An in silico evaluation of lorlatinib as a potential therapy for novel amino acid substitutions in the tyrosine kinase domain of the ALK protein associated with cancer

dc.contributor.authorZapata Dongo, Richard Juniores_ES
dc.contributor.authorPoterico, Julio A.es_ES
dc.contributor.authorFontana, Dilettaes_ES
dc.contributor.authorMologni, Lucaes_ES
dc.contributor.authorAlvarez-Chacon, Carlaes_ES
dc.contributor.authorRojas-Armas, Juanes_ES
dc.contributor.authorCalla, Jaesones_ES
dc.date.accessioned2026-04-16T14:29:26Z
dc.date.available2026-04-16T14:29:26Z
dc.date.issued2025-06-18
dc.description.abstractThe anaplastic lymphoma kinase (alk) gene on chromosome 2 encodes a receptor tyrosine kinase protein essential for key signaling pathways regulating cell proliferation and differentiation. Mutations in alk have been implicated in multiple cancers, including non-small cell lung cancer (NSCLC) and anaplastic large cell lymphoma. While ALK inhibitors have demonstrated efficacy in targeted therapies, resistance due to specific amino acid substitutions requires the development of novel therapeutic strategies. This study aims to identify ALK tyrosine kinase domain mutations using data from the Cancer Genome Atlas and to evaluate the potential of lorlatinib, a third-generation ALK inhibitor, in overcoming these mutations. Using the SIFT and Polyphen-2 algorithms, we identified 53 deleterious ALK mutations associated with different newly recognized cancer types. These mutations were subjected to in silico molecular docking with lorlatinib. Our results indicate strong binding affinities (ranging from −9.4 to −10.8 kcal/mol) across all identified mutations, suggesting a significant interaction between lorlatinib and mutated ALK variants. Furthermore, protein-ligand interaction analysis revealed critical hydrophobic interactions, hydrogen bonds, and essential halogen bonds reinforcing lorlatinib as a potential utility in treating a broader spectrum of ALK-positive tumors beyond NSCLC. This research underscores the importance of repurposing in silico drugs and highlights the need for continued exploration of ALK mutations in cancer therapeutics.es_ES
dc.description.sponsorshipFinanciado por el Consejo Nacional de Ciencia, Tecnología e Innovación Tecnológica (CONCYTEC) y el Programa Nacional de Investigación Científica y Estudios Avanzados (PROCIENCIA) en el marco del concurso "Becas en Programas de Doctorado en Alianzas Interinstitucionales" E077-2023-01-BM, contrato PE501092173-2024-PROCIENCIA-BM; y el concurso "Alianzas Interinstitucionales para Programas de Doctorado" E033-2023-01-BM, contrato PE501084306-2023-PROCIENCIA-BM.es_ES
dc.formatapplication/pdfes_ES
dc.identifier.doi10.3389/fphar.2025.1605314es_ES
dc.identifier.isbn1663-9812es_ES
dc.identifier.urihttps://hdl.handle.net/20.500.14257/7212
dc.language.isoenges_ES
dc.publisherFrontiers Media S.A.es_ES
dc.publisher.countryCHes_ES
dc.relation.ispartofFrontiers in Pharmacologyes_ES
dc.rightshttp://purl.org/coar/access_right/c_abf2es_ES
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/es_ES
dc.sourceFrontiers in Pharmacology, Vol. 16, 1605314es_ES
dc.subjectALKes_ES
dc.subjectbinding energyes_ES
dc.subjectPolyPhen-2es_ES
dc.subjectmolecular dockinges_ES
dc.subject.ocdehttps://purl.org/pe-repo/ocde/ford#3.00.00es_ES
dc.titleAn in silico evaluation of lorlatinib as a potential therapy for novel amino acid substitutions in the tyrosine kinase domain of the ALK protein associated with canceres_ES
dc.typeinfo:eu-repo/semantics/articlees_ES
dc.type.versionhttp://purl.org/coar/version/c_970fb48d4fbd8a85es_ES

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