K25 (K25irs1), K26 (K25irs2), K27 (K25irs3), and K28 (K25irs4) Represent the Type I Inner Root Sheath Keratins of the Human Hair Follicle

The recent elucidation of the human type I keratin gene domain allowed the completion of the so far only partially characterized subcluster of type I keratin genes, KRT25–KRT28 (formerly KRT25A–KRT25D), representing the counterparts of the type II inner root sheath (IRS) keratin genes, KRT71–KRT74 (...

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Published inJournal of investigative dermatology Vol. 126; no. 11; pp. 2377 - 2386
Main Authors Langbein, Lutz, Rogers, Michael A., Praetzel-Wunder, Silke, Helmke, Burkhard, Schirmacher, Peter, Schweizer, Jürgen
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 01.11.2006
Elsevier Limited
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Abstract The recent elucidation of the human type I keratin gene domain allowed the completion of the so far only partially characterized subcluster of type I keratin genes, KRT25–KRT28 (formerly KRT25A–KRT25D), representing the counterparts of the type II inner root sheath (IRS) keratin genes, KRT71–KRT74 (encoding proteins K71–K74, formerly K6irs1–K6irs4). Here, we describe the expression patterns of the type I IRS keratin proteins K25–K28 (formerly K25irs1–K25irs4) and their mRNAs. We found that K25 (K25irs1), K27 (K25irs3), and K28 (K25irs4) occur in the Henle layer, the Huxley layer, and in the IRS cuticle. Their expression extends from the bulb region up to the points of terminal differentiation of the three layers. In contrast, K26 (K25irs2) is restricted to the upper IRS cuticle. Apart from the three IRS layers, K25 (K25irs1), K27 (K25irs3), and K28 (K25irs4) are also present in the hair medulla. Based on previous, although controversial claims of the occurrence in the IRS of various “classical” epithelial keratins, we undertook a systematic study using antibodies against the presently described human epithelial and hair keratins and show that the type I keratins K25–K28 (K25irs1–K25irs4) and the type II keratins K71–K74 (K6irs1–K6irs4) represent the IRS keratins of the human hair follicle.
AbstractList The recent elucidation of the human type I keratin gene domain allowed the completion of the so far only partially characterized subcluster of type I keratin genes, KRT25-KRT28 (formerly KRT25A-KRT25D), representing the counterparts of the type II inner root sheath (IRS) keratin genes, KRT71-KRT74 (encoding proteins K71-K74, formerly K6irs1-K6irs4). Here, we describe the expression patterns of the type I IRS keratin proteins K25-K28 (formerly K25irs1-K25irs4) and their mRNAs. We found that K25 (K25irs1), K27 (K25irs3), and K28 (K25irs4) occur in the Henle layer, the Huxley layer, and in the IRS cuticle. Their expression extends from the bulb region up to the points of terminal differentiation of the three layers. In contrast, K26 (K25irs2) is restricted to the upper IRS cuticle. Apart from the three IRS layers, K25 (K25irs1), K27 (K25irs3), and K28 (K25irs4) are also present in the hair medulla. Based on previous, although controversial claims of the occurrence in the IRS of various "classical" epithelial keratins, we undertook a systematic study using antibodies against the presently described human epithelial and hair keratins and show that the type I keratins K25-K28 (K25irs1-K25irs4) and the type II keratins K71-K74 (K6irs1-K6irs4) represent the IRS keratins of the human hair follicle.
Author Langbein, Lutz
Rogers, Michael A.
Schweizer, Jürgen
Praetzel-Wunder, Silke
Schirmacher, Peter
Helmke, Burkhard
Author_xml – sequence: 1
  givenname: Lutz
  surname: Langbein
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  organization: German Cancer Research Center, Department of Cell Biology, University of Heidelberg, Heidelberg, Germany
– sequence: 2
  givenname: Michael A.
  surname: Rogers
  fullname: Rogers, Michael A.
  organization: Section of Normal and Neoplastic Epidermal Differentiation, University of Heidelberg, Heidelberg, Germany
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  givenname: Silke
  surname: Praetzel-Wunder
  fullname: Praetzel-Wunder, Silke
  organization: German Cancer Research Center, Department of Cell Biology, University of Heidelberg, Heidelberg, Germany
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  givenname: Burkhard
  surname: Helmke
  fullname: Helmke, Burkhard
  organization: Institute of Pathology, University of Heidelberg, Heidelberg, Germany
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  givenname: Peter
  surname: Schirmacher
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  organization: Institute of Pathology, University of Heidelberg, Heidelberg, Germany
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  surname: Schweizer
  fullname: Schweizer, Jürgen
  organization: Section of Normal and Neoplastic Epidermal Differentiation, University of Heidelberg, Heidelberg, Germany
BackLink https://www.ncbi.nlm.nih.gov/pubmed/16874310$$D View this record in MEDLINE/PubMed
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  publication-title: J Cell Biol
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  article-title: A small deletion hotspot in the type II keratin gene mK6irs1/Krt2-6g on mouse chromosome 15, a candidate for causing the wavy hair of the caracul (Ca) mutation
  publication-title: Genetics
  doi: 10.1093/genetics/165.2.721
  contributor:
    fullname: Kikkawa
– volume: 124
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  article-title: Characterization of new members of the human type II keratin gene family and a general evaluation of the keratin gene domain on chromosome 12q13.13
  publication-title: J Invest Dermatol
  doi: 10.1111/j.0022-202X.2004.23530.x
  contributor:
    fullname: Rogers
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Snippet The recent elucidation of the human type I keratin gene domain allowed the completion of the so far only partially characterized subcluster of type I keratin...
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SubjectTerms Antibodies - immunology
Evolution, Molecular
Genome, Human
Hair Follicle - chemistry
Hair Follicle - metabolism
Humans
Keratins, Hair-Specific - analysis
Keratins, Hair-Specific - genetics
Keratins, Hair-Specific - metabolism
Keratins, Type I - analysis
Keratins, Type I - genetics
Keratins, Type I - metabolism
Keratins, Type II - analysis
Keratins, Type II - genetics
Keratins, Type II - metabolism
Oligonucleotides - chemistry
Physical Chromosome Mapping
Polymerase Chain Reaction
RNA, Messenger - analysis
RNA, Messenger - metabolism
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Title K25 (K25irs1), K26 (K25irs2), K27 (K25irs3), and K28 (K25irs4) Represent the Type I Inner Root Sheath Keratins of the Human Hair Follicle
URI https://dx.doi.org/10.1038/sj.jid.5700494
http://dx.doi.org/10.1038/sj.jid.5700494
https://www.ncbi.nlm.nih.gov/pubmed/16874310
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Volume 126
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