| Literature DB >> 24250111 |
Fatchiyah Fatchiyah1, Nur Christian, Djokowahono Soeatmadji.
Abstract
The purpose of this study is to examine the effect of mutation on tyrosine kinase hINSR gene of DM Type 2 patients reduce the IRS- 1 activation by in silico analysis. Blood DNA of DM Type 2 patients from Saeful Anwar Hospital Malang were amplified and sequenced by specific primers of tyrosine kinase domain of hINSR gene. These gene sequences were converted to protein sequence by BLAST and the IRS-1 protein sequence is retrieved from NCBI database. Both of the protein sequence was aligned by using Bio edit version 5.0.6. The model of three dimension protein was predicted by SWISS MODEL webserver, and visualized the structure alteration by using Pymol 0.99rc6 and Hex 5.0, and then superimpose of the hINSR and IRS-1 interaction were examined by docking using Hex 5.0. The results showed that one substitution and one deletion of 8-3F patient exon-22 hINSR gene tyrosine kinase domain cause loss of four helixes and three coils structures on tyrosine kinase hINSR protein. Six-deletions and six-substitutions on same gene domain of DMK9 patient changed the two helixes became coil structure. The binding energy of hINSR tyrosine kinase with IRS-1 of normal is E= -494.67 kJ/mol, DMK9 patient is E= -458.4 kJ/mol, and 8-3F patient is E=-544.20 kJ/mol. The DMK9 patient prognosis has better physiological condition than 8-3F patient. Interaction between 8-3F of hINSR tyrosine kinase domain mutation and PTB domain IRS-1 is more spontaneous than DMK9, but both of them were reduced on IRS-1 activation respectively.Entities:
Keywords: Diabetes Mellitus Type-2; IRS-1; In Silico; hINSR
Year: 2013 PMID: 24250111 PMCID: PMC3819570 DOI: 10.6026/97320630009853
Source DB: PubMed Journal: Bioinformation ISSN: 0973-2063
Figure 1Three dimensional (3-D) structure of Tyrosine kinase of hINS of DMT2 code 8-3F patient. A) Three-D structure Tyrosine kinase domain (yellow) on normal and mutation region; B) Visualization of 3d-surface structure between normal and mutant region; C) Superimpose 3D-structure of normal and mutant Tyrosine kinase hINSR.
Figure 2Three dimensional (3-D) structure of Tyrosine kinase of hINS of DMT2 code DMK9-3F patient. A) Three-D structure Tyrosine kinase domain (red) on normal and mutation region; B) Visualization of 3d-surface structure between normal and mutant region; C) Superimpose 3D-structure of normal and mutant Tyrosine kinase hINSR; D) Docking of IRS activation on the PTB domain of IRS was interacted with tyrosine kinase domain of hINSR with proper energy.