Structural impact of pathogenic SNPs on β-tubulin using molecular dynamics study

Ummul Halilunnisa Mansoor Hussain1, Syed Ibrahim Basheer Ahamed1

  • 1Department of Bioinformatics, School of Life Sciences, Pondicherry University, Puducherry, India.

Insights

Single nucleotide polymorphisms (SNPs) in the TUBB1 gene cause macro thrombocytopenia. Computational analysis identified three harmful variants impacting β-tubulin structure and microtubule assembly, offering disease treatment insights.

Area of Science:

  • Genetics
  • Biochemistry
  • Computational Biology

Background:

  • Single nucleotide polymorphisms (SNPs) in the TUBB1 gene are linked to macro thrombocytopenia.
  • Understanding the structural and functional impact of these variants is crucial for disease research.

Purpose of the Study:

  • To identify deleterious non-synonymous SNPs (nsSNPs) in the TUBB1 gene.
  • To analyze the structural and dynamic impact of identified nsSNPs on β-tubulin protein.

Main Methods:

  • In-silico screening of 2974 TUBB1 SNPs to identify 32 nsSNPs.
  • Sequence and structure-based analyses, including mCSM server and 100ns molecular dynamics (MD) simulations.
  • Free Energy Landscape (FEL) and Normal Mode Vector (NMV) analyses were performed.

Main Results:

  • Identified 13 deleterious nsSNPs, with three highly destabilizing variants selected for MD simulations.
  • MD simulations revealed that these variants disrupt the spatial arrangement of β-tubulin, affecting microtubule assembly.
  • FEL analysis indicated unstable protein conformations, and NMV analysis showed altered dynamics at the C-terminal MAP-binding region.

Conclusions:

  • Predicted TUBB1 SNPs significantly alter β-tubulin's spatial arrangement, disrupting microtubule assembly.
  • These findings provide a foundation for developing therapeutic strategies for macro thrombocytopenia.

Related Concept Videos

Microtubule Instability02:17

Microtubule Instability

Microtubules are hollow cylindrical filaments having a diameter of approximately 25 nm and a length that varies from 200 nm to 25 μm. GTP-bound tubulin subunits form αβ-heterodimers for microtubule assembly. These core building blocks interact longitudinally, polymerizing into protofilaments. The protofilaments then interact with one another through lateral bonding forces to form stable cylindrical microtubules. These cylindrical filaments are dynamic as they undergo repeated...
5.2K
Destabilization of Microtubules01:45

Destabilization of Microtubules

The destabilization of microtubules can occur during different stages of the microtubule lifecycle, such as nucleation or elongation. It can take place at either end of the microtubule or in the microtubule lattices as a whole. The lifespan of individual microtubules within a cell varies according to the cell type and stage of the cell cycle. During interphase, the lifespan of the microtubule is about 30 minutes, while during cell division, it is about 15 minutes. In axonal microtubules of...
2.8K
Microtubule Formation01:23

Microtubule Formation

Microtubules are dynamic structures that undergo continuous assembly and disassembly. They originate from specialized multi-protein complexes known as microtubule organizing centers or MTOCs. Within the MTOC, the point of origin of the microtubule is known as the minus end, while the end radiating outward is the plus end. Microtubules serve two primary functions — the organization of spindle complexes to separate sister chromatids during mitotic or meiotic cell division and the formation...
5.9K