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1 y dynamic structure of the mitochondrion can be remodeled to accommodate a change in oxidative phosph
2 in formation of these binding sites and can be remodeled to accommodate different non-cognate substr
3 by an extracellular matrix (ECM), which must be remodeled to accommodate growth and morphogenesis.
4 dues 297 to 362 of the C-terminal arm had to be remodeled to accommodate the higher curvature of the
5 central to providing resiliency, but how ECM is remodeled to accommodate growth is poorly understood.
6 tward-facing state, with a binding site that is remodeled to accommodate the increased charge density
7 across germ layer lineage boundaries and can be remodeled to adopt the characteristics of a new cell
14 onical side chain enabled the active site to be remodeled to enable more efficient stabilization of t
15 between cytosolic factors and membranes that are remodeled to encapsulate autophagic cargo within an
16 dented mode in which the Ras effector domain is remodeled to expose an extended pocket that connects
17 n may stabilize early synapses that can then be remodeled to express a different cadherin and that ca
18 ria have a protective cell envelope that can be remodeled to facilitate their survival in challenging
19 bition and the mechanisms by which chromatin is remodeled to facilitate the regulation of gene expres
21 nfection, the host cell endosecretory system is remodeled to form the cytoplasmic virion assembly com
22 eta-intercalated (HCO(3)(-)-secreting) cells are remodeled to functionally resemble alpha-intercalate
25 attachment in the uterus, where the arteries are remodeled to supply the fetus with oxygen and nutrie
26 M with diverse physico-mechanical properties is remodeled to support blood vessel formation has remai
27 how the high affinity RPA-ssDNA interactions are remodeled to yield access, a key step in several DNA