로그인

Many proteins’ biological role depends on their interactions with their ligands, small molecules that bind to specific locations on the protein known as ligand-binding sites. Ligand-binding sites are often conserved among homologous proteins as these sites are critical for protein function.

Binding sites are often located in large pockets, and if their location on a protein’s surface is unknown, it can be predicted using various approaches. The energetic method computationally analyses the interaction energy of different amino acid residues with the ligand and predicts the ones where binding energy is at a minimum to be potential binding sites. However, examining conserved sequences is often used in conjunction with other methodologies to enhance this prediction further. Structurally conserved residues can be used to distinguish between binding sites and exposed protein surfaces. The amino acids, Trp, Phe, and Met, are highly conserved in binding sites, and no such conservation is observed in the case of exposed protein surfaces.

Various computational tools can predict binding sites using a mix of structural, energetic, and conserved binding site methodologies. ConCavity is a tool that can be used to predict 3D ligand-binding pockets and individual ligand-binding residues. The algorithm used directly integrates evolutionary sequence conservation estimates with structure-based prediction. Another tool, MONKEY, is used to identify conserved transcription-factor binding sites in multispecies alignments. It employs factor specificity and binding-site evolution models to compute the likelihood that putative sites are conserved and assign statistical significance to each prediction.

Tags

Conserved Binding SitesProtein InteractionsMolecular BiologyEvolutionary BiologyBinding Site ConservationGenetic Regulatory ElementsFunctional GenomicsSequence AlignmentStructural Biology

장에서 6:

article

Now Playing

6.3 : Conserved Binding Sites

Protein Function

4.1K Views

article

6.1 : 리간드 결합 부위

Protein Function

7.5K Views

article

6.2 : 단백질-단백질 인터페이스

Protein Function

3.6K Views

article

6.4 : 보조 인자와 코엔자임

Protein Function

10.8K Views

article

6.5 : 협력 알로스테릭 전이

Protein Function

2.3K Views

article

6.6 : 단백질 키나아제(protein kinase)와 인산분해효소(Phosphatase)

Protein Function

3.7K Views

article

6.7 : GTPase 및 해당 규정

Protein Function

2.2K Views

article

6.8 : 공유 결합 단백질 조절인자

Protein Function

1.6K Views

article

6.9 : 교체 가능한 부품을 가진 단백질 복합체

Protein Function

1.8K Views

article

6.10 : 기계적 단백질 기능

Protein Function

2.0K Views

article

6.11 : 구조적 단백질 기능

Protein Function

2.7K Views

article

6.12 : 단백질 네트워크

Protein Function

2.2K Views

JoVE Logo

개인 정보 보호

이용 약관

정책

연구

교육

JoVE 소개

Copyright © 2025 MyJoVE Corporation. 판권 소유