Code
import requests
import urllib3
urllib3.disable_warnings()
def fetch_uniprot_data(uniprot_id):
= f"https://rest.uniprot.org/uniprotkb/{uniprot_id}.json"
url = requests.get(url, verify=False) # Disable SSL verification
response # Raise an error for bad status codes
response.raise_for_status() return response.json()
def display_uniprot_data(data):
= data.get('primaryAccession', 'N/A')
primary_accession = data.get('proteinDescription', {}).get('recommendedName', {}).get('fullName', {}).get('value', 'N/A')
protein_name = data.get('gene', [{'geneName': {'value': 'N/A'}}])[0]['geneName']['value']
gene_name = data.get('organism', {}).get('scientificName', 'N/A')
organism
= next((comment for comment in data.get('comments', []) if comment['commentType'] == "FUNCTION"), None)
function_comment = function_comment['texts'][0]['value'] if function_comment else 'N/A'
function
# Printing the data
print(f"UniProt ID: {primary_accession}")
print(f"Protein Name: {protein_name}")
print(f"Organism: {organism}")
print(f"Function: {function}")
# Replace this with the UniProt ID you want to fetch
= "P57103"
uniprot_id = fetch_uniprot_data(uniprot_id)
data display_uniprot_data(data)
UniProt ID: P57103
Protein Name: Sodium/calcium exchanger 3
Organism: Homo sapiens
Function: Mediates the electrogenic exchange of Ca(2+) against Na(+) ions across the cell membrane, and thereby contributes to the regulation of cytoplasmic Ca(2+) levels and Ca(2+)-dependent cellular processes. Contributes to cellular Ca(2+) homeostasis in excitable cells, both in muscle and in brain. In a first phase, voltage-gated channels mediate the rapid increase of cytoplasmic Ca(2+) levels due to release of Ca(2+) stores from the endoplasmic reticulum. SLC8A3 mediates the export of Ca(2+) from the cell during the next phase, so that cytoplasmic Ca(2+) levels rapidly return to baseline. Contributes to Ca(2+) transport during excitation-contraction coupling in muscle. In neurons, contributes to the rapid decrease of cytoplasmic Ca(2+) levels back to baseline after neuronal activation, and thereby contributes to modulate synaptic plasticity, learning and memory (By similarity). Required for normal oligodendrocyte differentiation and for normal myelination (PubMed:21959935). Mediates Ca(2+) efflux from mitochondria and contributes to mitochondrial Ca(2+) ion homeostasis (By similarity)