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1821 2
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1824 1
1841 3
1842 4
1846 2
1847 4
1849 3
1850 2
1851 2
1852 1
1854 1
1855 2
1856 1
1857 3
1858 5
1859 1
1860 3
1861 3
1862 4
1863 2
1864 2
1865 1
1866 2
1867 5
1868 1
1869 3
1870 6
1871 5
1872 9
1873 2
1874 6
1875 3
1877 3
1878 3
1879 3
1880 2
1881 5
1882 8
1883 14
1884 5
1885 4
1886 14
1887 16
1888 12
1889 10
1890 10
1891 12
1892 17
1893 7
1894 3
1895 6
1896 26
1897 38
1898 36
1899 30
1900 24
1901 13
1902 12
1903 10
1904 5
1905 5
1906 4
1907 4
1908 4
1909 7
1910 10
1911 5
1912 10
1913 5
1914 2
1915 5
1916 4
1917 12
1918 10
1919 12
1920 15
1921 13
1922 17
1923 10
1924 17
1925 11
1926 26
1927 31
1928 20
1929 27
1930 29
1931 23
1932 49
1933 25
1934 38
1935 38
1936 32
1937 24
1938 12
1939 11
1940 18
1941 23
1942 19
1943 18
1944 13
1945 21
1946 47
1947 78
1948 61
1949 56
1950 153
1951 272
1952 330
1953 288
1954 230
1955 213
1956 191
1957 160
1958 174
1959 161
1960 147
1961 216
1962 253
1963 811
1964 1430
1965 747
1966 732
1967 646
1968 730
1969 773
1970 987
1971 1344
1972 1524
1973 1972
1974 3456
1975 34081
1976 35774
1977 36811
1978 38003
1979 39822
1980 42815
1981 45912
1982 47738
1983 49857
1984 52503
1985 54126
1986 56027
1987 58724
1988 61181
1989 64841
1990 67770
1991 69805
1992 71380
1993 72590
1994 75088
1995 76802
1996 78558
1997 79159
1998 81316
1999 85009
2000 90855
2001 94929
2002 99801
2003 106507
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2005 126257
2006 138542
2007 145459
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2013 185258
2014 184312
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5,115,511 results

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The following term was not found in PubMed: Shhdadi
Page 1
Did you mean h shadi (39 results)?
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 …
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 …
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 …
Gastric (H+,K+)-ATPase.
Soumarmon A, Lewin MJ. Soumarmon A, et al. Biochimie. 1986 Dec;68(12):1287-91. doi: 10.1016/s0300-9084(86)80080-3. Biochimie. 1986. PMID: 3024745
Gastric acid secretion results from the activity of a specific ATPase, the (H+,K+)-ATPase. This enzyme, discovered in 1973, exchanges H+ for K+. It has two ATP binding sites, both involved in enzyme activity, whose affinities vary as a function of the H+ and …
Gastric acid secretion results from the activity of a specific ATPase, the (H+,K+)-ATPase. This enzyme, discovered in 1973, exchanges …
Evolution of the sodium pump.
Palmgren M. Palmgren M. Biochim Biophys Acta Mol Cell Res. 2023 Oct;1870(7):119511. doi: 10.1016/j.bbamcr.2023.119511. Epub 2023 Jun 8. Biochim Biophys Acta Mol Cell Res. 2023. PMID: 37301269 Free article. Review.
Eukaryotic plasma membranes (PMs) are energized by electrogenic P-type ATPases that generate either Na(+) or H(+) motive forces to drive Na(+) and H(+) dependent transport processes, respectively. ...It is hypothesized that Na(+)/K(+)-ATPases and PM H(+)-ATPa …
Eukaryotic plasma membranes (PMs) are energized by electrogenic P-type ATPases that generate either Na(+) or H(+) motive forces to dr …
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 …
Kinetics and thermodynamics of H-/H/H+ transfer from a rhodium(III) hydride.
Hu Y, Norton JR. Hu Y, et al. J Am Chem Soc. 2014 Apr 23;136(16):5938-48. doi: 10.1021/ja412309j. Epub 2014 Apr 14. J Am Chem Soc. 2014. PMID: 24666137
The thermodynamics and kinetics of all three cleavage modes for Rh-H, the transfer of H(-), H(+), or H, have been studied for the Rh(III) hydride complex Cp*Rh(2-(2-pyridyl)phenyl)H (1a). ...Thus, 1a is a good H(-) and H donor but …
The thermodynamics and kinetics of all three cleavage modes for Rh-H, the transfer of H(-), H(+), or H, have bee …
SLC4A11 function: evidence for H(+)(OH(-)) and NH(3)-H(+) transport.
Kao L, Azimov R, Shao XM, Abuladze N, Newman D, Zhekova H, Noskov S, Pushkin A, Kurtz I. Kao L, et al. Am J Physiol Cell Physiol. 2020 Feb 1;318(2):C392-C405. doi: 10.1152/ajpcell.00425.2019. Epub 2019 Nov 27. Am J Physiol Cell Physiol. 2020. PMID: 31774702 Free PMC article.
In studies using increasing NH(4)Cl concentrations with equal NH4+ extracellular and intracellular concentrations, the shift in the reversal potential (E(rev)) due to the addition of ammonia was compatible with NH(3)-H(+) transport competing with H(+)(OH(-)) rather …
In studies using increasing NH(4)Cl concentrations with equal NH4+ extracellular and intracellular concentrations, the shift in the reversal …
Novel Genome-Engineered H Alleles Differentially Affect Lateral Inhibition and Cell Dichotomy Processes during Bristle Organ Development.
Mönch TC, Smylla TK, Brändle F, Preiss A, Nagel AC. Mönch TC, et al. Genes (Basel). 2024 Apr 26;15(5):552. doi: 10.3390/genes15050552. Genes (Basel). 2024. PMID: 38790181 Free PMC article.
By binding to the Notch signal transducer Suppressor of Hairless (Su(H)), H assembles repressor complexes onto Notch target genes. Using genome engineering, three new H alleles, H(FA), H(LLAA) and H(WA) were generated and a phenotypic ser …
By binding to the Notch signal transducer Suppressor of Hairless (Su(H)), H assembles repressor complexes onto Notch target ge …
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 …
5,115,511 results
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