PTHLH KO cell line available to order. Free of charge wild type control provided.
A549
Human
Lung
Liquid
HHM, MGC14611, Osteostatin, PLP, PTH related protein, PTH-rP, PTHR_HUMAN, PTHrP[107-139], Parathyroid hormon like hormone isoform 2 preproprotein, Parathyroid hormone like hormone, Parathyroid hormone like hormone isoform 1 preproprotein, Parathyroid hormone like related protein, Parathyroid hormone related protein, Parathyroid hormone-like protein, Parathyroid like protein
PTHLH KO cell line available to order. Free of charge wild type control provided.
A549
Human
Lung
Liquid
Carcinoma
PTHLH
Knockout
CRISPR technology
EU: 1 US: 1
Adherent
Male
Upon arrival, the vial should be stored in liquid nitrogen vapor phase and not at -80°C. Storage at -80°C may result in loss of viability.
1. Thaw the vial in 37°C water bath for approximately 1-2 minutes.
2. Transfer the cell suspension (0.8 mL) to a 15 mL/50 mL conical sterile polypropylene centrifuge tube containing 8.4 mL pre-warmed culture medium, wash vial with an additional 0.8 mL culture medium (total volume 10 mL) to collect remaining cells, and centrifuge at 201 x g (rcf) for 5 minutes at room temperature. 10 mL represents minimum recommended dilution. 20 mL represents maximum recommended dilution.
3. Resuspend the cell pellet in 5 mL pre-warmed culture medium and count using a haemocytometer or alternative cell counting method seed all remaining cells into a T25.
4. Incubate the culture at 37°C incubator with 5% CO2. Check the culture one day after revival and continue to check until 80% confluent. Media change can be given if needed.
5. Once confluent passage into an appropriate flask at a density of 2x104 cells/cm2. Seeding density is given as a guide only and should be scaled to align with individual lab schedules. Cultures should be monitored daily.
Cell Freezing Medium-DMSO Serum free media, contains 8.7% DMSO in MEM supplemented with methyl cellulose.
Dry Ice
-196°C
-196°C
Although we aim to provide customers with a homozygous clone, feasibility will be dependent on the biology of the protein. Should only heterozygous edits be achieved, you will be notified of the outcome and be asked to confirm whether the cell line is acceptable. All clones will be accompanied with DNA sequencing data, and the mutation description.
Recommended control: Human wild-type A549 cell line (Human wild-type A549 cell line ab288558). Please note a wild-type cell line is not automatically included with a knockout cell line order, if required please add recommended wild-type cell line at no additional cost using the code WILDTYPE-TMTK1.
We will provide viable cells that proliferate on revival.
This product is subject to limited use licenses from The Broad Institute and ERS Genomics Limited, and is developed with patented technology. For full details of the limited use licenses and relevant patents please refer to our limited use license and patent pages.
This supplementary information is collated from multiple sources and compiled automatically.
Parathyroid hormone-like hormone (PTHLH) also known as PTHrP is a protein made by the PTHLH gene. It weighs around 17 kDa and its expression occurs in many tissues including the bone skin and developing structures during embryogenesis. PTHLH interacts with parathyroid hormone receptors offering actions similar to parathyroid hormone (PTH). This interaction helps to extend its role beyond classical calcium homeostasis to include other functions such as growth and developmental processes.
PTHLH plays a role in cartilage development and endochondral bone formation. It functions as a significant regulator of cellular proliferation and differentiation especially in chondrocytes and osteoblasts. PTHLH can also act as part of multiprotein complexes that influence transcription and intracellular signaling. Furthermore it possesses diverse roles including smooth muscle contraction mammary gland development and cellular differentiation inhibition.
Alongside related proteins like Indian Hedgehog (IHH) PTHLH resides in pathways critical for skeletal development and homeostasis. Notably the PTHLH/PTHR1 signaling pathway regulates chondrocyte maturation during bone growth. This pathway intersects with the Hedgehog pathway to form a regulatory loop essential for maintaining the growth plate's development and maturation. PTHLH also influences the Wnt signaling pathway associated with bone density and health.
PTHLH has connections with certain cancers specifically breast cancer and hypercalcemia of malignancy. In cancerous tissues PTHLH can be overexpressed leading to increased osteoclastic bone resorption contributing to cancer-associated conditions. Additionally PTHLH overactivity links it to familial benign hypercalcemia through its interactions with PTH and its receptors. Understanding these associations could offer therapeutic targets for treatment.
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