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Year Number of Results
1804 2
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1806 5
1807 5
1808 1
1809 5
1810 3
1811 1
1812 3
1813 2
1814 3
1816 3
1818 1
1821 2
1822 5
1823 1
1824 1
1825 4
1828 2
1829 1
1837 1
1839 1
1841 6
1842 4
1844 1
1845 1
1846 2
1847 5
1848 2
1849 3
1850 2
1851 2
1852 3
1853 2
1854 1
1855 5
1856 3
1857 8
1858 11
1859 3
1860 3
1861 3
1862 6
1863 3
1864 3
1865 2
1866 6
1867 9
1868 5
1869 8
1870 10
1871 10
1872 11
1873 2
1874 9
1875 7
1876 1
1877 5
1878 4
1879 6
1880 3
1881 9
1882 20
1883 16
1884 6
1885 7
1886 17
1887 27
1888 16
1889 15
1890 19
1891 25
1892 36
1893 11
1894 10
1895 7
1896 31
1897 41
1898 38
1899 31
1900 29
1901 15
1902 13
1903 12
1904 7
1905 9
1906 4
1907 5
1908 6
1909 8
1910 13
1911 10
1912 18
1913 16
1914 6
1915 12
1916 14
1917 18
1918 10
1919 12
1920 15
1921 19
1922 18
1923 12
1924 21
1925 16
1926 29
1927 33
1928 21
1929 28
1930 30
1931 26
1932 55
1933 33
1934 44
1935 40
1936 37
1937 37
1938 13
1939 15
1940 23
1941 26
1942 26
1943 26
1944 18
1945 27
1946 52
1947 87
1948 62
1949 58
1950 156
1951 273
1952 330
1953 288
1954 231
1955 213
1956 192
1957 160
1958 175
1959 162
1960 147
1961 216
1962 255
1963 814
1964 1433
1965 752
1966 734
1967 648
1968 731
1969 776
1970 993
1971 1347
1972 1527
1973 1981
1974 3460
1975 34092
1976 35782
1977 36816
1978 38021
1979 39831
1980 42826
1981 45938
1982 47774
1983 49897
1984 52515
1985 54154
1986 56088
1987 59044
1988 61744
1989 65446
1990 68497
1991 70470
1992 72067
1993 73326
1994 75829
1995 77586
1996 79439
1997 80252
1998 82637
1999 86579
2000 93053
2001 97550
2002 102249
2003 109161
2004 118343
2005 129401
2006 141779
2007 148694
2008 156486
2009 162893
2010 173789
2011 187899
2012 195374
2013 190308
2014 193572
2015 194897
2016 162420
2017 147644
2018 193995
2019 200929
2020 218459
2021 229913
2022 218788
2023 197872
2024 151754
2025 47577

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5,195,326 results

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Page 1
C-H Bond Carboxylation with Carbon Dioxide.
Hong J, Li M, Zhang J, Sun B, Mo F. Hong J, et al. ChemSusChem. 2019 Jan 10;12(1):6-39. doi: 10.1002/cssc.201802012. Epub 2019 Jan 2. ChemSusChem. 2019. PMID: 30381905 Review.
Combining the chemical transformation of CO(2) with C-H bond functionalization is of great importance in the synthesis of carboxylic acids and their derivatives. The contents of this Review are organized according to the type of C-H bond involved in carboxylation. T …
Combining the chemical transformation of CO(2) with C-H bond functionalization is of great importance in the synthesis of carboxylic …
Homeostatic regulation of NAD(H) and NADP(H) in cells.
Chen L, Xing X, Zhang P, Chen L, Pei H. Chen L, et al. Genes Dis. 2023 Oct 17;11(5):101146. doi: 10.1016/j.gendis.2023.101146. eCollection 2024 Sep. Genes Dis. 2023. PMID: 38988322 Free PMC article. Review.
The conversions between NAD(H) and NADP(H) are controlled by NAD kinases (NADKs) and NADP(H) phosphatases [specifically, metazoan SpoT homolog-1 (MESH1) and nocturnin (NOCT)]. NADKs facilitate the synthesis of NADP(+) from NAD(+), while MESH1 and NOCT convert …
The conversions between NAD(H) and NADP(H) are controlled by NAD kinases (NADKs) and NADP(H) phosphatases [specifically …
A win-win scenario for photosynthesis and the plasma membrane H(+) pump.
Kinoshita SN, Kinoshita T. Kinoshita SN, et al. Front Plant Sci. 2022 Aug 12;13:982485. doi: 10.3389/fpls.2022.982485. eCollection 2022. Front Plant Sci. 2022. PMID: 36035713 Free PMC article. Review.
Plasma membrane (PM) H(+)-ATPase, a PM-localized H(+) pump, plays a pivotal role in maintaining pH homeostasis in plant cells and extracellular regions. PM H(+)-ATPase activity is regulated by protein abundance and by post-translational modifications. ...
Plasma membrane (PM) H(+)-ATPase, a PM-localized H(+) pump, plays a pivotal role in maintaining pH homeostasis in plant cells …
Lysosome pH-regulated H(+) /K(+) switching channel involved in maintaining lysosomal homeostasis.
Wang Y, Li W, Wang Q. Wang Y, et al. FEBS J. 2023 Oct;290(19):4638-4640. doi: 10.1111/febs.16895. Epub 2023 Jul 11. FEBS J. 2023. PMID: 37434434 Free article.
Lysosomal pH setpoint and H(+) homeostasis is key to the lysosome's functions. The Parkinson's disease-risk protein TMEM175, originally identified as lysosomal K(+) channel, works as a H(+) -activated H(+) channel and discharges the lysosomal H(+) stor …
Lysosomal pH setpoint and H(+) homeostasis is key to the lysosome's functions. The Parkinson's disease-risk protein TMEM175, original …
Regulation of Cytosolic pH: The Contributions of Plant Plasma Membrane H(+)-ATPases and Multiple Transporters.
Zhou JY, Hao DL, Yang GZ. Zhou JY, et al. Int J Mol Sci. 2021 Nov 30;22(23):12998. doi: 10.3390/ijms222312998. Int J Mol Sci. 2021. PMID: 34884802 Free PMC article. Review.
In general, H(+)-ATPases mediate H(+) extrusion, whereas most members of other six proteins mediate H(+) influx, thus contributing to cytosolic pH homeostasis by directly modulating H(+) flux across the plasma membrane. The fact that some AMTs/NRTs med …
In general, H(+)-ATPases mediate H(+) extrusion, whereas most members of other six proteins mediate H(+) influx, thus c …
The stability of e(+)H(-) (2).
Bressanini D. Bressanini D. J Chem Phys. 2021 Jun 14;154(22):224306. doi: 10.1063/5.0053998. J Chem Phys. 2021. PMID: 34241201
We computed an accurate potential energy curve of the reaction H(-) + PsH e(+)H(-) (2) H(2) + Ps(-) to establish its global stability with respect to all possible dissociation channels and to define the range of its local stability. We showed that the e(+) …
We computed an accurate potential energy curve of the reaction H(-) + PsH e(+)H(-) (2) H(2) + Ps(-) to establish its gl …
Molecular heterogeneity of H-2 antigens.
Démant P, Iványi D, Oudshoorn-Snoek M, Calafat J, Roos MH. Démant P, et al. Immunol Rev. 1981;60:5-22. doi: 10.1111/j.1600-065x.1981.tb00360.x. Immunol Rev. 1981. PMID: 6171504 Review.
In the instances where no information implicating different genes is available, we use a neutral terminology which does not presume a genetic difference: H-2K1d and H-2K2d, H-2D1k, H-2D2k, H-2D1dx, H-2D2dx, H-2L1d, H-2L2d, e …
In the instances where no information implicating different genes is available, we use a neutral terminology which does not presume a geneti …
Experimental determination of control by the H(+)-ATPase in Escherichia coli.
Jensen PR, Michelsen O, Westerhoff HV. Jensen PR, et al. J Bioenerg Biomembr. 1995 Dec;27(6):543-54. doi: 10.1007/BF02111653. J Bioenerg Biomembr. 1995. PMID: 8746842 Review.
Control by the H(+)-ATPase on the catabolic fluxes, including respiration, was negative at the wild-type H(+)-ATPase level. Moreover, the turnover number of the individual H(+)-ATPase enzymes increased as the H(+)-ATPase concentration was lowered. The …
Control by the H(+)-ATPase on the catabolic fluxes, including respiration, was negative at the wild-type H(+)-ATPase level. Mo …
Voltage coupling of primary H+ V-ATPases to secondary Na+- or K+-dependent transporters.
Harvey WR. Harvey WR. J Exp Biol. 2009 Jun;212(Pt 11):1620-9. doi: 10.1242/jeb.031534. J Exp Biol. 2009. PMID: 19448072 Free PMC article. Review.
The DeltapH term implies three phases - a bulk fluid phase on the H(+) input side, the membrane phase and a bulk fluid phase on the H(+) output side. The Mitchell theory was applied to H(+) V-ATPases largely by analogy with H(+) F-ATP synthases operati …
The DeltapH term implies three phases - a bulk fluid phase on the H(+) input side, the membrane phase and a bulk fluid phase on the …
Characterization of the role of TMEM175 in an in vitro lysosomal H(+) fluxes model.
Yang C, Tian F, Hu M, Kang C, Ping M, Liu Y, Hu M, Xu H, Yu Y, Gao Z, Li P. Yang C, et al. FEBS J. 2023 Oct;290(19):4641-4659. doi: 10.1111/febs.16814. Epub 2023 May 19. FEBS J. 2023. PMID: 37165739 Free article.
Lysosome acidification is a dynamic equilibrium of H(+) influx and efflux across the membrane, which is crucial for cell physiology. The vacuolar H(+) ATPase (V-ATPase) is responsible for the H(+) influx or refilling of lysosomes. ...Lysosomal H(+) flu …
Lysosome acidification is a dynamic equilibrium of H(+) influx and efflux across the membrane, which is crucial for cell physiology. …
5,195,326 results
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