TY - JOUR
T1 - Blocking Kallikrein 6 promotes developmental myelination
AU - Yoon, Hyesook
AU - Triplet, Erin M.
AU - Simon, Whitney L.
AU - Choi, Chan Il
AU - Kleppe, Laurel S.
AU - De Vita, Elena
AU - Miller, Aubry K.
AU - Scarisbrick, Isobel A.
N1 - Funding Information:
National Institute of Neurological Disorders and Stroke, Grant/Award Number: R01NS052741‐10; National Multiple Sclerosis Society, Grant/Award Numbers: G‐1508‐05951, G‐1510‐06548; Israel’s Ministry of Science, Technology and Space (MOST), Grant/Award Number: GR‐2495 Funding information
Funding Information:
Studies were supported by the National Institutes of Health R01NS052741‐10, Pilot Project G‐1510‐06548 and Research Grants (G‐1508‐05951, RG‐1901‐33209) from the National Multiple Sclerosis Society and the Mayo Clinic Center for MS and Autoimmune Neurology (IAS). Support from the Cooperation Program in Cancer Research of the German Cancer Research Center (DKFZ) and Israel's Ministry of Science, Technology and Space (MOST) (Grant GR‐2495 to A.K.M) is also acknowledged. ET was supported by the National Institute of General Medical Sciences (T32 GM 65841). The authors also thank Dr. G. Sotiropoulou for generously providing the Klk6 knockout mice.
Publisher Copyright:
© 2021 Wiley Periodicals LLC.
PY - 2022/3
Y1 - 2022/3
N2 - Kallikrein related peptidase 6 (Klk6) is a secreted serine protease highly expressed in oligodendrocytes and implicated in demyelinating conditions. To gain insights into the significance of Klk6 to oligodendrocyte biology, we investigated the impact of global Klk6 gene knockout on CNS developmental myelination using the spinal cord of male and female mice as a model. Results demonstrate that constitutive loss of Klk6 expression accelerates oligodendrocyte differentiation developmentally, including increases in the expression of myelin proteins such as MBP, PLP and CNPase, in the number of CC-1+ mature oligodendrocytes, and myelin thickness by the end of the first postnatal week. Co-ordinate elevations in the pro-myelinating signaling pathways ERK and AKT, expression of fatty acid 2-hydroxylase, and myelin regulatory transcription factor were also observed in the spinal cord of 7d Klk6 knockouts. LC/MS/MS quantification of spinal cord lipids showed sphingosine and sphingomyelins to be elevated in Klk6 knockouts at the peak of myelination. Oligodendrocyte progenitor cells (OPCs)-derived from Klk6 knockouts, or wild type OPCs-treated with a Klk6 inhibitor (DFKZ-251), also showed increased MBP and PLP. Moreover, inhibition of Klk6 in OPC cultures enhanced brain derived neurotrophic factor-driven differentiation. Altogether, these findings suggest that oligodendrocyte-derived Klk6 may operate as an autocrine or paracrine rheostat, or brake, on pro-myelinating signaling serving to regulate myelin homeostasis developmentally and in the adult. These findings document for the first time that inhibition of Klk6 globally, or specifically in oligodendrocyte progenitors, is a strategy to increase early stages of oligodendrocyte differentiation and myelin production in the CNS.
AB - Kallikrein related peptidase 6 (Klk6) is a secreted serine protease highly expressed in oligodendrocytes and implicated in demyelinating conditions. To gain insights into the significance of Klk6 to oligodendrocyte biology, we investigated the impact of global Klk6 gene knockout on CNS developmental myelination using the spinal cord of male and female mice as a model. Results demonstrate that constitutive loss of Klk6 expression accelerates oligodendrocyte differentiation developmentally, including increases in the expression of myelin proteins such as MBP, PLP and CNPase, in the number of CC-1+ mature oligodendrocytes, and myelin thickness by the end of the first postnatal week. Co-ordinate elevations in the pro-myelinating signaling pathways ERK and AKT, expression of fatty acid 2-hydroxylase, and myelin regulatory transcription factor were also observed in the spinal cord of 7d Klk6 knockouts. LC/MS/MS quantification of spinal cord lipids showed sphingosine and sphingomyelins to be elevated in Klk6 knockouts at the peak of myelination. Oligodendrocyte progenitor cells (OPCs)-derived from Klk6 knockouts, or wild type OPCs-treated with a Klk6 inhibitor (DFKZ-251), also showed increased MBP and PLP. Moreover, inhibition of Klk6 in OPC cultures enhanced brain derived neurotrophic factor-driven differentiation. Altogether, these findings suggest that oligodendrocyte-derived Klk6 may operate as an autocrine or paracrine rheostat, or brake, on pro-myelinating signaling serving to regulate myelin homeostasis developmentally and in the adult. These findings document for the first time that inhibition of Klk6 globally, or specifically in oligodendrocyte progenitors, is a strategy to increase early stages of oligodendrocyte differentiation and myelin production in the CNS.
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U2 - 10.1002/glia.24100
DO - 10.1002/glia.24100
M3 - Article
C2 - 34626143
AN - SCOPUS:85116565626
SN - 0894-1491
VL - 70
SP - 430
EP - 450
JO - GLIA
JF - GLIA
IS - 3
ER -