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37 results on '"Shirlee, Shril"'

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1. Whole exome sequencing identifies potential candidate genes for spina bifida derived from mouse models

2. A discarded synonymous variant in NPHP3 explains nephronophthisis and congenital hepatic fibrosis in several families

3. Generation of Monogenic Candidate Genes for Human Nephrotic Syndrome Using 3 Independent Approaches

4. De novo TRIM8 variants impair its protein localization to nuclear bodies and cause developmental delay, epilepsy, and focal segmental glomerulosclerosis

5. Mutations in transcription factor CP2-like 1 may cause a novel syndrome with distal renal tubulopathy in humans

6. Novel nephronophthisis-associated variants reveal functional importance of MAPKBP1 dimerization for centriolar recruitment

7. Whole exome sequencing identified ATP6V1C2 as a novel candidate gene for recessive distal renal tubular acidosis

8. Sequencing the CaSR locus in Pakistani stone formers reveals a novel loss-of-function variant atypically associated with nephrolithiasis

9. Whole-exome sequencing identifies FOXL2, FOXA2 and FOXA3 as candidate genes for monogenic congenital anomalies of the kidneys and urinary tract

10. Exome survey of individuals affected by VATER/VACTERL with renal phenotypes identifies phenocopies and novel candidate genes

11. Mutations of the Transcriptional Corepressor ZMYM2 Cause Syndromic Urinary Tract Malformations

12. COL4A1 mutations as a potential novel cause of autosomal dominant CAKUT in humans

13. Progressive Pseudorheumatoid Dysplasia resolved by whole exome sequencing: a novel mutation in WISP3 and review of the literature

14. Reverse phenotyping facilitates disease allele calling in exome sequencing of patients with CAKUT

15. Recessive NOS1AP variants impair actin remodeling and cause glomerulopathy in humans and mice

16. DAAM2 Variants Cause Nephrotic Syndrome via Actin Dysregulation

17. Phenotype expansion of heterozygous FOXC1 pathogenic variants toward involvement of congenital anomalies of the kidneys and urinary tract (CAKUT)

18. Mutations in WDR4 as a new cause of Galloway-Mowat syndrome

19. Whole Exome Sequencing Reveals a Monogenic Cause of Disease in ≈43% of 35 Families With Midaortic Syndrome

20. Panel sequencing distinguishes monogenic forms of nephritis from nephrosis in children

21. Genetic variants in the LAMA5 gene in pediatric nephrotic syndrome

22. Whole exome sequencing frequently detects a monogenic cause in early onset nephrolithiasis and nephrocalcinosis

23. Whole-Exome Sequencing Identifies Causative Mutations in Families with Congenital Anomalies of the Kidney and Urinary Tract

24. Whole Exome Sequencing of Patients with Steroid-Resistant Nephrotic Syndrome

25. Exome sequencing in Jewish and Arab patients with rhabdomyolysis reveals single-gene etiology in 43% of cases

26. Gene panel sequencing identifies a likely monogenic cause in 7% of 235 Pakistani families with nephrolithiasis

27. Whole-Exome Sequencing Reveals FAT4 Mutations in a Clinically Unrecognizable Patient with Syndromic CAKUT: A Case Report

28. Whole exome sequencing identifies causative mutations in the majority of consanguineous or familial cases with childhood-onset increased renal echogenicity

29. Mutations in KIRREL1, a slit diaphragm component, cause steroid-resistant nephrotic syndrome

30. Whole-Exome Sequencing Enables a Precision Medicine Approach for Kidney Transplant Recipients

31. Mutations of ADAMTS9 Cause Nephronophthisis-Related Ciliopathy

32. Mutations in six nephrosis genes delineate a pathogenic pathway amenable to treatment

33. Mutations in TBX18 Cause Dominant Urinary Tract Malformations via Transcriptional Dysregulation of Ureter Development

34. A homozygous missense variant in VWA2, encoding an interactor of the Fraser-complex, in a patient with vesicoureteral reflux

35. Mutations in sphingosine-1-phosphate lyase cause nephrosis with ichthyosis and adrenal insufficiency

36. Exome Sequencing Discerns Syndromes in Patients from Consanguineous Families with Congenital Anomalies of the Kidneys and Urinary Tract

37. Prevalence of Monogenic Causes in Pediatric Patients with Nephrolithiasis or Nephrocalcinosis

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