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Dive into the research topics where Purevjav Javkhlan is active.

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Featured researches published by Purevjav Javkhlan.


American Journal of Pathology | 2010

Potential Down-Regulation of Salivary Gland AQP5 by LPS via Cross-Coupling of NF-κB and p-c-Jun/c-Fos

Chenjuan Yao; Nunuk Purwanti; Mileva Ratko Karabasil; Ahmad Azlina; Purevjav Javkhlan; Takahiro Hasegawa; Tetsuya Akamatsu; Toru Hosoi; Koichiro Ozawa; Kazuo Hosoi

The mRNA and protein levels of aquaporin (AQP)5 in the parotid gland were found to be potentially decreased by lipopolysaccharide (LPS) in vivo in C3H/HeN mice, but only weakly in C3H/HeJ, a TLR4 mutant mouse strain. In the LPS-injected mice, pilocarpine-stimulated saliva production was reduced by more than 50%. In a tissue culture system, the LPS-induced decrease in the AQP5 mRNA level was blocked completely by pyrrolidine dithiocarbamate, MG132, tyrphostin AG126, SP600125, and partially by SB203580, which are inhibitors for IkappaB kinase, 26S proteasome, ERK1/2, JNK, and p38 MAPK, respectively. In contrast, the expression of AQP1 mRNA was down-regulated by LPS and such down-regulation was blocked only by SP600125. The transcription factors NF-kappaB (p65 subunit), p-c-Jun, and c-Fos were increased by LPS given in vivo, whereas the protein-binding activities of the parotid gland extract toward the sequences for NF-kappaB but not AP-1-responsive elements present at the promoter region of the AQP5 gene were increased by LPS injection. Co-immunoprecipitation by using antibody columns suggested the physical association of the three transcription factors. These results suggest that LPS-induced potential down-regulation of expression of AQP5 mRNA in the parotid gland is mediated via a complex(es) of these two classes of transcription factors, NF-kappaB and p-c-Jun/c-Fos.


American Journal of Physiology-cell Physiology | 2011

Novel phosphorylation of aquaporin-5 at its threonine 259 through cAMP signaling in salivary gland cells

Takahiro Hasegawa; Ahmad Azlina; Purevjav Javkhlan; Chenjuan Yao; Tetsuya Akamatsu; Kazuo Hosoi

Aquaporin-5 (AQP5), a water channel, plays key roles in salivary secretion. The novel phosphorylation of AQP5 was investigated by using human salivary gland (HSG) cells and mouse salivary glands. In the HSG cells stably transfected with a wild-type mouse AQP5 construct, a protein band immunoreactive with antibody against phosphorylated PKA substrate was detected in the AQP5 immunoprecipitated sample, and its intensity was enhanced by short-term treatment of the cells with 8-bromo-cAMP, forskolin, or phorbol 12-myristate 13-acetate, but not by that with A23187 calcium ionophore. Such enhancement was inhibited in the presence of H-89, a PKA inhibitor. An AQP5 mutant (AQP5-T259A) expressed by transfection of HSG cells was not recognized by anti-phosphorylated PKA substrate antibody, even when the cells were stimulated with the protein kinase activators. Immunoblotting and immunofluorescence studies using a specific antibody detecting AQP5 phosphorylated at its Thr259 demonstrated that AQP5 was rapidly and transiently phosphorylated at the apical membrane of acinar cells in the submandibular and parotid glands after administration of isoproterenol, but not pilocarpine. Furthermore, both AQP5 and AQP5-T259A were constitutively localized at the plasma membrane in HSG cells under the resting and forskolin-stimulated conditions. These results suggest that AQP5 is phosphorylated at its Thr259 by PKA through cAMP, but not Ca(2+), signaling pathways, and that this phosphorylation does not contribute to AQP5 trafficking in the salivary gland cells.


American Journal of Physiology-gastrointestinal and Liver Physiology | 2010

Roles of lysosomal proteolytic systems in AQP5 degradation in the submandibular gland of rats following chorda tympani parasympathetic denervation

Ahmad Azlina; Purevjav Javkhlan; Yuka Hiroshima; Takahiro Hasegawa; Chenjuan Yao; Tetsuya Akamatsu; Kazuo Hosoi

Chorda tympani denervation (CTD) of rats was earlier shown to result in loss of submandibular gland (SMG) weight (at only 1 wk) and in continued reduction in aquaporin 5 (AQP5) protein expression (until 4 wk), without affecting its mRNA synthesis (Li X, Azlina A, Karabasil MR, Purwanti N, Hasegawa T, Yao C, Akamatsu T, Hosoi K. Am J Physiol Gastrointest Liver Physiol 295: G112-G123, 2008). The present study indicated that despite elevation of bax, a proapoptosis protein, by CTD, the operation also increased the level of bcl-2, an antiapoptosis protein, in the SMG. Terminal deoxynucleotidyl transferase dUTP nick-end labeling (TUNEL assay) showed no increase in the number of apoptotic cells in the SMG. CTD, however, induced strongly and transiently (at 1-3 days) the protein expression of LC3B-II, a marker protein of autophagosomes, suggesting that the reduction in the gland weight was due to onset of autophagy by CTD. Upon CTD, Lamp2, a lysosomal marker, gradually increased in amount, reaching a peak at the 14th day. Immunohistochemical analysis revealed an increase in the number of lysosome-like structures positive for both AQP5 and Lamp2 in the acinar cells of the SMG after CTD; similar changes were observed also for AQP5 and LC3Bs. These data suggest that AQP5 in the SMG entered autophagosomes and/or lysosomes for degradation upon CTD. In vitro AQP5-degrading activity was found in the SMG extracts, and such activity was shown to be increased by CTD. Inhibitor experiments implied cathepsins B and L to be candidate enzymes for this degradation under normal and CTD conditions, respectively.


Journal of Oral Pathology & Medicine | 2011

Induction of Sca-1 in the duct cells of the mouse submandibular gland by obstruction of the main excretory duct.

Nunuk Purwanti; Daisuke Tsuji; Ahmad Azlina; Mileva Ratko Karabasil; Purevjav Javkhlan; Takahiro Hasegawa; Chenjuan Yao; Tetsuya Akamatsu; Kohji Itoh; Kazuo Hosoi

The effect of ligation of the main excretory duct (MED) of the mouse submandibular gland (SMG) on the expression of Sca-1, a stem cell antigen, was examined by Western blotting and immunohistochemistry. By Western blotting, the expression of Sca-1 with a molecular weight of 18 kDa was identified in the normal gland. At 1 day post-ligation, the expression level of Sca-1 was strongly increased in the experimental gland and weakly in the contralateral gland, and such expression in both glands decreased at 6 days. By immunohistochemistry, Sca-1 was detected weakly in the apical membrane of excretory duct (ED) cells of the SMG under the normal condition. By duct ligation, Sca-1 became expressed strongly in most cells of the two major duct systems, i.e., the striated duct (SD) and granular convoluted tubules (GCT), but was not detected in the acinar (Ac) cells. By fluorescence-activated cell sorter (FACS) analysis, the number of side population (SP) cells in this gland was found to be increased by ligation. These results imply that Sca-1-positive cells may have a role in the duct cell proliferation in the regeneration step elicited by MED ligation-induced injury.


American Journal of Physiology-gastrointestinal and Liver Physiology | 2011

Induction of Sca-1 via activation of STAT3 system in the duct cells of the mouse submandibular gland by ligation of the main excretory duct.

Nunuk Purwanti; Mileva Ratko Karabasil; Shinsuke Matsuo; Gang Chen; Purevjav Javkhlan; Ahmad Azlina; Takahiro Hasegawa; Chenjuan Yao; Tetsuya Akamatsu; Kazuo Hosoi

To examine the very initial step that takes place immediately after tissue injury and is linked to tissue regeneration, we employed the submandibular gland (SMG), which was injured by ligation of its main excretory duct (MED). Ligation of the MED of the SMG in mice induced the expression of Sca-1, a protein marker of hematopoietic stem cells. In the normal gland, a low level of Sca-1 was expressed, which was localized predominantly in the excretory duct cells. At 1 day after ligation, Sca-1 expression increased prominently in almost all of cells in the duct system, but not in the acinar cells. The level of Sca-1 mRNA had begun to increase at 6 h after ligation and continuously rose thereafter until it reached a plateau, which occurred ∼12 h after ligation. STAT3 phosphorylated at its tyrosine-705 (p-STAT3) in the ligated gland increased immediately after ligation, and it was localized in the nuclei of all duct cells. The results of an EMSA revealed the specific binding of a nuclear extract to the sequence of the γ-interferon activation site (GAS) present in the Sca-1 promoter and confirmed that such binding increased after ligation. Thus the present study suggests that STAT3, having been phosphorylated following MED ligation, was transferred to the nucleus, where it bound to the GAS element in the promoter of Sca-1 gene, resulting in promotion of Sca-1 gene expression. Actual prevention of STAT3 phosphorylation reduced the ligation-induced Sca-1 elevation.


Inflammation | 2011

Lipopolysaccharide-Mediated Induction of Calprotectin in the Submandibular and Parotid Glands of Mice

Purevjav Javkhlan; Yuka Hiroshima; Ahmad Azlina; Takahiro Hasegawa; Chenjuan Yao; Tetsuya Akamatsu; Jun-ichi Kido; Toshihiko Nagata; Kazuo Hosoi

S100A8 and S100A9 constitute a heterodimeric protein, calprotectin. The mRNAs of S100A8 and S100A9, being expressed at minimal levels in the submandibular and parotid glands (SMG and PG, respectively) of C3H/HeN mice, were induced strongly and transiently by lipopolysaccharide (LPS). Among the mRNAs of members of the S100 protein family examined, those of S100A8 and S100A9 were specifically induced by LPS in the salivary glands. The induction was assumed to be mediated via toll-like receptor 4 (TLR4), since their elevation was limited in C3H/HeJ mice, a TLR4-mutant strain. These proteins became expressed in the granular convoluted tubular cells and striated duct cells in the SMG, and in both acinar and duct cells in the PG (all in the cytoplasm). The salivary calprotectin level was not increased by LPS treatment, implying that elevated calprotectin was not secreted into the saliva and that they may function in microcellular environment of the salivary gland.


Journal of Research and Practice in Dentistry | 2015

Expression and LPS-Induced Elevation of Nod2 and Calprotectin in the Submandibular Gland of Wild-Type and TLR4-Knockout Male Mice

Purevjav Javkhlan; Guangfei Xu; Gang Chen; Chenjuan Yao; Yuka Hiroshima; Hiroshi Yoshimura; Toshihiko Nagata; Kazuo Hosoi

Cite this Article as: Purevjav Javkhlan, Guangfei Xu, Gang Chen, Chenjuan Yao, Yuka Hiroshima, Hiroshi Yoshimura, Toshihiko Nagata and Kazuo Hosoi (2015), “Expression and LPS-Induced Elevation of Nod2 and Calprotectin in the Submandibular Gland of Wild-Type and TLR4-Knockout Male Mice”, Journal of Research and Practice in Dentistry, Vol. 2015 (2015), Article ID 290259, DOI: 10.5171/2015.290259 Research Article


The Journal of Medical Investigation | 2009

Down-regulation of submandibular gland AQP5 following parasympathetic denervation in rats

Ahmad Azlina; Xuefei Li; Purevjav Javkhlan; Takahiro Hasegawa; Chenjuan Yao; Tetsuya Akamatsu; Kazuo Hosoi


The Journal of Medical Investigation | 2009

Effects of natural point mutation of rat aquaporin 5 expressed in vitro on its capacity of water permeability and membrane trafficking.

Mileva Ratko Karabasil; Kwartarini Murdiastuti; Nunuk Purwanti; Ahmad Azlina; Purevjav Javkhlan; Takahiro Hasegawa; Chenjuan Yao; Tetsuya Akamatsu; Kazuo Hosoi


The Journal of Medical Investigation | 2009

Induction of calprotectin mRNAs by lipopolysaccharide in the salivary gland of mice

Purevjav Javkhlan; Yuka Hiroshima; Ahmad Azlina; Takahiro Hasegawa; Chenjuan Yao; Tetsuya Akamatsu; Jun-ichi Kido; Toshihiko Nagata; Kazuo Hosoi

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Chenjuan Yao

University of Tokushima

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Kazuo Hosoi

University of Tokushima

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Ahmad Azlina

University of Tokushima

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