Literature DB >> 18840430

Lacritin and other new proteins of the lacrimal functional unit.

Robert L McKown1, Ningning Wang, Ronald W Raab, Roy Karnati, Yinghui Zhang, Patricia B Williams, Gordon W Laurie.   

Abstract

The lacrimal functional unit (LFU) is defined by the 2007 International Dry Eye WorkShop as 'an integrated system comprising the lacrimal glands, ocular surface (cornea, conjunctiva and meibomian glands) and lids, and the sensory and motor nerves that connect them'. The LFU maintains a healthy ocular surface primarily through a properly functioning tear film that provides protection, lubrication, and an environment for corneal epithelial cell renewal. LFU cells express thousands of proteins. Over 200 new LFU proteins have been discovered in the last decade. Lacritin is a new LFU-specific growth factor in human tears that flows through ducts to target corneal epithelial cells on the ocular surface. When applied topically in rabbits, lacritin appears to increase the volume of basal tear secretion. Lacritin is one of only a handful of tear proteins preliminarily reported to be downregulated in blepharitis and in two dry eye syndromes. Computational analysis predicts an ordered C-terminal domain that binds the corneal epithelial cell surface proteoglycan syndecan-1 (SDC1) and is required for lacritin's low nanomolar mitogenic activity. The lacritin-binding site on the N-terminus of SDC1 is exposed by heparanase. Heparanase is constitutively expressed by the corneal epithelium and appears to be a normal constituent of tears. Binding triggers rapid signaling to downstream NFAT and mTOR. A wealth of other new proteins, originally designated as hypothetical when first identified by genomic sequencing, are expressed by the human LFU including: ALS2CL, ARHGEF19, KIAA1109, PLXNA1, POLG, WIPI1 and ZMIZ2. Their demonstrated or implied roles in human genetic disease or basic cellular functions are fuel for new investigation. Addressing topical areas in ocular surface physiology with new LFU proteins may reveal interesting new biological mechanisms and help get to the heart of ocular surface dysfunction.

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Year:  2008        PMID: 18840430      PMCID: PMC2712882          DOI: 10.1016/j.exer.2008.09.002

Source DB:  PubMed          Journal:  Exp Eye Res        ISSN: 0014-4835            Impact factor:   3.467


  73 in total

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4.  Aberrant mobility phenomena of the DNA repair protein XPA.

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5.  Plexin-A1 and its interaction with DAP12 in immune responses and bone homeostasis.

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Journal:  J Proteome Res       Date:  2006-06       Impact factor: 4.466

7.  Mapping the binding site on small ankyrin 1 for obscurin.

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8.  Release of membrane-associated mucins from ocular surface epithelia.

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Authors:  Giovanni Stevanin; Filippo M Santorelli; Hamid Azzedine; Paula Coutinho; Jacques Chomilier; Paola S Denora; Elodie Martin; Anne-Marie Ouvrard-Hernandez; Alessandra Tessa; Naïma Bouslam; Alexander Lossos; Perrine Charles; José L Loureiro; Nizar Elleuch; Christian Confavreux; Vítor T Cruz; Merle Ruberg; Eric Leguern; Djamel Grid; Meriem Tazir; Bertrand Fontaine; Alessandro Filla; Enrico Bertini; Alexandra Durr; Alexis Brice
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10.  Phospholipase D stimulates release of nascent secretory vesicles from the trans-Golgi network.

Authors:  Y G Chen; A Siddhanta; C D Austin; S M Hammond; T C Sung; M A Frohman; A J Morris; D Shields
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  32 in total

Review 1.  Lacritin and the tear proteome as natural replacement therapy for dry eye.

Authors:  Roy Karnati; Diane E Laurie; Gordon W Laurie
Journal:  Exp Eye Res       Date:  2013-06-12       Impact factor: 3.467

2.  Detection of prosecretory mitogen lacritin in nonprimate tears primarily as a C-terminal-like fragment.

Authors:  Diane E Laurie; Rebecca K Splan; Kari Green; Katherine M Still; Robert L McKown; Gordon W Laurie
Journal:  Invest Ophthalmol Vis Sci       Date:  2012-09-12       Impact factor: 4.799

Review 3.  TFOS DEWS II Tear Film Report.

Authors:  Mark D P Willcox; Pablo Argüeso; Georgi A Georgiev; Juha M Holopainen; Gordon W Laurie; Tom J Millar; Eric B Papas; Jannick P Rolland; Tannin A Schmidt; Ulrike Stahl; Tatiana Suarez; Lakshman N Subbaraman; Omür Ö Uçakhan; Lyndon Jones
Journal:  Ocul Surf       Date:  2017-07-20       Impact factor: 5.033

4.  Gene expression in human accessory lacrimal glands of Wolfring.

Authors:  John L Ubels; Ilene K Gipson; Sandra J Spurr-Michaud; Ann S Tisdale; Rachel E Van Dyken; Mark P Hatton
Journal:  Invest Ophthalmol Vis Sci       Date:  2012-10-01       Impact factor: 4.799

5.  Regional differences in rat conjunctival ion transport activities.

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6.  Cytoprotective effect of lacritin on human corneal epithelial cells exposed to benzalkonium chloride in vitro.

Authors:  Mary M Feng; Julia Baryla; Hong Liu; Gordon W Laurie; Robert L McKown; Negin Ashki; Dinesh Bhayana; Cindy M L Hutnik
Journal:  Curr Eye Res       Date:  2014-01-08       Impact factor: 2.424

7.  A thermo-responsive protein treatment for dry eyes.

Authors:  Wan Wang; Aarti Jashnani; Suhaas R Aluri; Joshua A Gustafson; Pang-Yu Hsueh; Frances Yarber; Robert L McKown; Gordon W Laurie; Sarah F Hamm-Alvarez; J Andrew MacKay
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8.  Tissue transglutaminase is a negative regulator of monomeric lacritin bioactivity.

Authors:  Francisco Velez V; Jeffrey A Romano; Robert L McKown; Kari Green; Liwen Zhang; Ronald W Raab; Denise S Ryan; Cindy M L Hutnik; Henry F Frierson; Gordon W Laurie
Journal:  Invest Ophthalmol Vis Sci       Date:  2013-03-01       Impact factor: 4.799

9.  Conserved regional 3' grouping of rare codons in the coding sequence of ocular prosecretory mitogen lacritin.

Authors:  Robert L McKown; Ronald W Raab; Patricia Kachelries; Sara Caldwell; Gordon W Laurie
Journal:  Invest Ophthalmol Vis Sci       Date:  2013-03-19       Impact factor: 4.799

Review 10.  RNA-binding proteins in eye development and disease: implication of conserved RNA granule components.

Authors:  Soma Dash; Archana D Siddam; Carrie E Barnum; Sarath Chandra Janga; Salil A Lachke
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