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Actin polymerization occurs through the head-to-tail association of binding sites on monomeric actin or G-actin to form filamentous or F-actin. The polymerization can be divided into three phases ̶ nucleation, elongation, and steady-state phase.

The nucleation phase involves forming a stable nucleus consisting of three actin monomers to form a new actin filament. Actin-binding proteins such as formins and Arp2/3 complex help filament growth post-nucleation. The Formins form straight actin filaments with the help of actin-profilin complexes. They can form clusters near the plasma membrane to initiate actin filament formation. While in the cytoplasm, they may participate in the elongation phase of pre-existing actin filaments. During elongation of actin filaments, formins remove the capping proteins and form a sleeve around the actin subunits. The removal of capping proteins involves the dimerization of formin in the shape of a donut and binding to a pre-existing filament through the formin homology 2 or FH2 domain. Additionally, the FH1 domains of formin monomers also capture the profilin-G-actin complexes, thereby promoting the addition of G-actin to the filament.

Tags
Actin PolymerizationG actinF actinNucleation PhaseElongation PhaseSteady state PhaseActin binding ProteinsForminsArp2 3 ComplexActin Filament FormationActin profilin ComplexesCapping ProteinsFormin Homology 2 DomainFH1 DomainProfilin G actin Complexes

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25.11 : Actin Polymerization

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25.1 : 세포골격 소개

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25.2 : 세포골격 필라멘트의 적응성

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25.3 : 세포골격의 극성(Polarity of the Cytoskeleton)

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25.4 : 세포골격 필라멘트의 조립

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25.5 : 세포골격 링커 단백질 - Plakins

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25.6 : 세포골격 부속 단백질(Cytoskeletal Accessory Proteins)

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25.7 : 박테리아의 세포골격 단백질

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25.8 : 바이러스와 박테리아의 세포 내 이동

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25.9 : 세포골격 연구

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25.10 : Actin 소개

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25.12 : Actin 트레드밀링

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25.13 : 직선 또는 분지 actin 필라멘트의 생성

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25.14 : Actin 필라멘트 해중합

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25.15 : 고차 액틴 필라멘트의 형성

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