links to article
and Mesbahi, E. 2015: Asymmetric cell division and its role in cell fate determination in the green alga Tetraselmis indica. J. Biosci. 40: 921-927. 10Bone growth factor (2,027 words) [view diff] exact match in snippet view article find links to article
and differentiation) and the PI3K pathway (induces survival and cell fate determination). On the other side of the dimerized receptors, PLC-gamma activatesDevelopment of the nervous system (6,880 words) [view diff] exact match in snippet view article find links to article
expression in differentiating neural stem cells and are critical for cell fate determination in the developing and adult mammalian brain. Epigenetic modificationsMaría Elena Álvarez-Buylla Roces (1,621 words) [view diff] no match in snippet view article find links to article
Alvarez-Buylla, Elena R. (2004). "A gene regulatory network model for cell-fate determination during Arabidopsis thaliana flower development that is robust andAdult stem cell (5,961 words) [view diff] no match in snippet view article find links to article
Abdallah WM, Wicha MS (December 2004). "Role of Notch signaling in cell-fate determination of human mammary stem/progenitor cells". Breast Cancer ResearchMatt Thomson (990 words) [view diff] exact match in snippet view article find links to article
(UCSF), where he worked on developing mathematical methods to model cell fate determination and tissue self-organization. Matt Thomson is a faculty memberKLF4 (6,840 words) [view diff] exact match in snippet view article find links to article
and ERK2 cascade regulation of cell differentiation mesodermal cell fate determination negative regulation of heterotypic cell-cell adhesion negativeEpigenetics in stem-cell differentiation (3,692 words) [view diff] exact match in snippet view article find links to article
with that lack of HDAC 1. This shows that HDAC1 is required for cell fate determination during differentiation. In a study done by Chronis et al. (2017)USH1C (2,858 words) [view diff] exact match in snippet view article find links to article
de Sousa Lopes SM (October 2013). "Neurosensory development and cell fate determination in the human cochlea". Neural Development. 8 (1): 20. doi:10.1186/1749-8104-8-20Richard Pestell (2,845 words) [view diff] exact match in snippet view article find links to article
vivo including p21Cip1, c-Jun, the canonical NF-κB pathway, the cell fate determination pathway protein DACH1, and CCR5. Pestell discovered CCR5 governsCichlid (9,824 words) [view diff] no match in snippet view article find links to article
which are paralogs. These genes aid in pattern formation and cell-fate determination in early embryonic development. The highest expression of theseEmi Nishimura (632 words) [view diff] exact match in snippet view article find links to article
(1 April 2002). "Dominant role of the niche in melanocyte stem-cell fate determination". Nature. 416 (6883): 854–860. Bibcode:2002Natur.416..854N. doi:10Androgen receptor (9,673 words) [view diff] exact match in snippet view article find links to article
McCue P, Song LN, Tian L, Jin M, Pestell RG (April 2009). "The cell fate determination factor dachshund inhibits androgen receptor signaling and prostateCre-Lox recombination (5,058 words) [view diff] exact match in snippet view article find links to article
function in specific cell types, indelibly mark progenitors in cell fate determination studies, induce specific chromosomal rearrangements for biologicalBone morphogenetic protein 4 (5,478 words) [view diff] exact match in snippet view article find links to article
development inner ear receptor cell differentiation mesodermal cell fate determination metanephros development type B pancreatic cell development regulationDNA methylation (13,166 words) [view diff] exact match in snippet view article find links to article
are crucial to understanding the complex regulatory network for cell fate determination. Hongbo Liu et al. proposed an entropy-based framework termed SMARTCancer stem cell (10,288 words) [view diff] no match in snippet view article find links to article
MJ, Abdallah WM, Wicha MS (2004). "Role of Notch signaling in cell-fate determination of human mammary stem/progenitor cells". Breast Cancer ResearchCoiled-coil domain containing 42B (2,150 words) [view diff] no match in snippet view article find links to article
that is associated with cell-cell communications that regulates cell-fate determination. The Basic Alignment Search Tool (BLAST) of human CCDC42B protein-to-proteinSecreted frizzled-related protein 1 (6,317 words) [view diff] exact match in snippet view article find links to article
pathway (also known as the "canonical" Wnt pathway), which manages cell fate determination by regulating gene expression. The Wnt/Ca2+ and Wnt/polarity pathways