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mammary alveolar progenitor cell
Stable Identifier
R-HSA-9927440
Type
Cell
Species
Homo sapiens
Locations in the PathwayBrowser
Expand all
Developmental Biology (Homo sapiens)
Developmental Cell Lineages (Homo sapiens)
Developmental Cell Lineages of the Integumentary System (Homo sapiens)
Developmental Lineages of the Mammary Gland (Homo sapiens)
Developmental Lineage of Mammary Gland Alveolar Cells (Homo sapiens)
Mammary alveolar progenitor cell produces secretory lactocyte (Homo sapiens)
mammary alveolar progenitor cell (Homo sapiens)
Mammary hormone receptor negative luminal progenitor cell produces alveolar progenitor cell (Homo sapiens)
mammary alveolar progenitor cell (Homo sapiens)
Cytology
Organ
mammary gland
(UBERON:0001911)
Tissue
parenchyma of mammary gland
(UBERON:0036245)
Cell Type
luminal adaptive secretory precursor cell of mammary gland
(CL:4033057)
Markers
RNA
MFGE8 mRNA [cytosol]
(Homo sapiens)
Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
J Mammary Gland Biol Neoplasia
25,
367-387
(2020)
Martin Carli, JF., Trahan, GD., Jones, KL., Hirsch, N., Rolloff, KP., Dunn, EZ., Friedman, JE., Barbour, LA., Hernandez, TL., Maclean, PS., Monks, J., McManaman, JL., Rudolph, MC.
KRT8 mRNA [cytosol]
(Homo sapiens)
Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
J Mammary Gland Biol Neoplasia
25,
367-387
(2020)
Martin Carli, JF., Trahan, GD., Jones, KL., Hirsch, N., Rolloff, KP., Dunn, EZ., Friedman, JE., Barbour, LA., Hernandez, TL., Maclean, PS., Monks, J., McManaman, JL., Rudolph, MC.
CSN3 mRNA [cytosol]
(Homo sapiens)
Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
J Mammary Gland Biol Neoplasia
25,
367-387
(2020)
Martin Carli, JF., Trahan, GD., Jones, KL., Hirsch, N., Rolloff, KP., Dunn, EZ., Friedman, JE., Barbour, LA., Hernandez, TL., Maclean, PS., Monks, J., McManaman, JL., Rudolph, MC.
CD24 mRNA [cytosol]
(Homo sapiens)
Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
J Mammary Gland Biol Neoplasia
25,
367-387
(2020)
Martin Carli, JF., Trahan, GD., Jones, KL., Hirsch, N., Rolloff, KP., Dunn, EZ., Friedman, JE., Barbour, LA., Hernandez, TL., Maclean, PS., Monks, J., McManaman, JL., Rudolph, MC.
KRT18 mRNA [cytosol]
(Homo sapiens)
Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
J Mammary Gland Biol Neoplasia
25,
367-387
(2020)
Martin Carli, JF., Trahan, GD., Jones, KL., Hirsch, N., Rolloff, KP., Dunn, EZ., Friedman, JE., Barbour, LA., Hernandez, TL., Maclean, PS., Monks, J., McManaman, JL., Rudolph, MC.
EHF mRNA [cytosol]
(Homo sapiens)
Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
J Mammary Gland Biol Neoplasia
25,
367-387
(2020)
Martin Carli, JF., Trahan, GD., Jones, KL., Hirsch, N., Rolloff, KP., Dunn, EZ., Friedman, JE., Barbour, LA., Hernandez, TL., Maclean, PS., Monks, J., McManaman, JL., Rudolph, MC.
ELF5 mRNA [cytosol]
(Homo sapiens)
Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
J Mammary Gland Biol Neoplasia
25,
367-387
(2020)
Martin Carli, JF., Trahan, GD., Jones, KL., Hirsch, N., Rolloff, KP., Dunn, EZ., Friedman, JE., Barbour, LA., Hernandez, TL., Maclean, PS., Monks, J., McManaman, JL., Rudolph, MC.
LALBA mRNA [cytosol]
(Homo sapiens)
Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
J Mammary Gland Biol Neoplasia
25,
367-387
(2020)
Martin Carli, JF., Trahan, GD., Jones, KL., Hirsch, N., Rolloff, KP., Dunn, EZ., Friedman, JE., Barbour, LA., Hernandez, TL., Maclean, PS., Monks, J., McManaman, JL., Rudolph, MC.
MUC1 mRNA [cytosol]
(Homo sapiens)
Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
J Mammary Gland Biol Neoplasia
25,
367-387
(2020)
Martin Carli, JF., Trahan, GD., Jones, KL., Hirsch, N., Rolloff, KP., Dunn, EZ., Friedman, JE., Barbour, LA., Hernandez, TL., Maclean, PS., Monks, J., McManaman, JL., Rudolph, MC.
KRT19 mRNA [cytosol]
(Homo sapiens)
Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
J Mammary Gland Biol Neoplasia
25,
367-387
(2020)
Martin Carli, JF., Trahan, GD., Jones, KL., Hirsch, N., Rolloff, KP., Dunn, EZ., Friedman, JE., Barbour, LA., Hernandez, TL., Maclean, PS., Monks, J., McManaman, JL., Rudolph, MC.
CSN2 mRNA [cytosol]
(Homo sapiens)
Single Cell RNA Sequencing of Human Milk-Derived Cells Reveals Sub-Populations of Mammary Epithelial Cells with Molecular Signatures of Progenitor and Mature States: a Novel, Non-invasive Framework for Investigating Human Lactation Physiology.
J Mammary Gland Biol Neoplasia
25,
367-387
(2020)
Martin Carli, JF., Trahan, GD., Jones, KL., Hirsch, N., Rolloff, KP., Dunn, EZ., Friedman, JE., Barbour, LA., Hernandez, TL., Maclean, PS., Monks, J., McManaman, JL., Rudolph, MC.
Participates
as an output of
Mammary hormone receptor negative luminal progenitor cell produces alveolar progenitor cell (Homo sapiens)
as an input of
Mammary alveolar progenitor cell produces secretory lactocyte (Homo sapiens)
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