Literature DB >> 31542996

Molecular modelling and dynamics of CA2 missense mutations causative to carbonic anhydrase 2 deficiency syndrome.

Noor A Shaik1,2, Hifaa A Bokhari1, Tariq Ahmed Masoodi3, Preetha J Shetty4, Ghada M A Ajabnoor5, Ramu Elango1,2, Babajan Banaganapalli1,2.   

Abstract

Carbonic anhydrase 2 (CA2) enzyme deficiency caused by CA2 gene mutations is an inherited disorder characterized by symptoms like osteopetrosis, renal tubular acidosis, and cerebral calcification. This study has collected the CA2 deficiency causal missense mutations and assessed their pathogenicity using diverse computational programs. The 3D protein models for all missense mutations were built, and analyzed for structural divergence, protein stability, and molecular dynamics properties. We found M-CAP as the most sensitive prediction method to measure the deleterious potential of CA2 missense mutations. Free energy dynamics of tertiary structure models of CA2 mutants with DUET, mCSM, and SDM based consensus methods predicted only 50% of the variants as destabilizing. Superimposition of native and mutant CA2 models revealed the minor structural fluctuations at the amino acid residue level but not at the whole protein structure level. Near native molecular dynamic simulation analysis indicated that CA2 causative missense variants result in residue level fluctuation pattern in the protein structure. This study expands the understanding of genotype-protein phenotype correlations underlying CA2 variant pathogenicity and presents a potential avenue for modifying the CA2 deficiency by targeting biophysical structural features of CA2 protein. Communicated by Ramaswamy H. Sarma.

Entities:  

Keywords:  Carbonic anhydrase 2 (CA2); bioinformatics; deleterious variants; missense; molecular analysis; protein modeling; structural analysis

Mesh:

Substances:

Year:  2019        PMID: 31542996     DOI: 10.1080/07391102.2019.1671899

Source DB:  PubMed          Journal:  J Biomol Struct Dyn        ISSN: 0739-1102


  3 in total

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2.  Saudi Familial Hypercholesterolemia Patients With Rare LDLR Stop Gain Variant Showed Variable Clinical Phenotype and Resistance to Multiple Drug Regimen.

Authors:  Zuhier Ahmed Awan; Omran M Rashidi; Bandar Ali Al-Shehri; Kaiser Jamil; Ramu Elango; Jumana Y Al-Aama; Robert A Hegele; Babajan Banaganapalli; Noor A Shaik
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  3 in total

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