12624 Lexington Drive, Oklahoma City, OK 73173
- 3 beds |
- 2 baths |
- 2,620 sqft
Single-Family Home
Built in 2011
10,454sqft lot
3 car garage
$181/sqft
Listed 11 days ago
Property Description
This home is in the highly desirable Williamson Farms that is gated with neighborhood pool and pond. 2011 build on an oversized lot. Three bedrooms, two bathrooms, a dedicated office, and an upstairs bonus room. Kitchen has granite counters and a large walk-in pantry. Primary suite includes a large walk-in closet with built-in hampers and a hidden compartment behind the mirror. Additional storage in a hidden room under the stairs. The backyard is built for year-round use, not just a patch of grass. An outdoor fireplace and built-in grill gives you a real outdoor living area for evenings and weekends. A brick storage building with a garage door that handles tools, mowers, and extras without crowding the home garage. A greenhouse and garden area so you have space to grow, store, and entertain without the yard feeling tight. Impact-resistant roof (November 2024). Six hardwired security cameras. Upstairs mini-split. Oversized garage with 8-foot-tall doors and a storm shelter. Solid layout, extra storage, and a backyard that actually works as living space.
- Listing Status:
- Active
- Data Last Updated:
- October 5, 2026 at 10:23PM
- Listing Office:
- Adams Family Real Estate LLC : (405) 285-4600
- Listing Agent:
- Homer Adams : (405) 921-9434
- MLS ID:
- 1250760

- General: Fire PitOutdoor Grill
- Style: Traditional
- Roofing: Composition
- General: BrickStoneOne and one-halfSlab
- HOA Amenities: Gated EntryCommon Area MaintenancePool500.0
- Originating MLS: mlsok
- School District: Moore
- County: Cleveland
- Zoning: 12624NONELexington73173
- Fencing: Wood
- Utilities: Cable AvailableElectricity AvailableNatural Gas AvailableHigh Speed InternetPublic
- Source: mlsok
This listing courtesy of Homer Adams , Adams Family Real Estate LLC
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






