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1 l differentiation and incorporation into the cornified cell envelope.
2 plakin, which is known as a precursor of the cornified cell envelope.
3 ns become sequentially incorporated into the cornified cell envelope.
4 cytes, but did not detect the protein in the cornified cell envelope.
5 tin filaments, intercellular lipids, and the cornified cell envelope.
6 ified as a putative precursor protein of the cornified cell envelope.
7 ross-linked to form a major component of the cornified cell envelope.
10 al compelling lines of evidence point to the cornified cell envelope and structural components of the
11 ing keratin filaments, as a component of the cornified cell envelope, and as a source of natural mois
16 ied as a likely constituent of the insoluble cornified cell envelope (CE) of stratified squamous epit
18 l involucrin biotinylation and the increased cornified cell envelope formation provided evidence that
21 akin may not relate to the physiology of the cornified cell envelope in epidermal keratinocytes but m
22 1) enzyme is involved in the formation of a cornified cell envelope in terminally differentiating ep
23 e, which is critical for the assembly of the cornified cell envelope in terminally differentiating ke
24 periplakin have been shown to be part of the cornified cell envelope in terminally differentiating st
25 a previously characterized component of the cornified cell envelope of stratified epithelia, where i
26 R) proteins are structural components of the cornified cell envelope of stratified squamous epithelia
27 ne-rich (SPR) proteins are components of the cornified cell envelope of stratified squamous epithelia
28 cross-bridging reinforcement protein of the cornified cell envelope of the inner root sheath cells b
30 uctural proteins and in the formation of the cornified cell envelope, thereby contributing to rigid s
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