A guide to plasma membrane solute carrier proteins
Руководство по белкам-переносчикам (solute carrier, SLC) плазматической мембраны
2020-08-24
SCID: 54.1/pw7bebep
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SLC families (65 families, 458 proteins)SLC superfamilyplasma membrane SLC proteinsplasma membrane transporterssolute carrier proteins
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Abstract (AI)
This review aims to serve as an introduction to the solute carrier proteins (SLC) superfamily of transporter proteins and their roles in human cells. The SLC superfamily currently includes 458 transport proteins in 65 families that carry a wide variety of substances across cellular membranes. While members of this superfamily are found throughout cellular organelles, this review focuses on transporters expressed at the plasma membrane. At the cell surface, SLC proteins may be viewed as gatekeepers of the cellular milieu, dynamically responding to different metabolic states. With altered metabolism being one of the hallmarks of cancer, we also briefly review the roles that surface SLC proteins play in the development and progression of cancer through their influence on regulating metabolism and environmental conditions.
Key Findings
1
Many SLC members are expressed at the plasma membrane and function as dynamic gatekeepers of the cellular milieu responsive to metabolic states.
2
Surface SLC proteins influence cancer development and progression by regulating cellular metabolism and environmental conditions.
3
The SLC superfamily comprises 458 transport proteins organized into 65 families that transport diverse substances across cellular membranes.
4
The review focuses specifically on plasma membrane SLC transporters, distinguishing them from organellar SLCs.
Research Object
Plasma membrane solute carrier (SLC) transporter proteins expressed at the cell surface
Research Subject
Roles and functional behaviors of plasma membrane SLC proteins in transporting a wide variety of substances across the cell surface, their regulation in different metabolic states, and their influence on cancer development and progression via metabolic and microenvironmental modulation
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2020-08-24
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