Saquib A. Lakhani, MD
Associate Professor AdjunctDownloadHi-Res Photo
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Appointments
Additional Titles
Clinical Director, Pediatric Genomics Discovery Program
Contact Info
Appointments
Additional Titles
Clinical Director, Pediatric Genomics Discovery Program
Contact Info
Appointments
Additional Titles
Clinical Director, Pediatric Genomics Discovery Program
Contact Info
About
Titles
Associate Professor Adjunct
Clinical Director, Pediatric Genomics Discovery Program
Appointments
Pediatric Critical Care Medicine
Associate Professor AdjunctPrimary
Other Departments & Organizations
- Pediatric Critical Care Medicine
- Pediatric Critical Care Transport Program
- Pediatric Genomics Discovery Program (PGDP)
Education & Training
- Fellow
- University of Arizona (2011)
- Fellow
- Yale University School of Medicine (2003)
- Resident
- Washington University / St Louis Children's Hospital (1999)
- MD
- University of Virginia School of Medicine (1996)
Research
Overview
Medical Research Interests
Congenital Abnormalities; Developmental Biology; Genetic Diseases, Inborn; Genetics; Genetics, Medical; Heart Defects, Congenital; Integrative Medicine; Pediatrics; Seizures
ORCID
0000-0003-3235-3460
Research at a Glance
Yale Co-Authors
Frequent collaborators of Saquib A. Lakhani's published research.
Publications Timeline
A big-picture view of Saquib A. Lakhani's research output by year.
Research Interests
Research topics Saquib A. Lakhani is interested in exploring.
Weizhen Ji, PhD, FACMG
Lauren Jeffries, DO
Emily Kathryn Mis, PhD
Monica Konstantino, RN
Carrie L Lucas, PhD
Mustafa Khokha, MD
40Publications
2,747Citations
Heart Defects, Congenital
Seizures
Publications
Featured Publications
A retrospective cohort analysis of the Yale pediatric genomics discovery program
Al‐Ali S, Jeffries L, Faustino EVS, Ji W, Mis E, Konstantino M, Zerillo C, Jiang Y, Spencer‐Manzon M, Bale A, Zhang H, McGlynn J, McGrath JM, Tremblay T, Brodsky NN, Lucas CL, Pierce R, Deniz E, Khokha MK, Lakhani SA. A retrospective cohort analysis of the Yale pediatric genomics discovery program. American Journal Of Medical Genetics Part A 2022, 188: 2869-2878. PMID: 35899841, PMCID: PMC9474639, DOI: 10.1002/ajmg.a.62918.Peer-Reviewed Original ResearchCitationsAltmetricMeSH Keywords and ConceptsConceptsRetrospective cohort analysisNext-generation sequencingCohort analysisSystem abnormalitiesImmune system abnormalitiesCardiovascular system abnormalitiesFunctional molecular analysesNovel genesPrecise molecular diagnosisClinical characteristicsFurther genetic evaluationDiscovery programsComplex patientsMultisystem diseaseDisease genesPediatric providersRare genetic diseaseNew diagnosisPhenotype relationshipsPatientsGenetic diseasesMolecular analysisDiagnosisParticipant demographicsNGS resultsRethinking what constitutes a diagnosis in the genomics era: a critical illness perspective.
Lakhani SA, Pierce R. Rethinking what constitutes a diagnosis in the genomics era: a critical illness perspective. Current Opinion In Pediatrics 2019, 31: 317-321. PMID: 31090571, DOI: 10.1097/mop.0000000000000754.Peer-Reviewed Original ResearchCitationsAltmetricMeSH Keywords and ConceptsConceptsPediatric intensivistsIll childrenCritical care pediatriciansFirst clinical diagnosisTypes of patientsWhole-exome sequencingSevere congenital diseaseUnderlying genetic causePatient's conditionIllness perspectiveUndiagnosed diseasePatientsDescriptive diagnosisClinical diagnosisCongenital diseaseGenetic testingGenetic abnormalitiesDiagnosisExome sequencingGenetic causeNext-generation sequencingClinical geneticistsIntensivistsGenetic diagnosisDiseaseDe novo pathogenic variants in neuronal differentiation factor 2 (NEUROD2) cause a form of early infantile epileptic encephalopathy
Sega AG, Mis EK, Lindstrom K, Mercimek-Andrews S, Ji W, Cho MT, Juusola J, Konstantino M, Jeffries L, Khokha MK, Lakhani SA. De novo pathogenic variants in neuronal differentiation factor 2 (NEUROD2) cause a form of early infantile epileptic encephalopathy. Journal Of Medical Genetics 2018, 56: 113. PMID: 30323019, DOI: 10.1136/jmedgenet-2018-105322.Peer-Reviewed Original ResearchCitationsAltmetricMeSH Keywords and ConceptsConceptsEarly infantile epileptic encephalopathyInfantile epileptic encephalopathyEpileptic encephalopathyPatient variantsDe novo pathogenic variantsNovel de novo variantNovo pathogenic variantsEarly-onset refractory seizuresDifferentiation factor 2Whole-exome sequencingNeuronal differentiation factorRefractory seizuresSignificant developmental delaySpontaneous seizuresUnderlying etiologyEctopic neuronsDe novo variantsPatient's conditionEncephalopathyPathogenic variantsSevere disordersDevelopmental delayUnrelated childrenExome sequencingGene mutations
2024
Case report: Novel variants cause developmental and epileptic encephalopathy in three unrelated families from Mali
Bamba S, Sidibé L, Diallo S, Cissé L, Dembélé K, Yalcouyé A, Ji W, Dembélé M, Diarra S, Maiga A, Traoré O, Diallo S, Mefoung S, Touré A, Koné A, Jeffries L, Guinto C, Mis E, Fischbeck K, Khokha M, Lakhani S, Landouré G. Case report: Novel variants cause developmental and epileptic encephalopathy in three unrelated families from Mali. Frontiers In Genetics 2024, 15: 1412442. DOI: 10.3389/fgene.2024.1412442.Peer-Reviewed Original ResearchAltmetricConceptsWhole-exome sequencingGenetic basisIdentified rare variantsIn silico prediction analysisCompound heterozygous variantsPutative variantsIn silico toolsACMG criteriaExome sequencingProtein structureNovel variantsEpileptic encephalopathyAssess pathogenicityHeterozygous variantsRare variantsHomozygous variantSub-Saharan AfricaDisease mechanismsAssociated with earlier onsetRefractory to antiepileptic medicationsResistant to treatmentGroup of neurological disordersMalian familyEarly-onset seizuresPotential clinical implicationsGenetic profile of progressive myoclonic epilepsy in Mali reveals novel findings
Cissé L, Bamba S, Diallo S, Ji W, Dembélé M, Yalcouyé A, Coulibaly T, Traoré I, Jeffries L, Diarra S, Maiga A, Diallo S, Nimaga K, Touré A, Traoré O, Kotioumbé M, Mis E, Cissé C, Guinto C, Fischbeck K, Khokha M, Lakhani S, Landouré G. Genetic profile of progressive myoclonic epilepsy in Mali reveals novel findings. Frontiers In Neurology 2024, 15: 1455467. PMID: 39385815, PMCID: PMC11461190, DOI: 10.3389/fneur.2024.1455467.Peer-Reviewed Original ResearchConceptsWhole-exome sequencingACMG criteriaProgressive myoclonic epilepsyProtein 3D structuresHomozygous missense variantRecessive inheritance patternCADD scoresAutosomal recessive inheritance patternSequence variantsMissense variantsGenomic researchExome sequencingGenetic analysisGenetic studiesPathogenic variantsPedigree analysisGenetic epidemiologyGenetic researchGenetic profileHeterogeneous neurological disordersInheritance patternSporadic formsACMGGroup of neurological disordersMyoclonic epilepsyCC2D1A causes ciliopathy, intellectual disability, heterotaxy, renal dysplasia, and abnormal CSF flow
Kim A, Sakin I, Viviano S, Tuncel G, Aguilera S, Goles G, Jeffries L, Ji W, Lakhani S, Kose C, Silan F, Oner S, Kaplan O, Group M, Ergoren M, Mishra-Gorur K, Gunel M, Sag S, Temel S, Deniz E. CC2D1A causes ciliopathy, intellectual disability, heterotaxy, renal dysplasia, and abnormal CSF flow. Life Science Alliance 2024, 7: e202402708. PMID: 39168639, PMCID: PMC11339347, DOI: 10.26508/lsa.202402708.Peer-Reviewed Original ResearchMeSH Keywords and ConceptsConceptsDevelopmental disabilitiesIntellectual disabilityPatient-derived fibroblastsMidbrain regionsBrain developmentDefective ciliogenesisCSF circulationDisabilityCSF flowAbnormal CSF flowNervous system developmentMutant tadpolesCiliated tissuesMultiple model systemsVariant functionPronephric ductUnrelated familiesCC2D1AExpression patternsCiliogenesisRenal dysplasiaLeft-right organizerFunctional analysisDisease mechanismsBrainExome sequencing reveals genetic heterogeneity in consanguineous Pakistani families with neurodevelopmental and neuromuscular disorders
Bibi A, Ji W, Jeffries L, Zerillo C, Konstantino M, Mis E, Khursheed F, Khokha M, Lakhani S, Malik S. Exome sequencing reveals genetic heterogeneity in consanguineous Pakistani families with neurodevelopmental and neuromuscular disorders. American Journal Of Medical Genetics Part C Seminars In Medical Genetics 2024, e32103. PMID: 39152716, DOI: 10.1002/ajmg.c.32103.Peer-Reviewed Original ResearchConceptsExome sequencingConsanguineous Pakistani familyDisease-causing genesFamily segregation analysisAssociated with phenotypesAffected individualsAccurate molecular diagnosisACMG criteriaCandidate variantsGenomic studiesPakistani familyGenomic researchGenetic heterogeneityNovel variantsSegregation analysisConsanguineous familyGenetic variantsNeurodevelopmental disordersHomozygous variantNeuromuscular disordersMiddle-income countriesMolecular diagnosisExomeES dataClinical phenotypeUnraveling the genetic tapestry of pediatric sarcomeric cardiomyopathies and masquerading phenocopies in Jordan
Azab B, Aburizeg D, Shaaban S, Ji W, Mustafa L, Isbeih N, Al-Akily A, Mohammad H, Jeffries L, Khokha M, Lakhani S, Al-Ammouri I. Unraveling the genetic tapestry of pediatric sarcomeric cardiomyopathies and masquerading phenocopies in Jordan. Scientific Reports 2024, 14: 15141. PMID: 38956129, PMCID: PMC11219879, DOI: 10.1038/s41598-024-64921-9.Peer-Reviewed Original ResearchMeSH Keywords and ConceptsConceptsExome sequencingSarcomere-related genesMitochondrial-related diseasesAt-risk family membersGenetic architectureGenetic landscapePathogenic variantsGene panelPediatric cardiomyopathyMolecular underpinningsGenetic testingPhenocopiesSarcomeric cardiomyopathiesGenesSequenceStorage disorderFamily membersAt-riskVariantsEarly interventionExomeFamilyGlycogen storage disorderHypertrophic cardiomyopathyCardiomyopathyA Novel Variant in the Cyto-Tail of SMO Gene Underlying Isolated Postaxial Polydactyly
Khan M, Abdullah, Khan H, Zaman A, Ahmed S, Iqbal P, Bilal M, Ullah K, Hasni M, Ullah I, Mis E, Lakhani S, Ahmad W. A Novel Variant in the Cyto-Tail of SMO Gene Underlying Isolated Postaxial Polydactyly. Molecular Syndromology 2024, 1-7. DOI: 10.1159/000539279.Peer-Reviewed Original ResearchConceptsHomozygous missense variantWhole-exome sequencingHereditary limb malformationsSonic hedgehog pathwayAutosomal recessive mannerSequence variantsMissense variantsProtein foldingIsolated postaxial polydactylyExome sequencingSegregation analysisNovel variantsConsanguineous familySanger sequencingSMO genesExtra digitsHomology modelingCellular differentiationHedgehog pathwayRecessive mannerEmbryonic cellsPostaxial polydactylySequencePreaxial polydactylyVariantsClinical and genetic investigation of 14 families with various forms of short stature syndromes
Khan F, Khan H, Ullah K, Nawaz S, Abdullah, Khan M, Ahmed S, Ilyas M, Ali A, Ullah I, Sohail A, Hussain S, Ahmad F, Faisal, Sufyan R, Hayat A, Hanif T, Bibi F, Hayat M, Ullah R, Khan I, Ali R, Hasni M, Ali H, Bilal M, Peralta S, Buchert R, Zehri Z, Hassan G, Liaqat K, Zahid M, Shah K, Mikitie O, Haack T, Ji W, Lakhani S, Ansar M, Ahmad W. Clinical and genetic investigation of 14 families with various forms of short stature syndromes. Clinical Genetics 2024, 106: 347-353. PMID: 38774940, DOI: 10.1111/cge.14550.Peer-Reviewed Original ResearchAltmetricConceptsSyndromic forms of short statureFamilies of Pakistani originDisease-causing gene variantsSyndromic formsWhole-exome sequencingSequence variantsHomozygosity mappingIdentified genesExome sequencingAutosomal dominant mannerSanger sequencingXRCC4 geneMutation spectrumGenetic etiologyGenetic investigationsLethal defectShort statureGene variantsGenesDominant mannerReduced growthShort stature syndromeHeterogeneous group of disordersSequenceGroup of disorders
Clinical Trials
Current Trials
Pediatric Genomics Discovery Program (PGDP)
HIC ID1411014977RoleSub InvestigatorPrimary Completion Date12/31/2023Recruiting ParticipantsGenderBoth
News
News
- June 24, 2024Source: Yale News
Advanced Genetic Tools Help Researchers ID New Neurodevelopmental Syndrome
- March 25, 2024Source: OMIM
JEFFRIES-LAKHANI NEURODEVELOPMENTAL SYNDROME; JELANS
- July 26, 2023
2022-23 Department of Pediatrics Faculty Awards
- May 12, 2023
Yale Program Accepted Into NORD Rare Diseases Centers of Excellence Network
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