6003 W 43rd Street, Houston, TX 77092
- 4 beds |
- 2 baths |
- 1,959 sqft
Single-Family Home
Built in 1960
10,624sqft lot
—— car garage
$242/sqft
Listed 2 days ago
Property Description
Motivated sellers! Welcome to your fully upgraded dream home in the heart of Oak Forest! This beautiful residence blends modern luxury with timeless design and an unbeatable location. Just minutes from the Galleria, movie theaters, Tia Maria’s, El Tiempo, The Stomping Grounds, convenient 290 access, and Downtown Houston, you'll enjoy the best of shopping, dining, and entertainment. Inside, you'll find brand-new red oak hardwood floors, recessed lighting throughout, energy-efficient windows with elegant plantation shutters, a new roof, a new HVAC system, and all-new stainless steel appliances—every upgrade carefully selected for comfort and style. The home offers 4 bedrooms and 2 bathrooms, plus a cozy office or study framed by large bay windows that fill the space with natural light. The chef-inspired kitchen features an eat-in quartz cooktop island, soft-close shaker cabinetry, and flows seamlessly into the open-concept dining and living area.
- Listing Status:
- Active
- Date Added:
- June 8, 2026
- Data Last Updated:
- June 11, 2026 at 2:08AM
- Listing Office:
- Martha Turner Sotheby's International Realty : 713-520-1981
- Listing Agent:
- Lauren Laigle : 1+713-822-3939
- MLS ID:
- 17819806
- General: Shed(s)
- Style: Traditional
- Parking: No GarageDouble-Wide DrivewayAttached Carport
- Roofing: Composition
- Windows: Insulated/Low-E windows
- General: BrickWood Siding1Slab
- Road/Access: Concrete
- Originating MLS: Houston Association of Realtors
- School District: 27 - Houston
- County: Harris
- Zoning: LT 10 BLK 5 OAK FOREST SEC 170852110000010
- Fencing: Back YardFull
- Water: Public
- Sewer: Public Sewer
- Source: Houston Association of Realtors
This listing courtesy of Lauren Laigle , Martha Turner Sotheby's International Realty
Monthly Payment
- Principal & Interest $
- Property Taxes $
- Home Insurance $
- VA Funding Fee $






