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The [https://en.wikipedia.org/wiki/ABCG2 ABCG2 multidrug transporter] is a membrane protein from the '''A'''TP-'''B'''inding '''C'''assette [https://en.wikipedia.org/wiki/ATP-binding_cassette_transporter (ABC)] transporter family, specifically the G-subfamily. Also known as the breast cancer resistance protein (BCRP), ABCG2 has physiological roles in various tissue cells including the [https://en.wikipedia.org/wiki/Mammary_gland mammary gland] and the [https://en.wikipedia.org/wiki/Blood%E2%80%93brain_barrier blood-brain], [https://en.wikipedia.org/wiki/Blood%E2%80%93testis_barrier blood-testis], and [https://en.wikipedia.org/wiki/Placenta maternal-fetal] barriers.<ref name="Taylor">PMID:28554189</ref>  ABCG2 protects cells by exporting [https://en.wikipedia.org/wiki/Xenobiotic xenobiotic] molecules out of the cell using ATP hydrolysis. ABCG2 also affects the [https://en.wikipedia.org/wiki/Pharmacokinetics pharmacokinetics] of many drugs and contributes to [https://en.wikipedia.org/wiki/Multiple_drug_resistance multidrug resistance].<ref name="Manolaridis">PMID:30405239</ref>
The [https://en.wikipedia.org/wiki/ABCG2 ABCG2 multidrug transporter] is a membrane protein from the '''A'''TP-'''B'''inding '''C'''assette [https://en.wikipedia.org/wiki/ATP-binding_cassette_transporter (ABC)] transporter family, specifically the G-subfamily. Also known as the breast cancer resistance protein (BCRP), ABCG2 has physiological roles in various tissue cells including the [https://en.wikipedia.org/wiki/Mammary_gland mammary gland] and the [https://en.wikipedia.org/wiki/Blood%E2%80%93brain_barrier blood-brain], [https://en.wikipedia.org/wiki/Blood%E2%80%93testis_barrier blood-testis], and [https://en.wikipedia.org/wiki/Placenta maternal-fetal] barriers.<ref name="Taylor">PMID:28554189</ref>  ABCG2 protects cells by exporting [https://en.wikipedia.org/wiki/Xenobiotic xenobiotic] molecules out of the cell using ATP hydrolysis. ABCG2 also affects the [https://en.wikipedia.org/wiki/Pharmacokinetics pharmacokinetics] of many drugs and contributes to [https://en.wikipedia.org/wiki/Multiple_drug_resistance multidrug resistance].<ref name="Manolaridis">PMID:30405239</ref>


ABCG2 belongs to the family of 48 transporter proteins called ATP-binding cassette transporters (ABC transporters). The ABC transporters differ from each other by their size structure, and ordering of domains. A high percentage of the ABC family transporters (19 of the 48) transport [https://en.wikipedia.org/wiki/List_of_chemotherapeutic_agents chemotherapeutic agents] out of cells, making expression levels of ABC transporters a major indicator of cancer treatment prognosis.<ref name="Robey">PMID:29643473</ref> Using [https://en.wikipedia.org/wiki/Cryogenic_electron_microscopy cryoelectron microscopy] (Cryo EM), the two cavity substrate transport structure (<scene name='83/832932/Highlight_cavity_1/3'>Cavity 1</scene>; <scene name='83/832932/Atp_bound_use_cav_2/3'>Cavity 2</scene>), inward facing nucleotide binding domain (<scene name='83/832932/Overall_structure_nbd_unbound/6'>NBD</scene>), and condensed extracellular loop 3 (<scene name='83/832939/El-3/3'>EL-3</scene>) structure of ABCG2 have been elucidated. These cryo-EM structures have elucidated the transporter cycle of ABCG2, the binding locations for inhibitors, and the link between cancer and the ABC transporter family.  
ABCG2 belongs to the family of 48 transporter proteins called ATP-binding cassette transporters (ABC transporters). The ABC transporters differ from each other by their size, structure, and ordering of domains. A high percentage of the ABC family transporters (19 of the 48) transport [https://en.wikipedia.org/wiki/List_of_chemotherapeutic_agents chemotherapeutic agents] out of cells, making expression levels of ABC transporters a major indicator of cancer treatment prognosis.<ref name="Robey">PMID:29643473</ref> Using [https://en.wikipedia.org/wiki/Cryogenic_electron_microscopy cryoelectron microscopy] (Cryo EM), the two cavity substrate transport structure (<scene name='83/832932/Highlight_cavity_1/3'>Cavity 1</scene>; <scene name='83/832932/Atp_bound_use_cav_2/3'>Cavity 2</scene>), inward facing nucleotide binding domain (<scene name='83/832932/Overall_structure_nbd_unbound/6'>NBD</scene>), and condensed extracellular loop 3 (<scene name='83/832939/El-3/4'>EL-3</scene>) structure of ABCG2 have been elucidated. These cryo-EM structures have elucidated the transporter cycle of ABCG2, the binding locations for inhibitors, and the link between cancer and the ABC transporter family.  


== Structural highlights ==
== Structural highlights ==
===Overall Structure===
===Overall Structure===
ABCG2 is a homodimer with each monomer containing two domains, the nucleotide binding domain <scene name='83/832932/Overall_structure_nbd_unbound/6'>(NBD)</scene> and the transmembrane domain <scene name='83/832932/Overall_structure_tmd_unbound/5'>(TMD)</scene>, which are fused together as a single peptide chain.<ref name="Taylor"/> The NBD binds and processes ATP and is located inside of the cell where it is exposed to the cytosol. The TMD is responsible for binding and transporting any foreign substrates and is embedded in the cell membrane and extends into the extracellular region (Figure 1). [[Image:Protein_orientation_map ABCG2.png|250 px|right|thumb|Figure 1. Orientation of ABCG2 in relation to the cell membrane. [https://www.rcsb.org/structure/5NJ3 (5NJ3)]]]
ABCG2 is a homodimer with each monomer contributing two sequential regions to two overall distinct structural domains, the nucleotide binding domain <scene name='83/832932/Overall_structure_nbd_unbound/6'>(NBD)</scene> and the transmembrane domain <scene name='83/832932/Overall_structure_tmd_unbound/5'>(TMD)</scene>.<ref name="Taylor"/> The NBD binds and processes ATP and is located inside of the cell where it is exposed to the cytosol. The TMD is responsible for binding and transporting any foreign substrates and is embedded in the cell membrane and extends into the extracellular region (Figure 1). [[Image:Protein_orientation_map ABCG2.png|250 px|right|thumb|Figure 1. Orientation of ABCG2 in relation to the cell membrane. [https://www.rcsb.org/structure/5NJ3 (5NJ3)]]]


===ATP Bound and Unbound Conformations===
===ATP Bound and Unbound Conformations===

Revision as of 18:25, 11 May 2020

ABCG2 Multidrug Transporter

ABCG2 Multidrug Transporter. Green represents residues in monomer A; Purple represents residues in monomer B. Blue is used to highlight areas of interest in select scenes. (PDB Codes: 5NJ3 6HBU 6HCO 6FFC)

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References

Student Contributors

Julia Pomeroy

Shelby Skaggs

Sam Sullivan

Jaelyn Voyles