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1                           They attach to the barbed end of a filament and prevent polymerization, lea
2  profilin will block subunit addition at the barbed end of a filament.
3 characterized myosin motors move towards the barbed (+) end of actin filaments.
4 sis shows how the binding of profilin to the barbed end of actin causes a rotation of the small domai
5  heads swing forward alternately towards the barbed end of actin driven by ATP hydrolysis.
6 formin, AtFH14, processively attaches to the barbed end of actin filaments as a dimer and slows their
7 s, function as homodimers that bind with the barbed end of actin filaments through a ring-like struct
8           CP binds with high affinity to the barbed end of actin filaments, blocking the addition and
9 ng protein, purified Cdc12(FH1FH2)p caps the barbed end of actin filaments, preventing subunit additi
10  of the actin cytoskeleton by binding to the barbed end of actin filaments.
11      Myosin V, a motor that moves toward the barbed end of actin, is processive, undergoing multiple
12       Actin capping protein (CapZ) binds the barbed ends of actin at sarcomeric Z-lines.
13 d that dissociates capping proteins from the barbed ends of actin filaments [14] [15] [16], they are
14 he cell allow capping protein to bind to the barbed ends of actin filaments and Arp2/3 complex to bin
15    Myosin XVa localization overlaps with the barbed ends of actin filaments and extends to the apical
16 units for subsequent polymerization steps at barbed ends of actin filaments and has been shown to par
17                  Profilin interacts with the barbed ends of actin filaments and is thought to facilit
18 ate between the low affinity of profilin for barbed ends of actin filaments and its high affinity for
19 rized and discontinuous distribution of free barbed ends of actin filaments and of beta-actin protein
20 concentration of capping protein, which caps barbed ends of actin filaments and prevents elongation,
21  muscles near or on sarcomere Z lines, where barbed ends of actin filaments are anchored.
22 ia revealed that the relative levels of free barbed ends of actin filaments are reduced by over 30% i
23 ing proteins bind to and dissociate from the barbed ends of actin filaments by observing single muscl
24 the closer to the front of the cell the more barbed ends of actin filaments face forward.
25         The Bni1 FH2 domain protects growing barbed ends of actin filaments from vast excesses of cap
26                                          The barbed ends of actin filaments in striated muscle are an
27                              CP binds to the barbed ends of actin filaments in vitro and controls act
28 e interaction of N-WASP with GRB2 and/or the barbed ends of actin filaments increases its exchange ra
29                                  Capping the barbed ends of actin filaments is a critical step for re
30 echanism by which capping protein (CP) binds barbed ends of actin filaments is not understood, and th
31 min proteins associate processively with the barbed ends of actin filaments through many rounds of ac
32  and tightly associate with the fast growing barbed ends of actin filaments to allow insertional grow
33             Actin capping protein (CP) binds barbed ends of actin filaments to regulate actin assembl
34  also demonstrate that Aip1 does not cap the barbed ends of actin filaments, as was previously though
35  nucleation, and growth by polymerization of barbed ends of actin filaments, as well as capping and d
36 VASP induces and maintains clustering of the barbed ends of actin filaments, which putatively corresp
37 nding inhibited the ability of CP to cap the barbed ends of actin filaments.
38 oteins move processively with the elongating barbed ends of actin filaments.
39 unction of CP is presumed to involve binding barbed ends of actin filaments.
40 ) uncaps a small number of the fast-growing (barbed) ends of actin filaments, thereby eliciting slow
41  the cleft separating domains 1 and 3 at the barbed-end of actin.
42                           AIP1 also caps the barbed end of ADF/cofilin-bound actin filament.
43   The very high affinity of gelsolin for the barbed end of an actin filament drives the binding react
44 number as it severs F-actin and to cover the barbed end of an actin filament, which otherwise might c
45 ittle effect on Capu once it is bound to the barbed end of an elongating filament.
46 cture may allow formins to stair-step on the barbed end of an elongating nascent filament.
47          The alpha/beta-heterodimer caps the barbed ends of an actin filament and restricts its growt
48 is slow, predicting a half-life for a capped barbed end of approximately 30 min.
49                       These data suggest the barbed end of Arp2 is exposed, but Arp2 and Arp3 are not
50 ivation the first actin monomer binds at the barbed end of Arp2.
51               These results suggest that the barbed ends of Cdc42-induced filaments are protected fro
52 ently inhibits nucleation and binding to the barbed end of elongating filaments by the C-terminal hal
53 brin inhibits depolymerization mainly at the barbed end of F-actin.
54 n the same strand but probably closer to the barbed end of F-actin.
55 ments like swinholide A; rather, it caps the barbed end of F-actin.
56                    Myosin-5 walks toward the barbed ends of F-actin, traveling to sites of actin poly
57              We conclude that XAip1 caps the barbed end of filaments severed by cofilin.
58                              It binds to the barbed end of filaments with high affinity and modulates
59 elerate elongation, although it binds to the barbed end of filaments.
60 ctin elongates either the pointed end or the barbed end of filaments.
61                        Aip1 does not cap the barbed ends of filaments severed by cofilin.
62 pFH1FH2 remained associated with the growing barbed ends of filaments.
63 in monomer incorporation at the fast-growing barbed ends of filaments.
64 ofilin-actin from the cellular pool onto the barbed end of growing filaments.
65                Capping protein (CP) binds to barbed ends of growing actin filaments and inhibits elon
66 quent recruitment of fascin to the clustered barbed ends of Lambda-precursors initiated filament bund
67 %) associate for approximately 25 s with the barbed end of preassembled filaments, inhibiting their e
68 ucleated new actin filaments or captured the barbed ends of preformed actin filaments that grew by in
69              The probe angle relative to the barbed end of the actin (beta) averaged 128 degrees whil
70 ghtly caps (K(d) approximately 0.1-1 nM) the barbed end of the actin filament (the end favored for po
71 expressed, 62-kDa heterodimer that binds the barbed end of the actin filament with approximately 0.1
72  heterodimeric 62-kDa protein that binds the barbed end of the actin filament with high affinity to b
73 nucleate and processively cap the elongating barbed end of the actin filament, and Bud6 and profilin
74 and the molecular basis for how CP binds the barbed end of the actin filament, we have used a combina
75  and cell motility by binding tightly to the barbed end of the actin filament.
76  fidelity of information communicated at the barbed end of the actin filament.
77 rmin Homology 2 (FH2) domain dimers with the barbed end of the filament, allowing subunit addition wh
78 P interacts with both actin protomers at the barbed end of the filament, and the amphipathic helix at
79 in complexes into contact with the FH2-bound barbed end of the filament, thereby enabling direct tran
80 units between the immobilized formin and the barbed end of the filament.
81 in is proposed to be in position to join the barbed end of the growing filament concurrently with the
82 tes actin filaments and remains bound to the barbed end of the growing filament.
83 merization at the pointed end as well as the barbed end of the monomer.
84 ngly, a loss of the uniform alignment of the barbed ends of the actin filaments.
85 e presence of magnesium, suggesting that the barbed ends of the erythrocyte actin filaments are cappe
86                 To test directly whether the barbed ends of the erythrocyte actin filaments were alre
87 ion due to addition of actin monomers to the barbed ends of the filaments.
88 ing nurse cell dumping, Enabled localizes to barbed ends of the nurse cell actin filaments, suggestin
89                  Localization of Fhos to the barbed-ends of the arrays, achieved via a novel N-termin
90 ex nucleation in vitro, but uncapping of the barbed ends of these actin filaments restores their abil
91 ed rat cardiac myofibrils at the pointed and barbed ends of thin filaments, respectively.

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