Submitted:
19 April 2024
Posted:
19 April 2024
You are already at the latest version
Abstract
Keywords:
1. Introduction
2. Results
2.1. Functional Enrichment of Differentially Expressed Transcripts
2.2. Weighted Coexpression Network Analysis
2.3. Enrichment Analysis
2.4. Network Analysis
3. Discussion
4. Materials and Methods
4.1. Transcript Quantification and Differential Expression Analyses
4.2. Functional Enrichment Analysis of Differentially Expressed Transcripts
4.3. Weighted Coexpression Network Analysis
4.4. The Module of Interest Enrichment
4.5. Analysis of Hub Genes
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Banerjee, A.K. Preinvasive Lesions of the Bronchus. J. Thorac. Oncol. 2009, 4, 545–551. [CrossRef]
- Gupta, A.; Harris, K.; Dhillon, S.S. Role of Bronchoscopy in Management of Central Squamous Cell Lung Carcinoma in Situ. Ann. Transl. Med. 2019, 7, 354–354. [CrossRef]
- Roberts, M.; Ogden, J.; Hossain, A.S.M.; Chaturvedi, A.; Kerr, A.R.W.; Dive, C.; Beane, J.E.; Lopez-Garcia, C. Interrogating the Precancerous Evolution of Pathway Dysfunction in Lung Squamous Cell Carcinoma Using XTABLE. Elife 2023, 12. [CrossRef]
- Beane, J.; Mazzilli, S.A.; Tassinari, A.M.; Liu, G.; Zhang, X.; Liu, H.; Buncio, A.D.; Dhillon, S.S.; Platero, S.J.; Lenburg, M.E.; et al. Detecting the Presence and Progression of Premalignant Lung Lesions via Airway Gene Expression. Clin. Cancer Res. 2017, 23, 5091–5100. [CrossRef]
- Merrick, D.T.; Edwards, M.G.; Franklin, W.A.; Sugita, M.; Keith, R.L.; Miller, Y.E.; Friedman, M.B.; Dwyer-Nield, L.D.; Tennis, M.A.; O’Keefe, M.C.; et al. Altered Cell-Cycle Control, Inflammation, and Adhesion in High-Risk Persistent Bronchial Dysplasia. Cancer Res. 2018, 78, 4971–4983. [CrossRef]
- Teixeira, V.H.; Pipinikas, C.P.; Pennycuick, A.; Lee-Six, H.; Chandrasekharan, D.; Beane, J.; Morris, T.J.; Karpathakis, A.; Feber, A.; Breeze, C.E.; et al. Deciphering the Genomic, Epigenomic, and Transcriptomic Landscapes of Pre-Invasive Lung Cancer Lesions. Nat. Med. 2019, 25, 517–525. [CrossRef]
- Stastna, M.; Van Eyk, J.E. Analysis of Protein Isoforms: Can We Do It Better? Proteomics 2012, 12, 2937–2948. [CrossRef]
- Bhuiyan, S.A.; Ly, S.; Phan, M.; Huntington, B.; Hogan, E.; Liu, C.C.; Liu, J.; Pavlidis, P. Systematic Evaluation of Isoform Function in Literature Reports of Alternative Splicing. BMC Genomics 2018, 19. [CrossRef]
- Poverennaya, E.; Kiseleva, O.; Romanova, A.; Pyatnitskiy, M. Predicting Functions of Uncharacterized Human Proteins: From Canonical to Proteoforms. Genes (Basel). 2020, 11, 1–17. [CrossRef]
- Pozo, F.; Martinez-Gomez, L.; Walsh, T.A.; Rodriguez, J.M.; Di Domenico, T.; Abascal, F.; Vazquez, J.; Tress, M.L. Assessing the Functional Relevance of Splice Isoforms. NAR genomics Bioinforma. 2021, 3, 1–16. [CrossRef]
- Hinz, N.; Jücker, M. Distinct Functions of AKT Isoforms in Breast Cancer: A Comprehensive Review. Cell Commun. Signal. 2019, 17. [CrossRef]
- Dolgalev, G.; Poverennaya, E. Quantitative Analysis of Isoform Switching in Cancer. Int. J. Mol. Sci. 2023, 24. [CrossRef]
- Pimentel, H.; Bray, N.L.; Puente, S.; Melsted, P.; Pachter, L. Differential Analysis of RNA-Seq Incorporating Quantification Uncertainty. Nat. Methods 2017, 14, 687–690. [CrossRef]
- Langfelder, P.; Horvath, S. WGCNA: An R Package for Weighted Correlation Network Analysis. BMC Bioinformatics 2008, 9. [CrossRef]
- Evangelista, J.E.; Xie, Z.; Marino, G.B.; Nguyen, N.; Clarke, D.J.B.; Ma’Ayan, A. Enrichr-KG: Bridging Enrichment Analysis across Multiple Libraries. Nucleic Acids Res. 2023, 51, W168–W179. [CrossRef]
- Lachmann, A.; Torre, D.; Keenan, A.B.; Jagodnik, K.M.; Lee, H.J.; Wang, L.; Silverstein, M.C.; Ma’ayan, A. Massive Mining of Publicly Available RNA-Seq Data from Human and Mouse. Nat. Commun. 2018, 9. [CrossRef]
- Ashburner, M.; Ball, C.A.; Blake, J.A.; Botstein, D.; Butler, H.; Cherry, J.M.; Davis, A.P.; Dolinski, K.; Dwight, S.S.; Eppig, J.T.; et al. Gene Ontology: Tool for the Unification of Biology. The Gene Ontology Consortium. Nat. Genet. 2000, 25, 25–29. [CrossRef]
- Cao, J.; O’Day, D.R.; Pliner, H.A.; Kingsley, P.D.; Deng, M.; Daza, R.M.; Zager, M.A.; Aldinger, K.A.; Blecher-Gonen, R.; Zhang, F.; et al. A Human Cell Atlas of Fetal Gene Expression. Science 2020, 370. [CrossRef]
- Martens, M.; Ammar, A.; Riutta, A.; Waagmeester, A.; Slenter, D.N.; Hanspers, K.; Miller, R.A.; Digles, D.; Lopes, E.N.; Ehrhart, F.; et al. WikiPathways: Connecting Communities. Nucleic Acids Res. 2021, 49, D613–D621. [CrossRef]
- Piñero, J.; Ramírez-Anguita, J.M.; Saüch-Pitarch, J.; Ronzano, F.; Centeno, E.; Sanz, F.; Furlong, L.I. The DisGeNET Knowledge Platform for Disease Genomics: 2019 Update. Nucleic Acids Res. 2020, 48, D845–D855. [CrossRef]
- Kanie, T.; Abbott, K.L.; Mooney, N.A.; Plowey, E.D.; Demeter, J.; Jackson, P.K. The CEP19-RABL2 GTPase Complex Binds IFT-B to Initiate Intraflagellar Transport at the Ciliary Base. Dev. Cell 2017, 42, 22. [CrossRef]
- Mukherjee, I.; Roy, S.; Chakrabarti, S. Identification of Important Effector Proteins in the FOXJ1 Transcriptional Network Associated with Ciliogenesis and Ciliary Function. Front. Genet. 2019, 10, 416138. [CrossRef]
- Wang, C.; Low, W.C.; Liu, A.; Wang, B. Centrosomal Protein DZIP1 Regulates Hedgehog Signaling by Promoting Cytoplasmic Retention of Transcription Factor GLI3 and Affecting Ciliogenesis. J. Biol. Chem. 2013, 288, 29518. [CrossRef]
- Chung, M.I.; Kwon, T.; Tu, F.; Brooks, E.R.; Gupta, R.; Meyer, M.; Baker, J.C.; Marcotte, E.M.; Wallingford, J.B. Coordinated Genomic Control of Ciliogenesis and Cell Movement by RFX2. Elife 2014, 2014, 1439. [CrossRef]
- Walentek, P. Ciliary Transcription Factors in Cancer--How Understanding Ciliogenesis Can Promote the Detection and Prognosis of Cancer Types. J. Pathol. 2016, 239, 6–9. [CrossRef]
- Li, Y.Y.; Li, C.W.; Chao, S.S.; Yu, F.G.; Yu, X.M.; Liu, J.; Yan, Y.; Shen, L.; Gordon, W.; Shi, L.; et al. Impairment of Cilia Architecture and Ciliogenesis in Hyperplastic Nasal Epithelium from Nasal Polyps. J. Allergy Clin. Immunol. 2014, 134, 1282–1292. [CrossRef]
- Wallmeier, J.; Bracht, D.; Alsaif, H.S.; Dougherty, G.W.; Olbrich, H.; Cindric, S.; Dzietko, M.; Heyer, C.; Teig, N.; Thiels, C.; et al. Mutations in TP73 Cause Impaired Mucociliary Clearance and Lissencephaly. Am. J. Hum. Genet. 2021, 108, 1318–1329. [CrossRef]
- Liu, H.; Kiseleva, A.A.; Golemis, E.A. Ciliary Signalling in Cancer. Nat. Rev. Cancer 2018, 18, 511–524. [CrossRef]
- Anvarian, Z.; Mykytyn, K.; Mukhopadhyay, S.; Pedersen, L.B.; Christensen, S.T. Cellular Signalling by Primary Cilia in Development, Organ Function and Disease. Nat. Rev. Nephrol. 2019, 15, 199–219. [CrossRef]
- Cilia Gene Expression Patterns in Cancer - PubMed.
- Tilley, A.E.; Walters, M.S.; Shaykhiev, R.; Crystal, R.G. Cilia Dysfunction in Lung Disease. Annu. Rev. Physiol. 2015, 77, 379–406. [CrossRef]
- Rocha, C.; Papon, L.; Cacheux, W.; Marques Sousa, P.; Lascano, V.; Tort, O.; Giordano, T.; Vacher, S.; Lemmers, B.; Mariani, P.; et al. Tubulin Glycylases Are Required for Primary Cilia, Control of Cell Proliferation and Tumor Development in Colon. EMBO J. 2014, 33, 2247–2260. [CrossRef]
- Lee, K.H. Primary Cilia: A Novel Research Approach to Overcome Anticancer Drug Resistance. Front. Mol. Biosci. 2023, 10. [CrossRef]
- Chen, S.; Zhou, Y.; Chen, Y.; Gu, J. Fastp: An Ultra-Fast All-in-One FASTQ Preprocessor. Bioinformatics 2018, 34, i884–i890. [CrossRef]
- Bray, N.L.; Pimentel, H.; Melsted, P.; Pachter, L. Near-Optimal Probabilistic RNA-Seq Quantification. Nat. Biotechnol. 2016, 34, 525–527. [CrossRef]
- Froussios, K.; Mourão, K.; Simpson, G.; Barton, G.; Schurch, N. Relative Abundance of Transcripts (RATs): Identifying Differential Isoform Abundance from RNA-Seq . F1000Research 2019, 8. [CrossRef]
- Wu, T.; Hu, E.; Xu, S.; Chen, M.; Guo, P.; Dai, Z.; Feng, T.; Zhou, L.; Tang, W.; Zhan, L.; et al. ClusterProfiler 4.0: A Universal Enrichment Tool for Interpreting Omics Data. Innov. (Cambridge 2021, 2. [CrossRef]
- Pico, A.R.; Kelder, T.; Van Iersel, M.P.; Hanspers, K.; Conklin, B.R.; Evelo, C. WikiPathways: Pathway Editing for the People. PLoS Biol. 2008, 6, 1403–1407. [CrossRef]




Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2024 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).